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Air supply system design of a Diesel-Brayton combined cycle engine

机译:柴油-布雷顿联合循环发动机的供气系统设计

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The Diesel-Brayton combined cycle engine was proposed previously to achieve the goal of lower fuel consumption, higher power density and good startup performance under low-temperature conditions. The prototype engine was designed and tested based on an off-the-shelf gas turbine and a diesel engine. To achieve a more compact and lighter design, the air supply system was designed based on the centrifugal compressor of the gas turbine. In the coupling operation mode aiming to generate the maximum power, a large amount of compressed air must be extracted into the diesel engine. The present paper presents the design methodology of the compact air supply system. The bleeding slot configuration was selected based on a parametric study and proven by systematic experiments. Three-dimensional simulations were conducted to investigate the performance and flow field of the compressor. Backflow appeared in several passages of the axial diffuser caused by air bleeding, which further distorted the air flow in the combustion chamber. Such distortion may cause compressor and combustion instabilities. In the future, the combustion chamber and the axial diffuser must be designed in combination with an air bleeding system to improve the engine performance.
机译:先前提出了Diesel-Brayton联合循环发动机,以实现在低温条件下降低油耗,提高功率密度和良好启动性能的目标。该原型发动机是基于现成的燃气轮机和柴油发动机进行设计和测试的。为了实现更紧凑,更轻便的设计,空气供应系统的设计基于燃气轮机的离心压缩机。在旨在产生最大功率的联接操作模式中,必须将大量的压缩空气抽取到柴油发动机中。本文介绍了紧凑型空气供应系统的设计方法。根据参数研究选择出血缝隙配置,并通过系统实验证明。进行了三维模拟,以研究压缩机的性能和流场。轴向扩散器的多个通道中出现回流,这是由于空气泄漏造成的,这进一步扭曲了燃烧室中的气流。这种变形可能导致压缩机和燃烧不稳定性。将来,燃烧室和轴向扩散器必须与排气系统结合设计,以提高发动机性能。

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