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The Jumo 213 was a World War II-era V-12 liquid cooled aircraft engine, a development of Junkers Motoren's earlier design, the Jumo 211. The design added two features, a pressurized cooling system that required considerably less cooling fluid that allowed the engine to be built smaller and lighter, and a number of improvements that allowed it to run at higher RPM. Although these changes may sound fairly minor, they boosted power by over 500 hp and made the 213 one of the most sought-after engine designs in the late-war era. Image File history File links Download high resolution version (2133x1624, 469 KB) File links The following pages link to this file: Junkers Jumo 213 ...
Image File history File links Download high resolution version (2133x1624, 469 KB) File links The following pages link to this file: Junkers Jumo 213 ...
Combatants Allies: ⢠Soviet Union, ⢠UK & Commonwealth, ⢠USA, ⢠France/Free France, ⢠China, ⢠Poland, ⢠...and others Axis: ⢠Germany, ⢠Japan, ⢠Italy, ⢠...and others Casualties Military dead: 18 million Civilian dead: 33 million Full list Military dead: 7 million Civilian dead: 4 million Full list World War II, also known as the Second World...
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For the Prussian/German landowning classes, see junker. The name Junkers (IPA: /ˈjunkeɺs/) is well known in connection with aircraft, which were produced under this name for the Luftwaffe during World War II. In particular the Ju 87 Stuka and Ju 52 Tante Ju were common symbols of the Nazi...
The Jumo 211 was an inverted V-12 aircraft engine, Junkers Motorens primary aircraft engine of World War II. It was the direct competitor to the famous Daimler-Benz DB 601 and closely paralleled its development. ...
When the Jumo 211 entered production in the late 1930s it used a normal liquid cooling system based on an "open cycle". Water was pumped through the engine to keep it cool, but the system as a whole operated at outside air pressure, or only slightly greater. Since the boiling point of water is effected by pressure, this meant that as the aircraft climbed the temperature of the cooling water had to be kept quite low to avoid boiling, which in turn meant that the water removed little heat from the engine before having to be move to the radiator to cool it. In contrast, the Daimler-Benz DB 601 used a pressurized system that ran at the same pressure at all altitudes, and actually had a boiling point of about 110°C. This allowed it to use considerably less water for the same amount of cooling power. Although otherwise similar in most respects, the 601 was smaller and lighter than the 211 and could be run at higher power settings at higher altitudes, making it popular in fighter designs. The 211 was relegated to "secondary" roles in bombers and transports. Radiator is a common term for several types of heat exchangers. ...
The Daimler-Benz DB 601 was a German aircraft engine built during World War II. It was a liquid-cooled inverted V12, and powered the Messerschmitt Bf 109, among others. ...
Junkers was not happy with this state of affairs, and started their own efforts to produce a pressurized cooling system as early as 1938. Experiments on the 211 proved so successful that it became clear that not only could the engine be built smaller, but could be run at higher power settings without overheating. Additional changes to strengthen the crankshaft and add a fully-shrouded supercharger for increased boost resulted in the Jumo 211F model, which delivered 1,400 hp at 2,400 RPM, up from 950 hp at 2,200 RPM in earlier versions. But this was only the beginning. After redesigning the engine casing to a smaller size to suit the increased cooling power and then further increasing boost settings on the supercharger, the resulting 213A model was able to deliver a whopping 1,750 PS (metric hp) at 3,250 RPM. This made it considerably more powerful than the corresponding DB 601E which provided 1,350hp, and about the same power as the much larger DB 603. Junkers decided to go after the 603's market, and made the 213's mounting points and fluid connections in the same locations as the 603, allowing it to be "dropped in" as a replacement. A supercharger (also known as a blower) is an air compressor used to compress air into the cylinders of an internal combustion engine. ...
The Daimler-Benz DB 603 engine was a German aircraft engine used during World War 2. ...
The 213A first ran in 1940, but experienced lengthy delays before finally being declared "production quality" in 1943. Production was extremely slow to ramp up, in order to avoid delays in the existing Jumo 211 production. By the time the engines were available in any sort of number in 1944, Allied bombing repeatedly destroyed the production lines. Production of the A models was limited to about 400-500 a month for most of 1944/45. A range of advanced versions were also developed during the lengthy teething period. The 213B was designed to run on 100 octane "C3" fuel, allowing the boost pressure to be increased and the take-off power improved to 2,000 PS. The 213C was essentially an A model with re-arranged secondary equipment (supercharger, oil pump, etc.) to allow a cannon to fire through the propeller shaft. The 213D added a new three-speed supercharger for smoother power curves and improved altitude performance, but it was decided to skip over this version. R-phrases , , , , S-phrases , , , , , , , Flash point 13 °C Autoignition temperature 220 °C Explosive limits 1. ...
Instead the next major version was to be the 213E, and the similar 213F. These engines were equipped with a new two-speed, two-stage supercharger that dramatically improved altitude performance. The only difference between the two models was that the E included an intercooler for additional high-altitude performance, while the F model removed this and was tuned for slightly lower altitudes. The E and F models were in high demand for many late-war aircraft, including the Junkers Ju 188, Junkers Ju 388, models of the Focke-Wulf Fw 190 and the Focke-Wulf Ta 152H. An intercooler is a device used on turbocharged and supercharged internal combustion engines to improve the volumetric efficiency and increase the amount of charge in the engine, thereby increasing power. ...
The Ju 188 Rächer (Avenger) was a high-performance medium bomber from Junkers, the planned follow-on to the famed Ju 88 with better performance and payload. ...
The Junkers Ju 388J Störtebeker was a World War II heavy fighter based on the famous Ju 88 airframe. ...
Focke-Wulf Fw 190A in flight. ...
The Focke-Wulf Ta 152 was a WW2 Luftwaffe high-altitude interceptor fighter. ...
A more major upgrade was projected as the 213J, which replaced the earlier model's three valves with a new four-valve-per-cylinder design for increased volumetric efficiency. There was no time to work this change into the production line before the war ended. Other experimental models included the 213S for low-altitude use, and the turbocharged 213T. Volumetric efficiency in internal combustion engine design refers to the efficiency with which the engine can move the charge into and out of the cylinders. ...
This article describes the internal combustion engine component often known as a turbo. ...
Specifications - Configuration: Twelve-cylinder inverted-Vee liquid-cooled (pressurized water up to 120°C)
- Bore by stroke: 150 by 165 mm
- Displacement: 35 litres
- Compression ratio: 6.5:1 (B4 fuel, 87 octane)
- Power: 1,750 PS (1287 kW) at 3,250 rpm for takeoff
- Supercharger: Two-stage (213A,C), three-stage two-speed (213E)
- Rated altitude: 6,000 m (213A,C), 9,600 m (213E)
- Dimensions: Length: 2.266 m
- Weight: 920 kg (213A,C), 940 kg (213E)
Jumo 213 versions - 213A: First version, 1,750 PS (2,100 PS with MW50 boost) take-off power
- 213B: Project, a 213A with C3 fuel (100 octane) and up to 2,000 PS take-off power
- 213C: Optimized 213A, re-arranging of secondary equipment allowed mounting of a cannon firing through the propeller axis, major production version
- 213D: 213C with a new three-speed supercharger, did not enter production
- 213E: High altitude version of 213A, equipped with a two-speed two-stage intercooled supercharger and delivering 1,750 PS (2,050 PS with MW 50 boost) take-off power
- 213F: Similar to the 213E, but without the intercooler.
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