有机朗肯循环
兰金度
稳健性(进化)
流入
朗肯循环
汽车工业
工艺工程
环境科学
计算机科学
汽车工程
热交换器
余热回收装置
满标度
机械工程
余热
功率(物理)
工程类
航空航天工程
气象学
基因
物理
量子力学
化学
生物化学
计算机视觉
作者
Marco Manfredi,Marco Alberio,Marco Astolfi,Andrea Spinelli
摘要
Abstract Power production from waste heat recovery represents an attractive and viable solution to contribute to the reduction of pollutant emissions generated by industrial plants and automotive sector. For transport applications, a promising technology can be identified in bottoming mini-organic Rankine cycles (ORCs), devoted to heat recovery from internal combustion engines (ICE). While commercial ORCs exploiting turbo-expanders in the power range of hundreds kW to several MW are a mature technology, well-established design guidelines are not yet available for turbines targeting small power outputs (below 50 kW). The present work develops a reduced-order model for the preliminary design of mini-ORC radial inflow turbines (RITs) for high-pressure ratio applications, suitable to be integrated in a comprehensive cycle optimization. An exhaustive review of existing loss models, whose development pattern is retraced up to the original approaches, is proposed. This investigation is finalized in a loss models effectiveness analysis performed by testing several correlations over six existing geometries. These test case turbines, operating with different fluids and covering a wide range of target expansion ratio, size, and gross power output, are then employed to carry out the validation procedure, whose results prove the robustness and prediction capability of the proposed reduced-order model.
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