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Optimisation of two-stage screw expanders for waste heat recovery applications

机译:针对废热回收应用的两级螺杆膨胀机的优化

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摘要

It has previously been shown that the use of two-phase screw expanders in power generation cycles can achieve an increase in the utilisation of available energy from a low temperature heat source when compared with more conventional single-phase turbines. However, screw expander efficiencies are more sensitive to expansion volume ratio than turbines, and this increases as the expander inlet vapour dryness fraction decreases. For singlestage screw machines with low inlet dryness, this can lead to under expansion of the working fluid and low isentropic efficiency for the expansion process. The performance of the cycle can potentially be improved by using a two-stage expander, consisting of a low pressure machine and a smaller high pressure machine connected in series. By expanding the working fluid over two stages, the built-in volume ratios of the two machines can be selected to provide a better match with the overall expansion process, thereby increasing efficiency for particular inlet and discharge conditions. The mass flow rate though both stages must however be matched, and the compromise between increasing efficiency and maximising power output must also be considered. This research uses a rigorous thermodynamic screw machine model to compare the performance of single and two-stage expanders over a range of operating conditions. The model allows optimisation of the required intermediate pressure in the two- stage expander, along with the rotational speed and built-in volume ratio of both screw machine stages. The results allow the two-stage machine to be fully specified in order to achieve maximum efficiency for a required power output.
机译:先前已经表明,与更传统的单相涡轮机相比,在发电周期中使用两相螺杆膨胀机可以提高来自低温热源的可用能量利用率。但是,螺杆膨胀机的效率对膨胀比的影响比涡轮机更为敏感,并且随着膨胀机入口蒸汽干燥分数的降低,效率会提高。对于入口干燥度低的单级螺杆机,这可能导致工作流体膨胀不足,并且膨胀过程的等熵效率低。可以通过使用两级膨胀机来改善循环性能,该膨胀机由串联连接的低压机和较小的高压机组成。通过将工作流体分两阶段进行膨胀,可以选择两台机器的内置容积比,以更好地匹配整个膨胀过程,从而提高特定进口和排放条件的效率。然而,通过两个阶段的质量流率必须匹配,并且还必须考虑提高效率和最大功率输出之间的折衷。这项研究使用严格的热力螺杆机模型来比较单级和两级膨胀机在一系列运行条件下的性能。该模型可以优化两级膨胀机中所需的中间压力,以及两个螺杆机级的转速和内置体积比。结果允许完全指定两级机器,以实现所需功率输出的最大效率。

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