Showing posts with label Civil Defence. Show all posts
Showing posts with label Civil Defence. Show all posts

Wednesday, October 26, 2016

The Argument Over the V-Weapons



By early 1943 enough evidence had accumulated in Britain of German secret weapon development to alert several of the responsible authorities to the danger of pilotless weapons – or other forms of long-range attack. The authorities included R.V. Jones, who advised the Secret Intelligence Service (MI6), as well as the Air Ministry, and who enjoyed the Prime Minister’s favour as the ‘man who broke the beams’, the Luftwaffe’s radio guidance system during the Blitz of 1940; Professor C. D. Ellis, the army’s scientific adviser; Dr A. D. Crew, Controller of Projectile Development at the Ministry of Supply, the British equivalent of Albert Speer’s Armaments Ministry in Germany; General Ismay, Churchill’s personal military staff officer; the Joint Intelligence SubCommittee, which co-ordinated the work of MI6, MI5 (the internal security service) and Special Operations Executive (SOE), Churchill’s subversive organisation overseas; and the government’s Scientific Advisory Committee. Too many fingers in the pie, no doubt; but the crucial initiates were Lord Cherwell (Professor F.A. Lindemann), Paymaster-General but holding that post as Churchill’s personal and long-time scientific adviser, and Duncan Sandys, since 20 April chairman of the committee, soon to be known as the Bodyline, then Crossbow Committee, charged with overall responsibility for investigation of the secret weapon threat.

Churchill believed in ‘creative tension’ as a principle of administrative efficiency, the fostering of rivalries between government servants to generate energy in the examination of problems and the keenest critical response. It was a sound principle, as long as normal personalities were involved. There was nothing normal about the personalities of Sandys and Cherwell, or in turn about their relationship with their overlord. Sandys was an ambitious young politician of grating disposition, who had a possessively filial attitude to the Prime Minister. Cherwell, a rich bachelor scientist of exceptional intelligence, also had a possessive attitude towards Churchill. Never quite at home in England, though he was a Fellow of the Royal Society, an Oxford professor and a resident of Devon, he seemed unable to shrug off his sense of foreignness, the product of German birth and education, burning British patriot though he was. He had attached himself to the Prime Minister during Churchill’s wilderness years, adulated him personally and jealously guarded his own status as the medium through whom Churchill received scientific advice. The appointment of Sandys to head the secret weapons committee touched him to the quick. Observers noted that – discreetly heterosexual though he undoubtedly was – he trembled with an almost feminine indignation at the slight. The regrettable outcome was that, because Sandys early espoused the idea that Nazi Germany was indeed developing a long-range rocket, Cherwell grasped at every strand of his extensive scientific knowledge to decry the thought: liquid fuel was unmanageable, only a solid-fuelled rocket would work, it would have to be a multi-stage monstrosity, its launch sites would be so large as to be undisguisable, it probably existed only in the minds of unreliable foreign agents. The idea, he argued in a phrase that inextinguishably attaches to his considered advice, was ‘a mare’s nest’.

The secret weapons intelligence plot, between the first deliberate overflying of Peenemünde by RAF photographic intelligence aircraft in April 1943 and the arrival of the first pilotless weapon on British soil on 13 June 1944 (a flying bomb, not a rocket), was therefore bedevilled at every turn by reasoned disagreement between the parties to the investigation. To his credit, Cherwell never dismissed the feasibility of a cruise missile (the flying bomb). Indeed, he argued that, if a pilotless weapon threat existed, it was probable that it would take a cruise missile form. Because, however, agents’ reports of the V-1 came later, while evidence of the rocket threat, however vague and misleading, came earlier and more plentifully, the British were both misled and caused to disagree among themselves. The disabling weakness of the German secret weapons programme was to attempt to do too much with too little; the British were further confused by the German investment in a multi-stage long-range gun (the ‘high-pressure pump’) and a rocket-propelled anti-aircraft missile, the Wasserfall (Waterfall). The weakness of the British intelligence counter-attack lay in an absence of practical knowledge of rocket or cruise missile technology and so a lack of clarity in their attempt to perceive what it was they were seeking to identify. The very wealth of intelligence received during April, May, June and July 1943 – from agents, prisoner-of-war interrogations and air photographs – required laborious analysis but in its diversity and imprecision provided something for anyone who had taken up an intellectual position on the nature of the threat or who denied its reality.

