Showing posts with label barrel bomb. Show all posts
Showing posts with label barrel bomb. Show all posts

Sunday, 22 December 2013

Syria's Barrel Bomb Technology Relative To Aleppo Syria Attacks - The Good, The Bad And The Ugly

Richard M. Lloyd, Warhead Technology Consultant at Tesla Laboratory Inc. takes a look at the DIY barrel bombs used in Syria.

Introduction
The Syrian government over the last year has supplemented it's traditional conventional air campaign with cheap weapons that have been referred to as Barrel Bombs (BB). These Do It Yourself (DIY) weapons are derived from low cost cylinders that are filled with explosive, fuel and irregular shaped steel fragments. These DIY bombs are manually deployed by soldiers from Russian HIP helicopters. The idea is these helicopters can roam around Syrian neighbourhoods and drop these weapons with more accuracy than firing aircraft rockets.  The purpose of this paper is provide some fundamental frame work of how these bombs work, while exploring the myths and false information that has been associated with these weapons.

Initial Barrel Bomb Technology
The main objective of the Syrian barrel bomb program is to provide cheap and lethal damage on urban areas in Syria. When these bombs were initially developed they were deployed from HIP helicopters from low altitudes. These low altitude deployments would ensure the barrel bombs could maintain pin point accuracy and damage specific targets that the Syrian government wanted to kill. However, over time the Syrian rebels acquired Man Portable Air Defense System (MANPADS) that deterred these low launched bombings and drove the Syrian government to drop these bombs from altitudes near 7000ft. A description of a Syrian helicopter that has been shot down from a rebel who fired a MANPADS missile is shown in figure 1.

Figure 1 Syrian Helicopter Shot Down With Rebel Fired MANPADS
These rebel MANPADS attacks have forced the Syrian barrel bomb helicopters to release their bombs from high altitudes.  This increased altitude reduces the accuracy of these bombs and now their impact points are random.  Currently, barrel bomb are not attacking point targets, but rather they are attacking large urban areas killing humans and damaging infrastructure such as building.

Over the last year there have been many false claims made by Syrian civilians as well as the press that barrel bombs have been deployed, when actually they were Russian conventional bombs. These false claims have given barrel bombs false praise by claiming their damage potential is greater than what it really is.  Figure 2 shows photos of a HIP-8 helicopter dropping a barrel bomb relative to a Russian Hind Helicopter dropping a conventional Russian bomb. 

Figure 2 Comparison Of HIP Mi-8 Barrel Bomb And Hind Conventional Bomb
As stated, there have been many false claims in Syria that damage to Syrian cities has been caused by barrel bombs when the damage was actually caused by Russian conventional bombs that have significantly higher reliability than these DIY barrel bombs.

Barrel bombs designs that are observed though social media demonstrate that the Syrian government designed these barrel bombs with a fuse wick that requires a heat source (matches, cigarettes, cigars) to ignite.  The Syrian government must have made the simple calculation that if the helicopter is at a known altitude (H) and the fuse wick burns at a known rate (\(\begin{equation} \dot{b} \end{equation}\)) then the time that it takes for the bomb to detonate is \(\begin{equation} t=H/\dot{b} \end{equation}\). However, this simple equation that computes the time before detonation is false.  Whoever designed these barrel bombs does not understand that there is a 10% burn rate error in the fuse wick.  They also don't understand that if the helicopter is not at the designed altitude it will affect the time of fall.  In conjunction with these errors, they did not take into account the barrel size, mass, barrel bomb L/D ratio, tumble rate, drag effects, wind speed as well as the time it takes the soldier to deploy the bombs once it has been lit inside the helicopter. All of these effects must be accounted for if a fuse wick is going to be used.  Lets perform an example calculation that only considers the 10% error source of the fuse wick burn rate and assume all of the other errors are zero or negligible. The Syrian government would first be required to compute the terminal velocity of the barrel bomb by using the equation \(\begin{equation} V=\sqrt{2W/\rho AC_{d}} \end{equation}\).  The terminal velocity accounts for the weight of the barrel bomb as well as the air density, average cross sectional area and drag of the barrel falling to the ground.  A 500lb barrel bomb has a terminal velocity near 250f/s. Based on this calculation the time it takes the barrel to impact the ground is just 7000ft/250ft/s=28 seconds.  So, the selected fuse wick that has a known burn rate is cut to a length which would burn for 28 seconds and detonate just when it impacts the ground. However, since there is a 10% burn rate error, there exists a probability that it could detonate early.  If the burn rate is 10% too fast then the entire fuse wick would have completed its burn at 25.2 seconds.  This means the warhead would detonate 700ft before hitting the ground.  Examples of these early bursts have been demonstrated through many videos as shown in figure 3.

Figure 3 Barrel Bombs Detonate Early From Negative Errors
These early bursts  have been widely seen in Syria, which are caused by an accumulation of the errors that potentially can exist.  It is unknown how accurate the helicopter pilot attempts to keep the helicopter at the designed altitude.  It is also unclear if the Syrian barrel bomb builders understand drag effects and fuse wick errors and probability timing . Another example of another error is a Syrian Solider lighting and pushing barrel bombs out of the helicopter. In this instance, time must be taken into account and there is obviously no control of how the bomb is thrown out where time must be accounted for.  A photo of a Syrian soldier pushing a barrel bomb out of a helicopter is shown in figure 4.
Figure 4 Description of Barrel Bombs on Syrian Helicopter Prior to Deployment
These early barrel bomb weights are around 100-300lbs and are ignited using fuse wicks. The soldier lights the fuse wick using a cigar because the wind would blow out a match or lighter.  A close up of the fuse wicks is also shown where they should all have the same length.  After the fuse wick is lit, the soldier quickly pushes the bomb from the helicopter. It is unclear how the Syrian designers of these bombs expected to time the fall exactly because there is clear evidence that many of these barrel bombs detonated early which is referred to as a negative time delay.

