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Design and development of Solar Stirling Engine for power generation

机译:用于发电的太阳斯特林发动机的设计与开发

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Solar energy reaching earth’s surface has small intensity of about 5-7.5KW-h/m2.Hence for any worthwhile application,sufficient solar energy should be collected with a help of solar collectors.This paper provides a study on the configuration of solar Stirling engine and analyzes the performance of using a parabolic reflector as a heat source.The parabolic reflector functions due to the geometric properties of the paraboloidal shape,any incoming ray that is parallel to the axis of the dish will be focused at a point.The key principle of a Stirling engine is that a fixed amount of a gas is sealed inside the engine.The Stirling cycle involves a series of events that change the pressure of the gas inside the engine,causing it to do work.The engine design should be that of a gamma-configuration,double acting,vertical Stirling engine.The assembly consists of a gamma sterling engine and a parabolic reflector placed on a vertical stand along with a convex lens and a tacho generator.The study is exposed further with considerations of designing parameters involved in fabrication of the components of the system.The drafting and modeling of different parts or components of the assembly is done with the help of Solid edge.
机译:达到地球表面的太阳能具有小强度约为5-7.5kW-H / m2。对于任何有价值的应用,应在太阳能集热器的帮助下收集足够的太阳能。本文提供了太阳斯特林发动机的配置研究并分析使用抛物线反射器作为热源的性能。抛物线反射器由于抛物面形状的几何特性而函数,任何与盘子的轴线平行的进料射线都将聚焦在一个点。关键原则斯特林发动机的是,固定量的气体密封在发动机内。斯特林周期涉及改变发动机内部气体的一系列事件,导致它可以执行工作。发动机设计应该是这样的伽马配置,双作用,垂直斯特林发动机。组件由伽马斯特林发动机和抛物面反射器组成,垂直支架上方与凸透镜和Tacho发电机组成。研究我借助于制造系统组件的制造所涉及的参数的考虑来进一步暴露。组装的不同部件或组件的起草和建模是在实心边缘的帮助下完成的。

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