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Development and numerical modelling of a supercharging technique for positive displacement expanders

机译:正排量扩展器增压技术的开发与数值模型

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摘要

This study presents a novel strategy to enhance the recovery performance of any positive displacement expander technology which aims at the maximization of the power output rather than solely its efficiency. The approach is based on an auxiliary injection of fluid under the same suction conditions as the main intake but during the closed volume expansion phase. The operating principle of the supercharging technology is firstly outlined in theoretical terms, while the benefits over a conventional configuration are numerically assessed with reference to a sliding vane expander for applications based on Organic Rankine Cycles (ORC). The holistic modelling platform used for the benchmarking is preliminarily validated over an experimental campaign in which the vane expander was installed in a heavy-duty automotive ORC system and generated up to 1.9 kW (3% of the engine mechanical power) with an overall efficiency of 51.2%. After the simulation platform is validated, the auxiliary intake line is parameterized in terms of four geometrical quantities and the effects of the supercharging with respect to baseline angular pressure trace are shown. An optimization based on a genetic algorithm is eventually performed and the resulting optimized design led to an average mechanical power increase of 50.6%.
机译:本研究提高了一种新的策略,以提高任何正排量扩展器技术的恢复性能,旨在最大化功率输出而不是其效率。该方法基于与主要摄入相同的抽吸条件下的辅助流体,而是在闭合体积膨胀相期间。最初以理论术语概述了增压技术的操作原理,同时参考基于有机朗肯循环(ORC)的应用程序的滑动叶片扩展器进行数值评估传统配置上的益处。用于基准测试的整体建模平台通过实验活动初步验证,其中叶片扩展器安装在重型汽车兽人系统中,并产生高达1.9千瓦(占发动机机械动力的3%),具有整体效率51.2%。在验证仿真平台之后,辅助进气管线以四个几何量参数化,并且示出了相对于基线角度压力迹线的增压的效果。最终执行基于遗传算法的优化,并产生的优化设计导致平均机械功率增加50.6%。

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