The above analysis has only considered what could happen if the total time is less than the required time to detonate the barrel bombs given a ground impact.  However, what would happen if the barrel bomb detonated late. Based on our example problem, the fuse wick would burn for a longer time than 28 seconds.  If this occurs, then the barrel bomb would actually hit the ground or a building while the fuse wick is still burning.  If this occurred, then based on video and photo evidence the barrel bomb would shatter upon ground impact or detonate if the fuse wick and bomb were not destroyed. There is clear evidence that barrel bombs can detonate given a positive delay time as shown in figure 5. This figure shows two potential out comes when the time delay is positive where the barrel bomb will either detonate or turn out to be a dud.

Figure 5 Comparison Of BB Detonating or Duding Based On Positive Time Delay
The next step is to try to understand why there is and explosion in one case and not in another. One explanation,assuming all is equal, is the effect of  the shock-wave through out the barrel bomb's front endplate which holds the fuse wick. The stress of a steel case impacting concrete, grass or sand has been investigated.  By using the shock Hugoniot equation \(\begin{equation}
P=\rho c\mu+\rho s\mu
\end{equation}\) , the interface pressure between the ground surface and steel barrel bomb is calculated.  The density of the material is \(\begin{equation}
\rho
\end{equation}\)while the bulk sound speed of the material is \(\begin{equation}
c
\end{equation}\) where \(\begin{equation}
\mu
\end{equation}\)is the particle velocity and s is the slope between shock velocity and material stress. These calculations show that the impact stress of a barrel bomb impacting concrete or rock is 3.5-5 times greater than if the barrel bomb impacted sand or dry soil.  This increase in stress will cause the endplate that holds the fuse wick in place to fracture from the barrel bomb which disables the bomb.

Another important parameter that must be considered that would determine if positive time delayed barrel bombs can detonate is the impact point on the bomb. If a barrel bomb impacts directly on the fuse endplate, then there is an increased probability that the bomb could fail.  Based on video analysis and ground inspection, these barrel bombs do not contain any fins to help control the fall of the bomb by providing stabilization.  These bombs randomly tumble and the probability that these bombs could impact on the fuse/endplate is just 1/6 or 16.6%. If we assume a uniform random distribution of barrel bombs that contain negative and positive time delays, then just based on this fact the probability of a positive bomb impact is 50%.  As of now, there is a 50% chance the bomb will not work and a 50% chance that the bomb will work.  Now lets account for the ground and the impact position of the barrel to the ground.  If the barrel bomb impacts concrete then the bomb will break apart and not work as intended. However, if the bomb impacts softer ground, it is probable, as observed, that these bombs will not break apart and wil function correctly. Our analysis assumes a 50% probability that the bomb will impact concrete/rock and a 50% probability that the bomb will impact sand or grass with light rubble.  This means the probability that the bomb will function is just the probability that the time delay is positive or negative and the probability that the ground is hard or soft.  This calculation is \(\begin{equation}
P=(1-0.5)(1-0.5)=0.25
\end{equation}\)which means there is a 25% chance these fuse wick barrel bombs will work. So, it requires the Syrian government to deploy four barrel bombs to get one bomb to detonate the way it's intended.  A description of two different barrel bombs is shown in figure 6.  The barrel bomb on the left is one that impacted on a soft surface,where the stress was not high enough to fracture off the fuse wick endplate, while the barrel bomb on the right is shown hitting concrete and fracturing off the fuse wick endplate.

 Figure 6 Comparison between barrel bombs impacts on soft and hard surfaces
Barrel Bomb Designs
The remains of these barrel bomb duds have been investigated to understand how the Syrian government has assembled them, and to determine how lethal these bombs can be.

It is evident from visual observations that there has been little to no quality control on these designs because of the many shapes and sizes that have been observed.  There appears to be clear design trends that clearly show that Syrian personnel have no weapon design and effects training.  Most Syrian barrel bombs contain many large steel components, such as cut rebar or large machine metal pieces such as large industrial bearings. These large metal chunks are inserted inside and mixed with the TNT explosive. The problem with this approach is when the explosive detonates, it's using a lot of its energy to accelerate these large chucks of metal which reduces its blast effects as clearly seen in figure 7. These added steel materials reduce the blast effects by making the explosive use its energy to accelerate it.
Figure 7 Large Metallic Metal Components Added In Barrel Bomb Explosive Mixture
However, if these large metallic pieces were to impact a human then they would cause catastrophic incapacitation. There are mathematical equations that predict the optimum fragment size that is required to kill a person by taking into account probability theory and applying weapon design equations. The probability of incapacitating a person is computed with this equation\(\begin{equation} P=1-e^-a({mv^{3/2-b)^{n}}} \end{equation}\)

Based on this equation, the optimum fragment mass can be computed to increase barrel bomb performance.  The barrel bomb case would break apart into thousands of small fragments from the natural fragmentation of the explosive shock wave interaction with the smooth case.