Among those contributing were a captured German tank technology officer who co-operated so enthusiastically with his interrogators that he was appointed a British civil servant and posted to the Ministry of Supply as ‘Mr Herbert’. He had information on anything he was asked about including, eventually, the German secret weapons programme. He claimed that he had been involved in the development of projectiles weighing a hundred tons, launched either from a tube or a ramp. A senior officer of the Luftwaffe experimental unit, captured in April, told of his superior, Colonel Rowehl, being summoned to see Hitler at Berchtesgaden to discuss the bombardment of Britain with rockets and jet-propelled aircraft in the coming summer. ‘Mr Herbert’, when re-interrogated, remembered that he had witnessed the launch of a sixty-ton rocket and knew of another of twenty-five tons. He mentioned the involvement of the Askania company and of Peenemünde, and other circumstantial facts, all later proved accurate. During 1–5 June, four reports were received in London that substantiated, in one way or another, information on hand. They mentioned Rechlin, the Luftwaffe experimental station, Usedom, the island on which Peenemünde was located, described it as a German army, not Luftwaffe, establishment (important, because the rocket was an army weapon) and, in the last report, described the firing of three rockets, 50–60 feet long, from ‘testing pit No. 7’. Large pits, clearly visible on air photographs of Peenemünde, had puzzled the interpreters. The reference was misleading, since the rockets were fired from transporter-erectors positioned in the open, but it seemed to emphasise that the British should be interested in Peenemünde.

This pot-pourri of information merely helped to harden attitudes among the investigators in Britain, not to elucidate. The positions were as follows: Duncan Sandys was fairly certain that the Germans were developing a rocket; R.V. Jones was uncertain but had an open mind; Lord Cherwell was absolutely convinced that a rocket was not technically feasible. His argument was fiercely reasonable: take-off would demand an enormous thrust; such thrust could only be supplied by an enormous charge of solid fuel inside a very large rocket; a very large rocket would need a conspicuous launch platform, either a ‘gun’ or a large ramp; no such structures had been identified; therefore the rocket did not exist. He dismissed the notion that the Germans might be using liquid fuel – he appears not to have studied Goddard’s pre-war experiments in America and to have been unaware of recent British experiments, conducted by Isaac Lubbeck for the Shell Petroleum Company – on the grounds that it would be impossible to control the flow of gases out of the rocket, which could not therefore be guided. Cherwell was to persist in this view until the contrary evidence became incontrovertible.

Meanwhile, photograph reconnaissance of ‘cylindrical’ or ‘torpedo-like’ objects at Peenemünde accumulated; interpretation suggested dimensions of ‘38 feet by eight [in diameter]’, ‘40 feet by 4 feet thick’, ‘35 feet long with a blunt point’ (we now know the warhead had not been fitted), ‘a cylinder tapered at one end and provided with 3 radial fins at the other’. On 23 June a photographic mission returned with film of two ‘torpedo-like’ objects, both thirty-eight feet long, six feet in diameter and with three fins. These photographs proved critical in advancing the debate about what Peenemünde threatened.

Sandys summarised the evidence in a report on 28 June. ‘The German long-range rocket has undoubtedly reached an advanced state of development . . . frequent firings are taking place at Peenemünde.’ Prisoner-of-war and agent reports implied a range of 130 miles, making it likely that it would be fired from the Pas de Calais, the part of northern France nearest London. Work of a suspicious nature – in fact the construction of a large concrete bunker – had been detected at Wissant. However, the report again grossly overestimated the rocket’s weight, at between sixty and a hundred tons, with a warhead of up to ten tons, and was still based on the suggestion that it was solid-fuelled.

That was unfortunate, given that so much of the assessment was correct, for the continual false judgement could only lend weight to Cherwell’s dismissal of such a monster rocket’s existence. On 29 June the Defence Committee (Operations) of the Cabinet met in Churchill’s underground command centre in Whitehall. Sandys and Cherwell were present, so was Jones, so were the Chiefs of Staff and the Prime Minister. The meeting opened with a presentation of the most recent Peenemünde photographs, described by Sandys as providing conclusive evidence of the rocket’s existence. Cherwell responded by raising again his technical doubts, his warning that the signs observed might be decoys, and concluded by suggesting that, if there were a secret weapon, it was probably a pilotless aircraft. Jones, asked by Churchill to comment, then disconcerted Cherwell by coming down on the side of Sandys. Thitherto he had harboured real doubts, reinforced by the deference he owed to Cherwell as one of his former Oxford pupils. Now he declared himself convinced that the rocket existed. Cherwell raised the final objection that, if so, the ‘flash’ of its launch must have been observed, say by Swedish fishermen in Baltic waters. Since there were no reports of ‘flash’, there could be no rocket. His objection, however, rested on his fixed belief that launch speed could only be achieved by the detonation of a large charge of cordite. The committee chose not to consider the question of whether the Germans might have overcome the difficulty of using liquid fuel. Instead it accepted the probable evidence of the rocket and made three decisions: to continue even more vigorously the examination by every means of the area of northern France within 130 miles of London; to attack rocket-launching sites in that area as soon as they were located; and to bomb Peenemünde.

