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Thermodynamic performance prediction of rhombic-drive beta-configuration Stirling engine

机译:菱形β - 配置斯特拉稳定发动机的热力学性能预测

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A single-cylinder rhombic drive beta-configuration Stirling engine,heated and cooled at designated temperature,and fuelled with a fixed amount of Helium gas is used to predict and analyse the thermodynamic cycle performance.A general zero-dimensional numerical model is adapted throughout the prediction of Stirling engine performance.The numerical model is determined based on overall geometrical parameters,working fluid properties,swept and un-swept volume.Schmidt and ideal adiabatic analysis based on methodology presented by Berchowitz and Urieli are carried out to predict the cycle pressure,volumetric displacement,work and energy produced during the expansion and compression processes in the cylinder.Based on the designated working condition,the engine is predicted to generate 500 W of power at engine speed of 300 rpm.The indicated thermal efficiency is found to be 66% based on 90° phase angle setting,4.5 bar of Helium cylinder mean pressure,893 K of expansion space temperature and 303 K of cooler space temperature.
机译:单缸菱形驱动β-构级斯特察发动机,在指定温度下加热和冷却,并用固定量的氦气燃气用于预测和分析热力学循环性能。一般零维数值模型在整个过程中适应斯特林发动机性能的预测。基于整体几何参数,工作流体特性,扫过和无扫描的体积确定数值模型。基于Berchowitz和Urieli提供的方法进行了基于Berchowitz和Urieli的方法来预测循环压力,在气缸中的膨胀和压缩过程中产生的容量位移,工作和能量。基于指定的工作条件,预测发动机以300rpm的发动机速度产生500W的功率。发现的热效率为66 %基于90°相角设置,4.5杆氦气缸平均压力,893 k膨胀空间温度和30 3 K的冷却空间温度。

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