The fragment mass is m and the impact velocity is v where test derived constants are a, b and n. The velocity of the added metallic fragment is computed by using the Gurney equation which is\(\begin{equation} V=\sqrt{2E}\sqrt{C/M/(1+D/2L)(1+C/2M)} \end{equation}\)
The \(\begin{equation} \sqrt{2E} \end{equation}\)is the explosive Gurney constant which is around 2.4km/s for TNT. The explosive mass is C while the metallic mass plus the barrel bomb case is M. The parameters D and L are barrel bomb diameter and length respectively. The barrel bomb average case fragment can be computed by \(\begin{equation} \mu^{1/2}= Bt^{5/6}d_{i}^{1/3}(1+t/d_i) \end{equation}\) where B is a constant, t is the barrel bomb thickness and \(\begin{equation} d_i \end{equation}\) is the explosive diameter. The estimated number of fragments from the barrel alone is \(\begin{equation} N(m)=M/2\mu \end{equation}\)where the number of fragments in a particular weight class is calculated by \(\begin{equation} N(m)=M/2\mu e^{-(m/\mu)^{1/2}} \end{equation}\)

These equations have been exercised pertaining to the Syrian barrel bombs.  The analysis clearly shows that these weapons are under-designed and their lethality in urban areas can significantly increase by changing their approach and understanding of weapon effects.  Even though these embedded large chunks of metal are highly lethal against humans, the probability of being hit by one is extremely low. Given a 40ft stand-off distance of a human from a barrel bomb explosion, there would be a 96% probability of death given a hit from one of these fragments,  However, the probability of being hit from these chunks of metal is only 3%, which gives a total probability of incapacitation of 2.8%. An example calculation is shown in figure 8.

 Figure 8 Barrel Bomb Probability of Incapacitation and Probability Equations
The blast effects have been investigated, and where the pressure-impulse to incapacitate a human has been calculated.  The blast damage is directly related to the amount of explosive as well as the metal casing surrounding it. The lethal blast radius has been calculated, but it is not reported in this version of the report.

Changing Barrel Bomb Technology
There are several significant changes that have been observed in Syrian barrel bomb technology.  It is evident from these changes that the military determined they were not getting explosive detonations on the ground and their bombs were not working.  The Syrian government has switched from using fuse wick fuses to impact fuses. As stated earlier, these fuse wicks have minimal chance of working because of their time delay errors.  However, the addition of impact fuses accounts for all of the errors that are associated with fuse wicks. These new impact fuses are clearly DIY and in conjunction with these new fuse concepts, the sizes of the barrel bombs have significantly increased.  Today's Syrian barrel bomb weights can exceed over 2000lbs of TNT, making them highly lethal given a high order explosive detonation in urban areas. A description of a recovered barrel bomb with these new design features is shown in figure 9.

Figure 9 Newer barrel bombs designed with DIY impact fuzes
These impact fuses were created using detonation cord to ignite the bulk TNT explosive charge. It is unclear what the exact reliability of these fuses are and how well they actually work. However, it is expected that the Syrian builders have performed some testing of this device to have enough confidence that it will work given that the barrel impacts the ground on the fuse. In order for these new bombs to work they must impact on the fuse which means they must impact on the front of the barrel.  The only way to accomplish this is to add fins to stabilize the bomb so it won't tumble as it falls to the ground.

This recovered barrel bomb did not operate and detonate correctly because the fins appear to be too small.  The explosive weight of this bomb is near 2000lbs with small fins attached to the middle of the bomb. Figure 10 is a picture of the small fins that were welded to the center of the bomb.  A picture of a typical Russian bomb is shown, which clearly shows these bombs are designed with fins in the back of the bomb and not in the middle.  It has been concluded with high confidence that this massive bomb still tumbles and the probability of falling on the impact fuse is random.  It appears the fins are designed too small and the barrel bomb is randomly tumbling to the ground.  If we assume the probability of the fuse working correctly is 75% and the cylindrical barrel bomb has 6 sides, then given random tumbling, the probability of success is 1/6 or 16.6% given 100% reliability of the fuse. However, if the DIY fuse has a reliability near 75%, then the probability of success is 12%.

Figure 10 Syrian barrel bomb with small fins attached to the middle
It appears the Syrian builders have discovered this problem with their fins and their inability to generate a stable and aligned bomb.  There is clear evidence that the Syrians have moved these fins from the middle of the bomb to the aft end, which is the design norm of all the gravity bombs in the world. Figure 11 shows a large barrel bomb just after it has been deployed.

Figure 11 Large Barrel Bomb Deployment  Showing Initial tumbling Of Weapon
These new design features have increased the probability that the barrel bomb will fall aligned with stable flight and impact the fuse. We have already estimated that the fuse has a 75% chance of working given an impact. Based on these fins relative to known bombs around the world, it appears that the stability of the bomb will increase, but it is still unclear whether the fins are large enough and far enough to the back of the bomb to provide good stability.  A conservative estimate of the fin performance based on Russian and US fins relative to the Syrian barrel bombs is 50%. This estimate is based on analyzing Russian bombs of similar weight, and measuring their fin distance and diameter relative to the recovered barrel bombs. Given these two performance probabilities, the probability that these new Syrian barrel bombs will work correctly is 37.5%.

Barrel Bomb Design Variations
There have been several recovered barrel bombs that are designed differently compared to most traditional barrel bombs. Some of these barrel bombs contain smaller warheads that are embedded within the explosive to ignite the much larger barrel bomb explosive.  This design technique uses the small warhead as a booster, which is really not required.  An example of this is shown in figure 12.

