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Dynamic balancing and experience during the development of a single cylinder Beta-configuration Stirling engine using rhombic drive

机译:使用菱形驱动器开发单缸Beta配置斯特林发动机期间的动态平衡和经验

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摘要

The present work starts with analysis, and culminates in the development of engine. Hydrogen is selected as working fluid due to its favorable thermodynamic and thermo-physical properties. During fabrication and sub-assembly engine was run by electrical motor as in motoring test It provided cooling at the cylinder head and confirmed that all the system components were performing well under low charge pressure. Dynamic balancing analysis is done to eliminate unbalanced couple. The same was included in the system by removal of pre-decided part of the gears which also acted as the flywheel. The engine performance was demonstrated by operating the centrifugal pump. LPG burner assembly designed, especially for this Stirling engine, is successfully demonstrated. Preliminary trials for approximately 3-5 min, with loading condition in engine mode, with LPG were conducted. The flame temperature near the cylinder head was maintained at about 1100 K. It needs to be ensured that uniform but sufficient heat input should be provided. In short, an experimental set-up is built in accordance with geometrical dimensions specified in the theoretical design. Theoretically predicted performance and experimental results have been compared and validated for the developed unit for a particular set of operating parameter with H-2. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当前的工作从分析开始,并最终发展到发动机。由于氢具有良好的热力学和热物理特性,因此选择氢作为工作流体。在制造和组装过程中,发动机如电动机测试中所示,由电动机驱动。它在气缸盖处提供了冷却,并确认所有系统组件在低充气压力下均表现良好。进行动态平衡分析以消除不平衡的耦合。通过移除齿轮的预定部分(也用作飞轮),该组件也包含在系统中。通过操作离心泵证明了发动机的性能。已成功演示了专门为此斯特林发动机设计的液化石油气燃烧器组件。进行了大约3-5分钟的初步试验,在发动机模式下使用LPG进行加载。气缸盖附近的火焰温度保持在大约1100K。需要确保提供均匀但足够的热量输入。简而言之,根据理论设计中指定的几何尺寸建立实验装置。理论上预测的性能和实验结果已针对H-2的特定操作参数集针对已开发的装置进行了比较和验证。 (C)2017 Elsevier Ltd.保留所有权利。

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