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A new high pressure nozzle bank based on trip-jet mixing system

机译:一种新型的基于跳喷混合系统的高压喷嘴组

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A new nozzle bank for an ejector-chemical oxygen-iodine laser consisting of two-dimensional slit nozzles with a trip-jet mixing system was designed, fabricated, and tested in the cold flow operation regime. A computational fluid dynamics (CFD) is used to optimize the trip system design. Horizontal Pilot scan experiments demonstrated that the mixing ability of the trips is excellent. The Mach number of the mixed flow was approximately 3. The average Pitot pressure at the laser cavity was more than 100 Torr. Backpressure tests were conducted, and the results of these tests revealed that the static pressure in the cavity remained constant at approximately 10 Torr until the supersonic diffuser breaks back and the cavity unstarts at a backpressure of approximately 80 Torr.
机译:设计,制造和测试了一种新型的用于喷射化学氧气碘激光器的喷嘴组,该喷嘴组由带有狭缝喷射混合系统的二维狭缝喷嘴组成,并在冷流运行方式下进行了测试。计算流体动力学(CFD)用于优化行程系统设计。水平先导扫描实验表明,行程的混合能力非常好。混合流的马赫数约为3。激光腔处的平均皮托管压力超过100托。进行了背压测试,这些测试的结果表明,腔体中的静压保持恒定在大约10 Torr,直到超音速扩散器破裂并且腔体在大约80 Torr的背压下才开始。

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