Figure 12 Syrian barrel bomb using small warhead as a booster
The explosive has appeared to be soaked in oil which would give the same features as ANFO. ANFO is an explosive mixture which contains some small percentage of oil.  This oil actually reduces the explosive detonation velocity which reduces the blast and fragment acceleration power of the explosive.  This bomb has an impact fuse, but the most disturbing observation is it has no fins. Without fins, this bombs reliability is very low and the odds of it working are small.  In fact, all objects that fly through the air eventually turn and fly with the side with its greatest presented area.  If this rule of thumb is applied, this bomb will never rotate and align its front surface to the ground.  The highest probability of the side with the fuse impacting is just 1/6 or 16.6% which assumes there is an equal chance of any side impacting. Now, if the reliability of the fuse is 75%, then the probability that the barrel bomb will function is 12.4%.                

The Syrian government over the last year has significantly increased it's barrel bomb sizes from hundreds of pounds of explosive to 2000 pounds of explosive. However, there is strong evidence that these weights are larger than this.  A video exists that shows the Syrian military throwing barrel bombs from a helicopter with a large fuel auxiliary tank. This video shows to the right a large yellow tank, which is the helicopter's internal fuel auxiliary tank. This tank can contain over 960 litres of fuel ,or, if it was converted to a high-explosive barrel bomb, it would contain around 3000-3500lbs of explosive as shown in figure 13.

Figure 13 Syrian Military Using Helicopter Fuel Auxiliary Fuel Tank As Barrel Bomb
With the need for larger barrel bombs and the Syrian military's need for larger explosions, there is reason to believe that the military could be using these auxiliary fuel tanks as Fuel Air Explosives (FAE).  There is no clear evidence of the military converting these fuel tanks to FAE'S but there appears to be very large unexplainable explosions in Syria that that are clearly made from unknown FAE weapons. If the military made these tanks into FA'S and they were able to master the weaponization of deploying fuel and igniting it, these tanks would generate explosions greater than 15 tonne TNT equivalent weights. One of these unexplainable explosions that has not been attributed to ground fuel explosions, fuel or high explosive depots or anything but a dropped bomb is shown in figure 14.  This unexplainable explosion distinctly shows that a FAE or fuel weapon was used in Syria that generated a fireball cloud with a diameter near 2000ft.  The TNT equivalent yield is estimated from the height of the dust cloud where many yield equations have been derived for nuclear and large explosive events in the 1960's. This explosion did not persist like known explosions that were started from fuel depots or fuel lines from conventional bombings. This explosion occurred and persisted for about 120 seconds and then disconnected from the ground.  Also, there have been several barrel bombs that have been observed from helicopters that appear to have platforms that are attached to wheel tracks.  These bombs would weigh over 3000lbs and would require a sled system to move it on and off the helicopter.

Figure 14 Potential Syrian derived weapon, which supports unexplainable explosions
This explosion would generate significant damage to all buildings within a 600ft diameter. The analysis assumed the fuel is ethylene oxide which has an energy content of 28000J/g while TNT explosive is around 4180J/g.  This large increase in energy is another reason why the Syrian military may be investigating weaponizing auxiliary fuel tanks into FAE weapons.  It is known that Syria possesses Russian ODAB 500 FAE weapons that only have a TNT equivalent yield of one tonne.

Aleppo barrel Bombs Attacks
It was reported that Syrian government aircraft dumped barrels packaged with explosives on at least four opposition-held neighbourhoods of Aleppo on December 18, 2013. This would be the fourth day of increased air strikes on this contested northern city. It appears this air campaign killed more than 100 people in the first three days alone.  A map of the potential barrel bombings is shown in figure 15.  The damage radius of these bombs looks very large from observing videos of the explosions.  In fact, it is still unclear if all 11 of these explosions were solely from barrel bombs.  The Syrian people have a history of calling all bombs dropped from helicopters barrel bombs, which is false. There has been many reports that all of these attacks are barrel bombs but given the probability of success, this seems questionable and further analysis is required. However, lets assume all 11 explosions were from barrel bombs and lets also assume that all 11 barrel bombs possessed fuse wicks.  Since the probability of a fuse wick barrel bomb working is 25%, it would require around 88 barrel bomb drops to achieve 11 successful explosions based on the probability equation of \(\begin{equation} P=1-(1-P_{k/h})^n \end{equation}\)

The single shot probability of success is 25% and given a 90% probability requirement it would take 88 fuse wick barrel bombs which appears to be an unrealistic scenario where Russian bombs would be mixed in. We know that the Syrians have developed or increased their capability by adding impact fuses to account for the timing errors of the fuse wicks. Let's assume that the barrel bombs contain impact fuses but do not contain fins that are able to stabilize the bombs for a successful impact on the fuse. The single-shot probability of these barrel bombs is 12%. This means that the Syrian military would have to drop nearly 187 barrel bombs to obtain 11 explosions. This large number of barrel bombs also does not appear realistic, as the Syrian military uses no or very small fins in the middle of the bomb.    

Figure 15 Aleppo Bomb Impact Points From December 2013 Attacks  
The next calculation will consider the most advanced barrel bombs it is believed the Syrian military has. The single-shot bomb probability of success is 37.5%, which means it would require five bombs to achieve one successful explosion.  The total number of bombs that the Syrian military would have to drop to obtain 11 explosions is 55.  It is unknown how many helicopters were used in these bombings, but if the capacity of a HIP helicopter is considered, then each helicopter could only hold around 3-4 bombs of 1000lb size.  A single video was found of a very large barrel bomb that appeared on the internet December 21, 2013.  It is believed this barrel bomb could have been used in the Aleppo attacks. Figure 16 shows this barrel bomb and it specifically shows that this bomb has an explosive yield of 1500-2000lbs.

