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A Quasi-dimensional Numerical Investigation of the Scroll Expander of an Organic Rankine Cycle Unit

机译:有机朗肯循环单元滚动膨胀器的准尺寸数值研究

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摘要

Scroll compressors are often used in air conditioning and refrigeration systems thanks to their high efficiency, low noise and vibrations, light weight and high reliability. Scrolls are also widely used as positive displacement expanders in small-scale power generation systems, such as Organic Rankine Cycles (ORCs). In recent years, the research has focused on the development of mathematical models that help to predict the scroll expander performances under different operating conditions. In this work, a quasi-dimensional model of a scroll expander of an Organic Rankine Cycle unit is presented. Such an expander consists of two identical circle involute spirals, with appropriate starting segments. Specifically, the model is able to design the scroll expander geometry with either a “circular cutter” or a “perfect mesh profile” (PMP) approach, which are two of the most common scroll geometry starting segments. As regards the thermo-fluid dynamic aspects, specific sub-models have been used to account for radial and axial leakage, wall heat transfer, intake and exhaust of the working fluid. The model has been validated with available experimental data in order to assess its accuracy and, at the same time, to calibrate the implemented sub-models. The influence of some geometrical parameters on the expander performances has been assessed. In particular, a study of the influence of the wrap geometry is presented. The results show that the circular cutter approach returns better performances at the expenses of a higher mass consumption. Nevertheless, the circular cutter modification returns a higher specific work. Lastly, the influence of one of the PMP parameters on performances has been assessed. The results show a fairly strong dependence of both mechanical power and specific work, suggesting that the global optimization of all geometric parameters of the scroll expander may radically improve its performances.
机译:由于其高效率,低噪声和振动,重量轻,可靠性高,涡旋式压缩机通常用于空调和制冷系统。滚动也广泛地用作小型发电系统中的正排量扩展器,例如有机朗肯循环(ORCS)。近年来,该研究专注于数学模型的发展,有助于在不同的操作条件下预测滚动扩展器表现。在这项工作中,提出了有机朗肯循环单元的滚动膨胀器的准尺寸模型。这种扩展器由两个相同的圆形螺旋形式组成,具有适当的起始段。具体地,该模型能够设计具有“圆形切割器”或“完美网格配置文件”(PMP)方法的滚动膨胀器几何图形,这是最常见的滚动几何起动段中的两个。关于热流体动态方面,已经使用特定子模型来考虑径向和轴向泄漏,壁传热,摄入和工作流体的排气。该模型已被可用的实验数据验证,以评估其准确性,同时校准实施的子模型。一些几何参数对扩展器性能的影响已经评估。特别地,提出了对包裹物质的影响的研究。结果表明,圆形刀具方法在较高质量消耗的费用下返回更好的性能。然而,圆形刀具修改返回更高的具体工作。最后,已经评估了一个PMP参数对性能的影响。结果表明,机械动力和特定工作的相当强烈依赖,表明滚动膨胀机的所有几何参数的全局优化可以从根本上改善其性能。

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