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Energy, exergy and environmental analysis of a hybrid combined cooling heating and power system utilizing biomass and solar energy

机译:利用生物质和太阳能的混合冷却供热混合动力系统的能源,火用和环境分析

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A hybrid combined cooling heating and power (CCHP) system driven by biomass and solar energy is proposed, and their complementarity to enhance the system's energy efficiency is analyzed and shown. The CCHP system is primarily composed of a biomass gasification sub-system, solar evacuated collector, internal combustion engine and dual-source powered mixed-effect absorption chiller. The product gas produced by the gasifier drives the internal combustion engine to generate power, and the waste heat after generation is utilized to produce cooling and heating with the collected heat from the solar collectors. Under the design conditions, the thermodynamic performances under variable external conditions and energy ratios are investigated and analyzed. The results indicate that the primary energy ratio and the exergy efficiency are 57.9% and 16.1%, respectively, and the carbon emission reduction ratio is about 95.7%, at the design condition. The complementarity analysis between the biomass and solar energy shows that the biomass subsystem makes a greater contribution to the total system primary energy ratio and exergy efficiency than the contributions from the solar subsystem, and the participation of solar energy is conducive to the system emission reduction. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种由生物质能和太阳能驱动的混合式冷热电联产(CCHP)系统,并分析和显示了它们的互补性,以提高系统的能源效率。 CCHP系统主要由生物质气化子系统,太阳能真空收集器,内燃机和双源动力混合效应吸收式制冷机组成。气化炉产生的产物气驱动内燃机发电,而发电后的废热则利用太阳能收集器收集的热量进行冷却和加热。在设计条件下,研究和分析了可变外部条件和能量比下的热力学性能。结果表明,在设计条件下,一次能源比和火用效率分别为57.9%和16.1%,碳排放减少比约为95.7%。生物量与太阳能之间的互补性分析表明,生物量子系统对系统总一次能源比和火用效率的贡献要大于太阳能子系统的贡献,太阳能的参与有利于系统的减排。 (C)2016 Elsevier Ltd.保留所有权利。

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