The Peenemünde raid took place on the night of 17–18 August 1943. It was mounted by 433 Stirling, Halifax and Lancaster heavy bombers of RAF Bomber Command, while eight Mosquitoes staged a diversionary attack on Berlin. Earlier in the day the US Eighth Air Force had bombed Schweinfurt in southern Germany. The Germans were on the alert – a low-level British code they had cracked revealed that a night raid would take place – but they expected the target to be Bremen, another north German city, or Berlin. The sky was clear, though partly obscured by cloud over Peenemünde itself. Cloud would partially disrupt the British bombing pattern. The dropping of radar-confusing foil over Denmark by the Mosquitoes on their way to Berlin would distract the German night-fighter defence.

Soon after midnight, the Pathfinders of the RAF bomber force began dropping their indicators on Peenemünde. Some fell astray, with the result that the aiming point moved southward, away from the test area at the tip of the island. One effect of the misplaced indication was to direct heavy bombing on to the camp occupied by foreign workers, killing several hundred. Nevertheless, many hits were achieved on the laboratories, the rocket factory and the scientists’ housing estate. About 120 of the scientific and technical staff were killed. In the aftermath, it was decided to move the technical facilities to Kochel, in Bavaria - Peter Wegener was one of the scientists transplanted – and the manufacture of the A-4 (V-2) to a new underground Central Works in the Harz Mountains at Nordhausen. Nordhausen was to be built and operated largely by foreign labour; but the destruction of the camp at Peenemünde not only killed apparently all the foreign workers who had supplied London with secret-weapon intelligence – several were Luxemburgers – but also ended the comparatively free conditions which had allowed them to communicate with British intelligence. Nevertheless, A-4 intelligence was not completely ended. The firing range was transferred to Blizna, a remote village in southern Poland, at the confluence of the Bug and Vistula rivers, and Polish agents’ reports were to keep the Crossbow Committee, as the British committee tracking the pilotless weapons’ development was known, supplied with information in the coming months.

Meanwhile, perturbed by reports of ‘long-range guns’ and suggestions that mysterious buildings in both the Pas de Calais and the Cherbourg peninsula might be connected with the enemy’s secret weapons programme, the Allies were led to attack a conspicuous concrete building at Watten, in the Pas de Calais, on 27 August. It was almost completely devastated by the USAAF; later it was discovered to be a rocket store, not a launch site. Other sites, including a bunker at Siracourt and a ‘high-pressure pump gun’ battery at Mimoyecques, were to be destroyed by precision bombing in 1944.

Monday, March 9, 2015

Britain Fights On...


HOME GUARD “Dad’s Army.” The British civil defense force, founded on May 14, 1940. Originally called the “Local Defense Volunteers,” it especially utilized men over normal military age, many of them veterans of the Great War. It kept coastal and air watches, looked out for spies, and trained haphazardly with whatever weapons (or dummy rifles) it could scrounge. From February 1941, its structure became more regular and formal as it served to train underage boys before they were formally conscripted. The Home Guard “stood down” in December 1944.

“SEALION.” German code name for a planned invasion of Great Britain in 1940. The British prepared to meet a German invasion even before Adolf Hitler contemplated it or realized that it would be necessary. After the defeat of France in FALL GELB, a British decision was made to fight on regardless. Britain’s gold reserves and other means of financing the war were shipped to Canada in July. The Home Army was organized and 1.5 million British and Commonwealth regulars hurriedly armed with American weapons. A secret guerilla army was organized with orders to fight in Scotland, Wales, and the Midlands, should southern England fall. The Royal Navy readied for catastrophic losses in a mighty battle to deny a Channel crossing by the Wehrmacht, and gas weapons were authorized for use against any German beachhead or lodgement. Beyond that, plans were made to fight on from the Empire if the island of Great Britain fell, to hold on and continue the war until the Americans entered it. On July 16, 1940, Adolf Hitler ordered preparations undertaken for a crossing of the Channel and invasion of Britain.

STARFISH


British codename for decoy fires that were ignited during German air raids in December 1940 to attract enemy bombers from their real targets in England. In the first attempt, made on 2 December 1940 as the Luftwaffe attacked Bristol, 66 high explosive bombs were dropped on the STARFISH site, which established the countermeasure. The Royal Air Force’s 80 Wing supervised 27 sites and employed 2,000 personnel on STARFISH operations.

