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An investigation of a hypocycloid mechanism based twin-rotor piston engine

机译:基于内摆线机构的双转子活塞发动机的研究

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摘要

A unique mechanism is investigated in this paper to show the working principles of a novel hypocycloid twin-rotor piston engine (HTRPE), which provides the basis for the structural design, kinematic and dynamical analysis necessary to realize the engine. As a critical system for the HTRPE, the differential velocity mechanism is examined first by decomposing it into two non-uniform motion mechanisms and one hypocycloid mechanism, which allows an evaluation of different options of design parameters. Then analytical expressions are derived to calculate the rotor angular velocities and the relative angular velocities of pairs of rotors for a detailed performance analysis. Based on the results of this analysis a prototype HTRPE is proposed and benchmarked with both a conventional reciprocating and a Wankel engine. It is shown that the new engine outperforms the other two engines in key engine features including combustion gas force transmission, volumetric change of working chambers, power frequency, piston velocity and displacement, demonstrating that HTRPE is very promising as a more energy efficient engine due to its high compactness and power density, and consequently lightweight design.
机译:本文研究了一种独特的机理,以展示新型摆线双转子活塞发动机(HTRPE)的工作原理,该结构为实现发动机所需的结构设计,运动学和动力学分析提供了基础。作为HTRPE的关键系统,首先通过将差速机构分解为两个非均匀运动机构和一个下摆线机构进行研究,以评估不同的设计参数选项。然后导出解析表达式以计算转子角速度和成对的转子的相对角速度,以进行详细的性能分析。根据分析结果,提出了HTRPE原型,并以常规往复式和Wankel发动机为基准。结果表明,新发动机在主要发动机性能(包括燃气传递力,工作室的容积变化,功率频率,活塞速度和排量)方面胜过其他两个发动机,这表明HTRPE作为具有更高能效的发动机非常有前途,原因是它的紧凑性和功率密度高,因此设计轻巧。

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