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THEORETICAL STUDY OF A BUILDING COOLING HEATING POWER (BCHP) SYSTEM DRIVEN BY SOLAR ENERGY BASED ON ORGANIC WORKING FLUID

机译:基于有机工作流体的太阳能驱动的建筑冷却供热(BCHP)系统的理论研究

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摘要

Recently, BCHP systems as a kind of distributed energy resource present a great potential in improving energy efficiency and meeting multiple energy demands. Compared with traditional CCHP systems driven by fossil fuel, on-site renewable energy systems have more advantages in reducing carbon emissions. This paper proposes a new Building Cooling Heating Power system driven by solar energy with flat-plate solar collectors and R245fa as the working fluid. A thermal storage system is integrated into the system to store the collected solar energy and to supply heat when solar radiation is insufficient. By establishing the mathematical models of the proposed system we are able to conduct the numerical simulation of the system working in three typical operation modes around a whole year, namely the Combined Heating Power (CHP) mode in winter, the Combined Cooling Power (CCP) mode in summer, and the power production mode in spring or autumn. Results indicate that the system is able to operate continuously over a day, offering uninterrupted heating, cooling and power to building applications.
机译:近年来,BCHP系统作为一种分布式能源,在提高能源效率和满足多种能源需求方面具有巨大潜力。与由化石燃料驱动的传统CCHP系统相比,现场可再生能源系统在减少碳排放方面具有更多优势。本文提出了一种以平板太阳能集热器和R245fa作为工作流体的,由太阳能驱动的新型建筑制冷供热系统。蓄热系统集成到系统中,以存储收集的太阳能并在太阳辐射不足时提供热量。通过建立所提议系统的数学模型,我们可以对系统在一年中以三种典型运行模式运行的系统进行数值模拟,即冬季的联合供热功率(CHP)模式,联合供冷功率(CCP)夏季为发电模式,春季或秋季为发电模式。结果表明,该系统能够在一天之内连续运行,为建筑应用提供不间断的加热,冷却和供电。

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