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Comparison of rankine cycles for micro-CHP generation based on inward flow radial turbine or scroll expander

机译:基于内流径向涡轮或涡旋膨胀机的微型热电联产朗肯循环的比较

摘要

This contribution aims to analyze micro-CHP units based on Rankine cycles. Two types of expander are considered: a small scale inward flow radial turbine and a volumetric scroll type expander. This latter, should allow to overcome the limitation imposed by a standard steam-turbine that arise when the required shaft-power is very low. Moreover, the scroll expander will also allow to easily treat wet steams, which must be avoided when considering a turbo-expander. The final aim is to deduce which one of the two types of expander is more suitable, with a specified target performance and the availability of a certain hot source. In order to define the thermodynamic expansion process, the analysis uses a one-dimensional model of the radial turbine, previously developed by the authors, and of an estimation of the scroll expander efficiency. Also, the analysis is carried out for different working fluids, such as water, and two organic fluids, cyclohexane and toluene. Through the discussion of the results, for a specified set of constraints (e.g. expander inlet temperature, temperature of condensation, expander geometrical parameters) it is possible to deduce important indications on the most suitable expander for a given cycle layout.
机译:该贡献旨在基于兰金循环分析微型热电联产单元。考虑了两种类型的膨胀器:小规模的内流径流式涡轮机和容积涡旋式膨胀器。后者应允许克服标准蒸汽轮机施加的限制,该限制在所需轴功率非常低时出现。此外,涡旋膨胀机还可以轻松处理湿蒸汽,在考虑使用涡轮膨胀机时必须避免湿蒸汽。最终目的是推断出两种扩展器中的哪一种更适合,并具有指定的目标性能和某些热源的可用性。为了定义热力学膨胀过程,该分析使用了作者先前开发的径向涡轮的一维模型以及涡旋膨胀机效率的估算。此外,还对不同的工作流体(例如水)和两种有机流体(环己烷和甲苯)进行了分析。通过对结果的讨论,对于一组特定的约束条件(例如膨胀机入口温度,冷凝温度,膨胀机几何参数),可以针对给定的循环布局推断出最合适的膨胀机上的重要指示。

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