'Blockbuster' bomb forces Koblenz evacuation




 A 12,000lb HC blockbuster pictured in the factory minus-tail unit.


A 12,000lb HC blockbuster being dropped.

 'Blockbuster' bombs, also known as cookies, got their name from the press during the Second World War through their ability to destroy entire blocks.

They typically weighed either 4,000, 8000 or 12,000lbs and usually contained 50 per cent explosive by weight.

Their primary was use was in causing extensive damage to buildings so that smaller 1.8kg incendiary bombs could reach their interiors.

In 1943, 25,000 blockbusters were used. This increased to 38,000 the following year, before returning to 25,000 in 1945.

A safe height for unleashing the 4,000lb blockbuster was said to be around 5,000ft - any lower and the aircraft risked being caught in the blast.

During the Blitz the Germans created improvised blockbuster by attaching naval mines dropped on parachutes.
 
Bomb disposal experts in the German city of Koblenz have successfully defused two bombs from World War II found in the riverbed of the Rhine. 

They were discovered when water levels fell because of a prolonged dry spell.

The bigger of the two bombs weighed 1.8 tonnes and was dropped by the Royal Air Force between 1943 and 1945.

Nearly half the city's population - 45,000 - has been evacuated, including the inhabitants of two hospitals, seven nursing homes and a prison.

It is the biggest bomb disposal operation in Germany since 1945.
'Relief'
  The smaller of the two bombs - weighing 125kg (275lb) - was dropped by US forces. Experts said it was the more dangerous of the two.
 
Both bombs have now been made safe in a three-hour operation. 

"We are relieved," fire department spokesman Manfred Morschhaeuser told the German news agency DPA.

A smoke grenade canister found at the same site was blown up in a controlled explosion.

The BBC's Stephen Evans, in Berlin, says more bombs are expected to be discovered because of the low water levels in the Rhine.

About 600 tonnes of unexploded ordnance are discovered in Germany every year, our correspondent says.

Everyone living within a 2km (1.25 mile) radius of the bomb site was ordered to leave the area.

Shelters with 12,000 beds were set up in schools to accommodate those with no other place to go.

However, only 500 people were reported to have made use of them. Most residents went to stay with friends or relatives. 

A fleet of 500 emergency vehicles - including ambulances and police - stood ready in case one of the bombs went off.

River drained Hundreds of sandbags were laid around the site of the bombs, and water pumped out from the surrounding area. Only once the bomb site was dry could work to defuse the explosives begin.

Wartime bombs are frequently found in Germany - but this is believed to be one of the biggest ever.

In July 2010, three people were killed in the central German town of Goettingen when a 500kg World War II bomb unearthed during the construction of a sports stadium exploded.

The RAF bomb in the Rhine - discovered on 20 November - is one of the so-called block-busters designed to cause maximum damage to buildings.

More than 250 bombs of the block-buster type were dropped on Koblenz between 1943 and 1945, Ronald Eppleheim of the city's fire department told the BBC. Some still lie undiscovered.

If the bomb had gone off, Mr Eppleheim said it would have sent "shrapnel flying through the air in and around 1.5km".

There would also have been a "big, big air blast that would crash into the walls and the houses and put the windows out, or the doors," he said.

The newspaper Die Welt quoted one woman who said her elderly relative in one of the care homes was distressed by the evacuation.

"She lived through nights of bombing in World War II, and now it is all coming back to her," the woman said.

Trains were not stopping at the main railway station in Koblenz, and access roads into the city were closed.

The city authorities began distributing leaflets on Tuesday, advising residents to close up their properties and pull down shutters where possible.
 

 

Tuesday, February 24, 2015

Another failure: Blitz


Starfish decoy control bunker

A Second World War bombing decoy site at Stockwood. It was built in 1940 as a 'Permanent Starfish' site to deflect enemy bombing from the city of Bristol. In 1942 a 'QL' decoy was added to the site as part of the 'C-series' of civil decoys to protect the Lysaght steelworks in Bristol. The 'Starfish' decoy operated by lighting a series of controlled fires during an air raid to replicate an urban area targeted by bombs. The 'QL' decoy featured a display of lights to simulate an active factory site. The site is referenced as being in use up until 1943, but could have been in use throughout the duration of the war. Stockwood was one of eight civil bombing decoys for Bristol, and one of six 'Starfish' sites.


