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Thermal balance of pulsed detonation engines

机译:脉冲爆炸发动机的热平衡

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摘要

With no moving parts in the power production section and a thermodynamically efficient cycle, the Pulsed Detonation Engine (PDE) offers a low-cost alternative to turbojet and liquid-propellant rocket engines. Both air-breathing and pure rocket modes of engine operation offer substantial system, materials, and cycle advantages that will allow us to bypass the scalability, operational range, efficiency, and cost limitations of existing engines. We introduced the modern PDE concept in 1986 and experimentally demonstrated its operation in 1986, 1994, and 1998. The concept was subsequently treated extensively in a number of analytical and experimental studies. This paper examines the thermal balance of the PDE as a function of engine length, cycle frequency, external flow Mach number and other parameters. The results indicate that PDEs will have thermal characteristics that are drastically different from conventional engines. The results of the study have important implication for PDE design and analysis.
机译:在电力生产部分和热力学上有效的循环中没有移动部件,脉冲爆轰发动机(PDE)提供了涡轮喷气发动物和液体推进剂火箭发动机的低成本替代品。发动机操作的空气呼吸和纯火箭模式都提供了大量的系统,材料和循环优势,使我们能够绕过现有发动机的可扩展性,运营范围,效率和成本限制。我们在1986年介绍了现代PDE概念,并在1998年,1994年和1998年通过实验证明了其运作。该概念随后在一些分析和实验研究中广泛治疗。本文介绍了PDE作为发动机长度,循环频率,外部流动马赫数和其他参数的函数的热平衡。结果表明,PDE具有与传统发动机彻底不同的热特性。该研究的结果对PDE设计和分析具有重要意义。

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