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Performance Analysis of Regenerative Organic Rankine Cycle System for Solar Micro Combined Heat and Power Generation Applications

机译:太阳能微综合发电应用再生有机朗肯循环系统的性能分析

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The recurrent rises in energy demand and greenhouse gas emissions (GHGs) appeal for effective usage of energy sources. Micro-combined heat and power (micro-CHP) generation is regarded as an efficient replacement to traditional energy systems with distinct electrical and thermal production attributable to the greater energy effectiveness, reduced capacity and to the reduced GHGs. In this context, the Organic Rankine Cycle (ORC) is broadly recognised like a capable system to generate electrical power from solar energy, waste heat or lowquality thermal energy sources, even lower than 90 oC. The present study aims at examining the performance of a solar driven micro-CHP system for residential buildings using a regenerative ORC. The analysis focuses on modelling, simulation and optimisation of various working fluids (WFs) in ORC to utilise low-temperature heat source from solar thermal collectors for heat and power generation. A detailed parametric study is performed to analyse the impacts of different WFs and operating situations at several temperatures of the hot and cold sources, as well as several temperatures and flow rates of the evaporator heating and condenser cooling WFs, on the system performance and heating and electrical power yields. The outcomes showed significant changes in performance such as efficiency and power extracted by the expander and generator based on the temperatures of each hot or cold sources for all WFs. The work extracted by the expander and the electrical power were within the range for residential building applications, in the range of 1-7 kWe, with an electrical isentropic efficiency of about 60% and cycle efficiency up to 9.8%, for a hot source temperature of 108 oC. The WFs will operate in the hot source temperature range that would allow the use of a solar flat plate or evacuated tube collectors.
机译:经常性在能源需求和温室气体排放(GHGS)吸引能源有效使用。微结合的热量和功率(Micro-CHP)产生被认为是传统能源系统的有效替代,具有不同的电气和热产量,可归因于更大的能量效率,降低容量和减少的温室气体。在这种情况下,有机朗肯循环(ORC)广泛地识别,如能力的系统,以产生来自太阳能,废热或低级热能源的电力,甚至低于90℃。本研究旨在使用再生ORC检查用于住宅建筑的太阳能驱动的微型CHP系统的性能。该分析侧重于兽人中各种工作流体(WFS)的建模,仿真和优化,以利用来自太阳能热收集器的低温热源进行热量和发电。进行详细的参数研究以分析不同WFS和操作情况的影响,以及蒸发器加热和冷凝器冷却WFS的若干温度和流速,以及系统性能和加热电力产量。结果表明,基于所有WFS的每个热或冷源的温度,膨胀机和发电机提取的效率和功率等性能的显着变化。膨胀机和电力提取的工作在居民建筑应用范围内,在1-7 kWe的范围内,电气等熵效率约为60%,循环效率高达9.8%,用于热源温度108 oc。 WFS将在热源温度范围内运行,允许使用太阳能平板或抽空管收集器。

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