Late 1940 and early 1941 saw a second British failure. London and many other port and industrial cities were to be bombed with near impunity by the Germans. One reason the Germans could bomb successfully while the British could not was that as well as using electronic navigation aids they were operating from bases not in Germany, but in France and the Low Countries. The other reason was that air defences hardly worked at all. The means of defence were many and varied, including guns, barrage balloons, rockets, aerial mines and more. One of the least known was the extensive system of decoys to mislead bombers, a very large programme in which major towns and cities and industrial and military installations were shadowed by various types of decoy, the most common of which simulated burning towns. They drew off 2,000 tons of bombs, perhaps some 5 per cent of those dropped. The Stockwood decoy, a small set-up which blazed away during raids on Bristol, hoping to confuse German bombers as they approached from the south-east, is credited as one of the more successful ones. Indeed, it is not impossible that the decoys were the most successful form of air defence during the Blitz.

Despite huge investments in fighters and lesser investment in radar, as well as anti-aircraft artillery, barrage balloons and other measures like proximity fuzes, illumination of the skies and rockets, the German bomber got through. The simple tactic of bombing at night rendered the great British air defence system essentially inoperative. This was a matter of some import. More British civilians died during the Blitz than British soldiers in the Battle of France. Yet the German Blitz, while more successful than the British bomber attacks on Germany of 1940–41, did not live up to the horror stories painted by many (including Churchill) in the 1930s; nor indeed to later accounts of the Blitz’s destructiveness.

The reasons for this British failure are difficult to grasp since radar could see in the dark. The problem was that during the Blitz radars could not yet be used to direct fighters sufficiently closely to bombers to attack them; nor could they yet be used to direct gunfire accurately enough.



Tuesday, February 17, 2015

Morrison shelter


The Blitz hit Britain in the autumn and winter nights of 1940–41. This was not the time to be in a trench or an Anderson shelter in one’s garden. There was a demand for indoor shelters. The choice of a new shelter was made in No. 10 Downing Street, not in a committee meeting, but at a demonstration. On New Year’s Day 1941 two prototypes were on show there: one, with a flat top, was by Professor John Baker; the other, with a curved top, by a Dr Merriman. The scene was rendered as follows in an official account: ‘The PM entering the room found a convenient seat on the flat-topped shelter and hailed “curvedtop” as “just the thing”. Professor Baker suggested that the convenience of “flat-top” as an article of furniture was perhaps causing its qualities as a shelter to be hidden.’ The upshot was that both would be produced and the public would have a choice. But tests on production models in March 1941 showed the curved top to be ‘markedly inferior’ and it was abandoned.

Baker’s own account was much more dramatic. He claimed that Churchill had himself come up with the curved-top idea, and had sketched an arched shelter for Herbert Morrison, the Minister of Home Security. Morrison got the idea worked up into a design and mock-up in his ministry. Baker, who worked in the ministry, was asked to look at sketches, but instead designed his own shelter, based on his novel principles for construction in steel. This involved using the buckling of steel to absorb energy. Baker had a mock-up of his shelter made and, to the surprise of the chief engineer of the Ministry, took it to Downing Street as a last-minute challenger to the official shelter inspired by Churchill. He recorded:

The Prime Minister presumably taking it for a piece of furniture, sat on the edge of the table shelter and looked at the arch type. ‘That’s the kind of thing to give them’ he said and the various points of the shelter were discussed. Mr Morrison then drew the Prime Minister’s attention to the fact that he was sitting on another shelter. He got off it and the Minister of Home Security described its virtues. This impressed me very much since he brought out all the points I had retailed to him a quarter of an hour before about an engineering product he had heard of for the first time. The Prime Minister addressed some question about the shelter to the Chief Engineer, he passed it on to me and I answered it . . . The Prime Minister then concentrated on me and plied me with questions.

Churchill, he continued, ‘was eventually satisfied, thumped the top of the table shelter, said, “that’s the one, make 500,000 in the next three months and give them to the people. Show them that it is safe, blow a house up on one, put a pig in it, put the inventor in it”, said he poking me in the ribs.’ Not surprisingly, Baker recorded that ‘It was most probably the most memorable three quarters of an hour of my life and I am never likely to forget it.’ In this version, Morrison asks Baker to redesign the arched version as well.

Baker’s novel design came to be produced on a large scale. The ‘steel table shelter’ was issued free for those earning under £350 per annum and was on sale for £7. It was better known as the Morrison shelter, though the Baker shelter, even the Churchill shelter, would have been much more appropriate. Had the bombing continued, it would perhaps have become even more famous than the Anderson shelter. Yet, given that the bombing was coming to an end, until a brief resumption in 1944, it was to save few lives. Britain’s cities would have been better off without it, in that the steel could have been used for something else. Of course, in this case, as in many others, it had to be assumed that Britain was likely to be bombed in the near future.