Figure 16 Large barrel bombs filmed and posted online on Dec 21, 2013
However, if the military has mastered the fuel air explosive dispersal technique, then this bomb would have a yield of 6 tonne TNT equivalent weight.  The damage on the ground strongly supports that very large bombs were used to generate the amount of damage that is seen in many of the videos.  Another key observation of the barrel bomb is the fins are on the back of the bomb, and not in the middle. It appears that this bomb concept has a good chance to be aligned and stable to allow for a lethal fuse impact. A closer look at the barrel bomb from the December 21 attack is shown in figure 17.

Figure 17 Close up of the barrel bomb from video
Summary
It is unknown how many bombs in Aleppo were DIY barrel bombs and how many were Russian conventional bombs. If we estimate that there were three helicopters used in this campaign and each helicopter contained three 2000lb barrel bombs, then based on each helicopter performing two separate missions, an estimate can be made as to whether it's feasible that all the explosions in Aleppo were from barrel bombs.  The calculations show that each day, there were 18 barrel bombs dropped with only 3.6 explosions per day. After three days of bombing, the total number of barrel bombs dropped is 54 which correlates with the 55 barrel bombs required that must be deployed to achieve 11 explosions. It appears possible that all the attacks in Aleppo could have been DIY barrel bombs because these attacks occurred over 3-4 days, as it is clearly possible that 55 barrel bombs could have been dropped with their new and enhanced designs over this period of time. The video analysis of the overall damage strongly supports that very large barrel bombs were used.

Thursday, 21 November 2013

Evidence Of Very Large DIY Barrel Bombs Being Deployed In Syria

Long term readers of the blog may remember that throughout 2012 I was tracking evidence of a type of DIY weapon being used by the Syrian air force widely described as a barrel bomb.  Anyone familiar with videos coming from Syria will be very familiar with the term "barrel bomb", a term that has been used to describe both conventional military bombs, such as the OFAB 100-120, and the DIY barrel bombs, which has led to a certain amount of confusion.

DIY barrel bombs were first recorded in late August 2012, and were generally metal barrel, pipes, etc, filled with explosives and frequently shrapnel, and dropped from the back of Mil Mi-8/Mi17 transport helicopters.   When I originally investigated these munitions there was a lot debate other whether or not the Syrian air force would use improvised explosive devices as weapons, with even one commentator describing the idea as "Barrel bomb baloney", but eventually videos emerged showing a helicopter crew throwing DIY barrel bombs out the rear of a helicopter, and footage from Taftanaz air base showing DIY barrel bombs in storage after it was overrun by opposition forces.

One flaw with these DIY barrel bombs is they all appeared to be detonated using a simple wick fuse, like lighting a stick of dynamite.  The problem with this is if the wick is too short the munition will detonate mid-air, and if it's too long there's a chance the bomb will be smash to pieces before it detonates.

Over the past few months I've been in contact with Richard Lloyd, Warhead Technology Consultant at Tesla Laboratory Inc, and among the various topics we've been discussing, he's highlighted a number of videos that show what appear to be unusually large explosions, and what appears to be DIY barrel bomb being dropped from helicopters that appear much larger than ones we've seen in the past.

Videos have now been posted from the town of Kafr Zita, Hama that appear to confirm the theory that larger DIY barrel bombs have now been deployed



Both videos show large DIY barrel bombs that have failed to detonate.  The second video shows one that appears to have partly exploded, peeling back the thick metal, but what's very interesting is the design of the DIY barrel bomb in the first video.

As I mentioned before, one flaw with the barrel bomb was the wick fuse causing problems with detonation.  The large DIY barrel bomb in the first video instead appears to have an impact fuze, which is removed from the munition




It appears there might have possibly been two impact fuzes, probably because of the broad front end (something also seen in munitions for the opposition's Hell Cannon), and a lack of aerodynamics to ensure the bomb lands right on the tip of it's nose.  That lack of aerodynamics has been partly addressed by whoever put this bomb together by the addition of tail fins


Richard Lloyd believes this would have been able to carry 1250-1750 lbs (approx 565-795kg) of explosive, and suggests the tail fins wouldn't have been very effective because of that.  What this does show is the Syrian Air Force is deploying huge DIY bombs, and they are attempting to make the fuzes far more effective than previous model.

You can contact the author on Twitter @brown_moses or by email at brownmoses@gmail.com

Sunday, 13 January 2013

DIY Barrel Bombs (ADIEDs) Filmed In Storage At Taftanaz Air Base

As I wrote earlier this week footage has been emerging from the recently overrun Air Base near Taftanaz, and footage has now been posted that appears to show the DIY barrel bombs (ADIEDs) that have been dropped across Syria


In total there appears to be 10 ADIEDs (Air delivered improvised explosive devices), which appear to be of a similar style to some of the ADIEDs shown in videos on my Youtube ADIED playlist, for example


It also appears one of the Hip helicopters has had a trolley installed, presumably to make it easier to push the ADIEDs out of the helicopter



So with this find we now have evidence of ADIEDs in Syrian air bases, evidence of them being dropped, and plenty of UXO evidence.  All that's needed now is footage of them actually being built for their entire life-cycle to be on record. 

