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Development of a beta-type Stirling engine with rhombic-drive mechanism using a modified non-ideal adiabatic model

机译:使用改进的非理想绝热模型开发具有菱形驱动机构的β型斯特林发动机

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The aim of this study is to develop an efficient theoretical model that can more accurately predict the performance of the designed engine. The developed model is practically further applied in the development of a 500-W engine. The theoretical model is built by modifying the existing non-ideal adiabatic analysis to more accurately predict performance the designed engine. In this model, pressure drops in the heater, the regenerator and the cooler caused by fluid friction, channel sudden expansion and sudden contraction are taken into consideration. Furthermore, an empirical formula for the mechanical loss as a function of rotation speed of the engine is obtained by experiments and introduced into the model. The shaft power, indicated power, and thermal efficiency of the engine are determined. Furthermore, a prototype engine is then built and tested to validate the model. Experimental measurements on the power output are conducted in this study. It is found that maximum shaft power of the prototype engine can reach 556W at rotation speed of 1665 rpm and at a heating temperature of 1100 K. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是开发一种有效的理论模型,可以更准确地预测所设计发动机的性能。该开发模型实际上将进一步应用于500 W发动机的开发中。通过修改现有的非理想绝热分析​​来建立理论模型,以更准确地预测设计引擎的性能。在该模型中,考虑了由流体摩擦,通道突然膨胀和突然收缩引起的加热器,再生器和冷却器中的压降。此外,通过实验获得了机械损耗随发动机转速变化的经验公式,并将其引入模型中。确定轴的功率,指示的功率和发动机的热效率。此外,然后构建原型引擎并进行测试以验证模型。在这项研究中进行了功率输出的实验测量。发现原型引擎的最大轴功率在1665 rpm的转速和1100 K的加热温度下可以达到556W。(C)2017 Elsevier Ltd.保留所有权利。

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