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Thermodynamic analysis of a combined cooling, heating and power system based on solar thermal biomass gasification

机译:基于太阳热能气化的冷热电联产系统的热力学分析

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摘要

The objectives of this paper are to propose a novel combined cooling heating and power (CCHP) system based on solar thermal biomass gasification, and to present thermodynamic analyses to effectively improve the utilization of distributed renewable energy sources. By adopting the Engineering Equation Solver software, the thermodynamic models of components were constructed, and the simulation procedures, mainly including the heat transfer of the solar cavity receiver and the biomass gasification, were presented. Based on a 100 kW electricity capacity, the design parameters of the CCHP system were obtained to simulate and discuss the thermodynamic performances and the energy and exergy flow diagrams in the cooling and heating operation modes. The influences of the key variable parameters, including the electric load ratio and the solar direct normal irradiance in the off-design work conditions on the thermodynamic performances, were analyzed and discussed. The simulation results indicate that the CCHP system achieves average energy and exergy efficiencies of 56% and 28%, respectively, and the energy ratio of solar to biomass is approximately 0.19 in the full load operating mode. Compared to the conventional biomass gasification CCHP system without solar energy, the increasing ratio of heating value of product gas based on the solar thermal biomass gasification reaches 55.09%, and the biomass saving ratios are approximately 9.22% and 2.02% in the cooling and heating modes respectively, which indicate that the proposed hybrid system is an effective and feasible method to improve the utilization efficiency of biomass energy.
机译:本文的目的是提出一种基于太阳热能气化的新型联合冷却供热(CCHP)系统,并提出热力学分析以有效提高分布式可再生能源的利用率。利用工程方程求解器软件,建立了构件的热力学模型,并给出了模拟程序,主要包括太阳腔接收器的传热和生物质气化。基于100 kW的电容量,获得了CCHP系统的设计参数,以模拟和讨论制冷和制热运行模式下的热力学性能以及能量和火用流程图。分析和讨论了非变量工作条件下的关键变量参数,包括电负载比和太阳直射法线辐照度对热力学性能的影响。仿真结果表明,CCHP系统的平均能源效率和火用效率分别为56%和28%,在满负荷运行模式下,太阳能与生物质的能量比约为0.19。与不带太阳能的常规生物质气化CCHP系统相比,基于太阳能热生物质气化的产品气热值增加率达到55.09%,在制冷和供热模式下生物质节省率分别约为9.22%和2.02%分别表明,提出的混合系统是提高生物质能源利用效率的一种有效可行的方法。

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