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Ideal cycle analysis of a pulse detonation engine

机译:脉冲爆震发动机的理想循环分析

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摘要

Pulse Detonation Engine (PDE) is expected to be one candidate for the next generation of high performance propulsion engines and power plants. The need for heavy air compression in common gas turbines could be eliminated in PDEs, allowing the operation with fewer compressor stages. This advantage would yield higher thermal efficiency and decrease the size of the engine. So, PDEs could be proposed as an alternative to gas turbines especially for small commercial power generation plants. Cycle analysis would be an excellent tool to compute and analyse the performance of PDE without the necessity of expensive experimental tests. In the current study, the effects of fuel types and frequency of a PDE on the thermal efficiency through thermodynamic cycle analysis is evaluated. The generic models for the cycle analysis are developed by Matlab. The Humphrey, ZND and Brayton cycles are adopted for this analysis. Thermal efficiency of Biogases for its less emission characteristic is studied in an ideal cycle against Hydrogen, Methane and Propane. It is concluded that the Biogas could be an appropriate fuel for theoretically PDE studies. To find a relation between thermal efficiency and frequency, at constant geometry, in two different attempts, the relation between thermal efficiency and detonation speed, and that of frequency and the velocity of filling and purging are studied. It’s seen a direct relation between thermal efficiency of PDE cycle and its frequency cannot be found.
机译:脉冲爆震发动机(PDE)有望成为下一代高性能推进发动机和发电厂的候选者。在PDE中,可以消除普通燃气轮机中对重型空气压缩的需求,从而使压缩机级数更少。该优点将产生更高的热效率并减小发动机的尺寸。因此,PDE可以作为燃气轮机的替代方案,特别是对于小型商业发电厂。周期分析将是计算和分析PDE性能的绝佳工具,而无需进行昂贵的实验测试。在当前的研究中,通过热力循环分析评估了燃料类型和PDE频率对热效率的影响。 Matlab开发了用于循环分析的通用模型。汉弗莱,ZND和布雷顿循环用于此分析。在理想的循环中,针对氢气,甲烷和丙烷,研究了沼气的热效率因其较低的排放特性而被研究。结论是,沼气可以作为理论上PDE研究的合适燃料。为了找到恒定几何形状下的热效率与频率之间的关系,通过两次不同的尝试,研究了热效率与爆炸速度之间的关系,以及频率与填充和吹扫速度之间的关系。可以看出,PDE循环的热效率与其频率之间没有直接关系。

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  • 作者

    Moghadam Maryam Sadrzadeh;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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