首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Modelling and off-design performance optimisation of a trilateral flash cycle system using two-phase twin-screw expanders with variable built-in volume ratio
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Modelling and off-design performance optimisation of a trilateral flash cycle system using two-phase twin-screw expanders with variable built-in volume ratio

机译:使用具有可变内置体积比的两相双螺杆扩展器的三边闪循环系统的建模与非设计性能优化

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摘要

This research work presents a numerical chamber model of a two-phase twin-screw expander and its further integration in a one-dimensional model of a Trilateral Flash Cycle (TFC) system for low-grade heat to power conversion applications. The novel feature of the expander is the capability of changing the built-in volume ratio (BIVR) of the machine through a sliding valve in the casing that opens an additional suction port. Lowering the BIVR from 5.06 to 2.63 results in an improvement of the volumetric efficiency from 53% to 77% but also in a reduction of the specific indicated power from 4.77 kJ/kg to 3.56 kJ/kg. Parametric analysis on several degrees of freedom of the full TFC system concluded that expander speed and BIVR are the variables that mostly impact the net power output of the unit. An optimisation study enabled the net power output of the TFC system, at design point, to increase from 81 kW to 103 kW.
机译:该研究工作介绍了两相双螺杆膨胀机的数值腔室模型及其在三边闪存循环(TFC)系统的一维模型中的进一步集成,用于低级热量到电力转换应用。 扩展器的新颖特征是通过壳体中的滑动阀更换机器内置体积比(BIVR)的能力,该套管在壳体中打开额外的吸入口。 从5.06降至2.63的BIVR导致从53%的体积效率提高53%至77%,但也可以减少4.77kJ / kg至3.56 kJ / kg的特定指示功率。 关于全TFC系统的几个自由度的参数分析得出结论,扩展器速度和BIVR是主要影响本机净功率输出的变量。 优化研究使TFC系统的净功率输出在设计点,从81千瓦增加到103千瓦。

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