Related Articles
Clear Evidence Of DIY Barrel Bombs Being Used By The Syrian Air Force
Collected ODAB Thermobaric Bomb Evidence
A Beginner's Guide To Identifying UXO In Syria
The Mystery Of The Syrian Barrel Bombs
New Bomb Identified In Syria
The Weapons Of The Syrian Air Force 

You can contact the author on Twitter @brown_moses or by email at brownmoses@gmail.com

Monday, 31 December 2012

The Weapons Of The Syrian Air Force - Updated

Over the past months we've seen an escalation in the air war in Syria, with helicopters being joined by L-39 and MiG jets, and an increasing variety of weapons being deployed by the Syrian Air Force.  By examining the various UXO (Unexploded ordnance) filmed by opposition activists in Syria we can see which weapons are being used by the Syrian Air Force, and get an idea of the quantities being used.

S-5 Rockets


One of the most widely used weapons by the Syrian Air Force is the S-5 rocket, used from the earliest days of the air war, and capable of being used by both helicopters and jets.  They also featured heavily in the Libyan Civil War, generally fired from rocket pods welded to the backs of pick up trucks.

They have a very distinctive long thin body, usually a light metallic colour, with black stabliser fins at the rear.  The actual explosive charge it only at the very end of the missile, the rest of the body being used to hold propellant.  As the above videos demonstrates large numbers of rockets have been used across Syria.

AT-2 Swatters



AT-2 Swatter/3M11 Fleyta anti-tank missile have made rare appearances, the above example being from December 2012, around the same time their was a significant rise in the use of armour by the Syrian opposition.  Unlike the other bombs and missiles on this page the AT-2 has an in-built guidance system, the remains of which can be seen in the above video.

OFABs


OFABs are Russian made general purpose bombs (classified as fragmentation/blast bombs in Russia) designed for attacking lightly armoured vehicles, non-fortified structures, and personnel in the field.  The first OFABs to be identified as UXO in Syria were the larger OFAB 250-270 bombs


In August, around the same time as L-39s started being used in Aleppo and elsewhere, we began to see evidence of OFAB 100-120 bombs


It's interesting to note that since L-39s were first spotted in Aleppo I've collected around 30 examples of unexploded or partly exploded OFAB 100-120 bombs, compared to a handful of all other bomb types in the same period.  This strongly suggests that OFAB 100-120 bombs are the bomb of choice for the Syrian Air Force, and were very likely introduced alongside the use of L-39 jets in Aleppo.

FABs


In October 2012 Russian FAB M62 high explosive bombs first made an appearance.  These are simply large high explosive bombs, and while they haven't been used as widely as OFAB bombs they are far larger and much more powerful.  Unexploded FAB bombs have been spotted making up part of a massive truck bomb used by Jabhat al-Nusra.

RBK Cluster Bombs


RBK 250/250-275 cluster bomb dispensers and their associated cluster bomblets first made their appearance in the conflict around July 10th 2012 in the Jabal Shehshebo region in the Hama, later confirmed by Human Rights Watch.  Evidence of only one cluster bomb was found at that time, carrying AO-1 SCH fragmentation bomblets, designed to attack lightly armoured targets and ground personnel.  Here activists took the incredible risk of lining them up for a Youtube video


Cluster bombs are rather unique as they will nearly always leave behind evidence of their use, namely the dispenser part of the bomb which opens up when deployed to scatter the bomblets, rather than exploding like a traditional bomb.  This means that each bomb dropped can be reasonably expected to leave behind a casing.

Until August 2012 there were no more videos of cluster bombs or bomblets until activists in Abu Kamal posted this video


Again, they take a huge risk moving these bomblets to make a Youtube video, and what they are showing here are PTAB 2.5m cluster bomblets, primarily used as anti-armour weapons, but equally deadly to anything else in the area.

There were virtually no other reports of cluster bomb use until around October 10th, when shortly after the opposition captured a major highway in the Idlib region there was a sudden and massive increase in reports of cluster bomb use across the entire country.  Later, in late November, we saw the first images of incendiary cluster bombs loaded with thermite based ZAB incendiary bomblets.  This escalation in the air war appeared to occur shortly after a series of military bases were captured in the Aleppo region.

ZAB-100-105s


Around the same time ZAB incendiary cluster bombs made their first appearance in the conflict we also saw the first use of ZAB-100-105 incendiary bombs, containing both a napalm style mixture and 9 thermite cartridges designed to scatter on impact.  More details of the contents of these bombs can be found here.

ODABs


ODABs are fuel-air bombs which create huge explosive fireballs that are capable of much more destruction against buildings than an OFAB bomb.  It's believed by some people these bombs were used in Azaz in an incident where it appears only two bombs flattened houses in "an area of approximately 70-by-70 meters – more than half a football field" killing over 40 civilians.  Judging by UXO evidence it appears these bombs have only been used since August 2012, and not in huge quantities. More examples can be found here.

BETABs


So far only a few examples of BETAB penetration bombs have been recorded since their first appearance in September 2012, specifically the BETAB-500M62 free-fall 500kg model.  Designed to penetrate and destroy reinforced structures it's unclear why one would be used in a village outside of Aleppo, as the above example was.  While these bombs are cleared for use on the various jets used by the Syrian Air Force it's unclear if they can be dropped by helicopters.  More examples can be found here.

