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A parametric study on the effects of displacer-cylinder-circumferential-wall thermal conditions on the performance of a γ-type LTD Stirling engine

机译:膨胀缸周壁热条件对镁型LTD斯特林发动机性能影响的参数研究

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摘要

Regarding a Stirling engine's heat source and heat sink, most of the studies in the literature focus only on the magnitude of temperature difference between them. However, different Stirling engines adopt very different heat-source and heat-sink configurations. This study is aimed at understanding the effects of different displacer-cylinder-wall thermal conditions on engine performance using computational fluid dynamics (CFD). Results include p-V diagrams, heat flux distributions, temperature variations, and effects of three displacer-cylinder-wall parameters on indicated power and efficiency. It is found that the thermal conditions on the displacer-cylinder-circumferential wall (DCCW) impose significant effects on engine performance. Within the ranges of parameters investigated in this study, extending the coverage of heat source and heat sink on this wall improves up to 28% in indicated power at the cost of losing about 10% in efficiency, proving the significance of DCCW conditions on engine performance.
机译:关于斯特林发动机的热源和散热器,文献中的大多数研究焦点仅关注它们之间的温度差异。然而,不同的斯特林发动机采用非常不同的热源和散热器配置。本研究旨在了解不同换挡缸壁热条件对使用计算流体动力学(CFD)发动机性能的影响。结果包括P-V图,热量通量分布,温度变化和三个置换圆柱壁参数对所示功率和效率的影响。发现置换器 - 圆柱圆周壁(DCCW)上的热条件对发动机性能施加了显着的影响。在本研究中调查的参数范围内,在该墙上延伸热源和散热器的覆盖率,以效率降低约10%的成本提高了高达28%的功率,证明了DCCW条件对发动机性能的重要性。

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