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Plausibility Study of Hecto Pressure Ratio Concepts in Large Civil Aero-Engines

机译:大型民用航空发动机中百压比概念的合理性研究

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摘要

Enabling high overall pressure ratios (OPR), wave rotors, and piston concepts (PCs) seem to be solutions surpassing gas turbine efficiency. Therefore, a comparison of a wave rotor and three PCs relative to a reference gas turbine is offered. The PPCs include a Wankel, a two-stroke reciprocating engine, and a free piston. All concepts are investigated with and without intercooling. An additional combustion chamber (CC) downstream the piston engine is investigated, too. The shaft power chosen corresponds to large civil turbofans. Relative to the reference gas turbine, a maximum efficiency increase of 11.2% for the PCs and 9.8% for the intercooled wave rotor is demonstrated. These improvements are contrasted by a 5.8% increase in the intercooled reference gas turbine and a 4.2% increase due to improved gas turbine component efficiencies. Intercooling the higher component efficiency gas turbine leads to a 9.8% efficiency increase. Furthermore, the study demonstrates the high difference between intercooler and piston engine weight and a conflict between PC efficiency and chamber volume, highlighting the need for extreme lightweight design in any piston engine solution. Improving piston engine technology parameters is demonstrated to lead to higher efficiency, but not to a chamber volume reduction. Heat loss in the piston engines is identified as the major efficiency limiter.
机译:实现高总压力比(OPR),波转子和活塞概念(PC)似乎是超越燃气轮机效率的解决方案。因此,提供了相对于参考燃气轮机的波动转子和三个PC的比较。 PPC包括Wankel,两冲程往复式发动机和自由活塞。对所有概念进行了有无中冷研究。还研究了活塞发动机下游的另一个燃烧室(CC)。选择的轴功率对应于大型民用涡轮风扇。相对于参考燃气轮机,PC的最大效率提高了11.2%,中冷波转子的最大效率提高了9.8%。与之相比,中间冷却的参考燃气轮机增加了5.8%,而燃气轮机组件效率得到了提高,因此增加了4.2%。中冷效率更高的燃气轮机可使效率提高9.8%。此外,研究表明,中间冷却器和活塞发动机的重量之间存在很大差异,PC效率与腔室容积之间存在冲突,这突出说明了在任何活塞发动机解决方案中都需要极轻的设计。事实证明,改进活塞发动机技术参数可提高效率,但不会减少腔室容积。活塞发动机中的热损失被认为是主要的效率限制因素。

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