ADIEDs


From August 2012 there were multiple reports of ADIEDs (Air Deployed Improvised Explosive Devices) dropped across Syria.  To begin with multiple examples of what appears to be DIY bombs, barrels filled with explosives and piece of shrapnel were reportedly dropped from helicopters in locations across Syria, followed by an increasing number of reports of "TNT barrel" being dropped.

What appears to have happened is activists have begun to use the term "barrel bomb" or "TNT barrel" to describe pretty much any cylinder shape bomb they see being dropped, something that's reflected in the increasing number of videos being uploaded to Youtube described as showing "barrel bombs" or "TNT barrels" that in fact clearly are OFABs or one of the other bombs shown above.

In late October 2012 videos were posted online that showed members of the Syrian air force dropping these devices from the back of a helicopter, seemingly confirming that these improvised devices were being used by the Syrian Air Force.  More examples of ADIEDs can be found here.

Naval Mines


In December 2012 we saw the first sighting of naval mines dropped from helicopters in two locations in Syria.  It's unclear how effective these have been as weapons, or whether this reflects supply issues for the Syrian Air Force. 

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You can contact the author on Twitter @brown_moses or by email at brownmoses@gmail.com

Saturday, 27 October 2012

Clear Evidence Of DIY Barrel Bombs Being Used By The Syrian Air Force

Over the past few months I've been collecting UXO evidence of what has appeared to be crude DIY barrel bombs being dropped by the Syrian Air Force. CJ Chivers has also written about these DIY weapons on the New York Times At War Blog and the Russian Military Analyst Col. Evgeny Khrushchev has written for Russia Today describing reports as "barrel bomb baloney".

Now for the first time we have video footage, apparently leaked or captured from members of the Syrian Air Force and filmed inside a Mil Mi-8 (Hip) helicopter, showing what appears to be DIY barrel bombs thrown out of the rear door of the helicopter.



As Bjørn H Jespersen helpfully pointed out at 45s on the 5th video you see the fuze being lit by a cigarette.

This seems to support earlier video footage that appeared to show a barrel bomb being dropped in much the same way (35s)


This seems to clearly demonstrate that bar any accusations that the videos have been faked (certainly not by the opposition, unless they suddenly have access to helicopters) that DIY barrel bombs are being used by the Syrian Air Force, as opposed to claims of their use being "baloney".

Big thanks to @RobotNickk for highlighting these videos.

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You can contact the author on Twitter @brown_moses or by email at brownmoses@gmail.com

Thursday, 30 August 2012

The Mystery Of The Syrian Barrel Bombs

Update October 27th Clear footage showing DIY barrel bombs being dropped from a Hip has now been posted online, and can seen here.

Usually when I'm putting together a post about the various weapons being used in Syria I like to analyze videos, search through references looking at images, and matching as many details as possible before making a post about something, but this time I've come across something that's really got me stumped.

Just over a week ago two videos were posted from Batbo, about 35km west of Aleppo showing an unusual item that local activists claim was dropped from a helicopter
It's described as a "home-made bomb dropped by helicopter", and has some odd features I'm struggling to make any sense of.  First, it appears to have strange protrusions, as seen in this picture
In these two pictures one of the men at the scene has picked up one of the protrusions that has snapped off, showing that it appears to be hollow

He also shows a collection of chopped up rebar that have been gathered from the black powder (explosive?), as shown below
One other thing to note is that these don't actually appear to be drum style barrel, which are usually stamped out of one sheet of metal. The ridges of the barrel appear to be pieces of wire, one of which you can see has come away from the barrel in the below picture
This shot from inside the barrel doesn't appear to reveal much apart from what appears to be another smaller curved piece of metal inside, possibly a cylinder
So all very odd, could this be some sort of DIY bomb being dropped by helicopters?  If they are, why are the Syrian Air Force using DIY bombs when they have so many OFABs of various shapes and sizes to use?

Several days later a new video was posted from Alrcaya in Idlib, about 80km southwest of Aleppo, which appears to show another barrel bomb
This one shares some features with the previous example, such as the metal wire around the outside of the barrel
But there's also something else that wasn't noticeable on the previous example.  I'm unclear what this is, but I'm thinking maybe a possible detonator, or smaller booster charge?
So I start looking for answers, trying to figure out what these items are.  One theory is that these could be IEDs disarmed by the Syrian army they decided to return to the FSA via helicopter.  There's some suggestion that they could even come from the truck bomb CJ Chivers reported about in his recent report on Syria, but after examining the images he provided they don't seem a good match to me.

Then activists started to mention reports of barrels full of explosives being dropped on Homs, something that is repeated in this Al Arabiya report
@hlk01 provided a translation of the video
Oil barrels are turned into TNT barrels in Homs
------------------------------------------------------------------------
The most important oil refinery in Syria is the one of Homs, capital of the revolution. Dozens of barrels are transferred from this refinery to the provinces in Syria including Tartous Port to export oil. During the revolution the regime turned these barrels into explosive bombs, dropping them on the cities and towns in Syria. The regime transported these big explosive barrels using military aviation. Each one contains 200 kg of TNT explosives. These barrels are dropped, by the regime, on the residential buildings and houses to destroy them completely and turn them to open ground, uninhabitable and impossible to hide in. The barrels explode after being dropped, the fuse ignites when it hits the target. The barrel falls in less than 5 seconds, making a huge bang, and when it hits the target both the target and the surrounding area are completely destroyed due to the large amount of the explosive. In Homs - 5 cases were reported , where 2 barrels were dropped in a single sortie. For protection, it is advisable to run to safe places when hearing helicopters sounds , it takes 5 minutes for the helicopters to fly over the target .
The videos we've seen so far do not look like oil barrels to me, but to add to the confusion I came across this video, from Mdaya in Idlib, described as a barrel dropped from a helicopter
It looks quite unlike the previous barrel bombs, and appears to be a solid metal cylinder with a rounded end
It appears there's a smaller cylinder that was part of the bomb, but it's unclear what function it had
Then there's a metal plate which might have been bolted to one end of it
And this collection of various bits of metal.  Could they be shrapnel for the bomb?
Could there in fact be a variety of these improvised bombs being dropped?  That might mean there actually are oil barrels full of explosives dropped, as the activists in Homs claim.

Finally we come to this video, which claims to be a 200kg dropped from a rear of a Mi-25 helicopter in Kafr Nabl, Idlib.  At around 15 seconds in you'll see something that appears to drop from the rear of the aircraft
It seems that for the moment we're left with questions rather than answers.  Are the Syrian military really using improved devices to attack the FSA? If so, why?

If you see any more examples like those shown above please let me know, this is one mystery I'd really like to solve.

Update August 31st Thanks to HamaEcho and Bjørn H Jespersen for the following videos and related discussion. First three videos from the freeeshem Youtube channel, from al-Hawash around 35km west of Homs, the first two show a numbered metal tube with pieces of cut up rebar arranged on top of it, presumably from the device
Then a third video with what appears to be more rebar and the possible remains of one of the devices that actually exploded

Then there's another video from al-Hawash showing a similar device with a different number printed on it
I'd be interested in know if anyone recognises these devices, let me know if you do.

Update September 1st The Daily Telegraph has an article on barrel bombs with more details of their use, including
Filled with TNT, oil and chunks of steel, the exploding barrels kill and maim across a wider area than high explosives.
"The sound was like nothing else I've ever heard. It was an almighty whoosh," said Mohammed Ibrahim, a fighter recovering from an explosion that he said was of terrifying intensity caused by such a bomb.
"I was lucky I was standing behind a corner but I was still knocked off my feet. When I came round my ears were bleeding."
Update September 1st I've come across a number of new videos, firstly this video from Deir Sonbol in Idlib via markito0171 shows what's described as the remains of a barrel bomb

@hlk01 sent me this video from Idlib showing another numbered barrel like the two shown above.  At first I thought it was the same as one of the earlier videos as the number printed on it matched, but as Bjørn H Jespersen pointed out there's actually additional parts on either side of the barrel which shows it can't be the same one, meaning those numbers aren't unique.  It also appears to have Russian text on it


This video from Derber, Dier Ez Zor, is supposedly the remains of a barrel bomb, although it's very difficult to tell, and appears to be outside the normal areas we've seen these bombs

The Daily Telegraph also posted a video that they say is what activists claims is the detonation of a barrel bomb in Homs.  In addition to that a number of videos have been posted online showing what's claimed to be the aftermath of barrel bomb explosions in Homs.

http://www.youtube.com/watch?v=f8PUtuIgT30
http://www.youtube.com/watch?v=8DDMgC2EXIg
http://www.youtube.com/watch?v=bUtFFKyscUg
http://www.youtube.com/watch?v=0tG_dd-2l2c
http://www.youtube.com/watch?v=xCJyyFnF7wU
http://www.youtube.com/watch?v=4Z2-SXEm0hU

It should be noted that while searching for barrel bomb videos I came across a number of video marked as barrel bombs that were clearly L-39s (mislabeled as MiGs) dropping OFABs, so I expect there will be a number of videos mislabeled as such in the future as well.

Update September 9th @BeJohnboy70 spotted this video that may show two barrel bombs in Hama.  Although the video is rather unclear the man in the first part of the video appears to show the camera cut up rebar as spotted in other bombs, and the bomb appears to have the same end as the other numbered bombs shown above 

Update September 10th Bjørn H Jespersen of the excellent .processing blog highlighted another example of a possible barrel bomb in Sahel Al Ghaab, Hama

Update September 10th Bjørn H Jespersen has sent me a second video from Hama showing another very similar bomb to the one shown above


Update September 10th @hlk01 highlighted this article from McClatchy that had this very interesting section about the barrel bombs
Another rebel, Omar Ahmed, who said he’d defected from the base two months ago, said that concerns about the loyalty of pilots – most of whom are Sunni Muslims, like the rebel force – had hampered the military’s use of aircraft. Assad and the country’s ruling elite, as well as many of the military’s officer corps, are Alawites, a sect that’s related to Shiite Islam. The Sunnis accuse the Alawites of discriminating against them.

....

Ahmed said that while he was on the base he’d been tasked with helping to build more than 100 “barmeels,” oil drums stuffed with explosives and shrapnel that have been used with devastating effect in Abu al Dahour and other areas. According to one military analyst, they’re roughly equal to a 1,000-pound bomb.
Update September 16th This video from Jericho, Idlib, shows another example of a barrel bomb, although in this example it's unclear where the explosive powder has gone


Update September 20th @hlk01 sent me another example, this time from Ain Larose, Jabal AlZawia, Idlib, in a video that shows one of the bombs being taken apart. 


This second video shows what appears to be the detonator for the device, although it's unclear how it functions


Update October 6th Damien Spleeters sent me this example of a barrel bomb from the Idlib region

On the same channel was this other example


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You can contact the author on Twitter @brown_moses or by email at brownmoses@gmail.com