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Multi-criteria optimization for a biomass gasification-integrated combined cooling, heating, and power system based on life-cycle assessment

机译:基于生命周期评估的生物质气化集成式制冷,供暖和电力系统的多标准优化

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A multi-criteria optimization for a biomass gasification-integrated combined cooling, heating, and power (CCHP) system based on life-cycle assessment is carried out. The criteria comprise primary energy saving ratio (PESR), total cost saving ratio (TCSR), and CO2 emission reduction ratio (CERR). The overall-performance criterion, Cl, is obtained with Technique for Order of Preference by Similarity to Ideal Solutions (TOPSIS). Results show that the Cl reaches its maximum when the nominal electric output is 1572.8 kW, the biomass feedstock type is wood pellet, and the operation strategy is following the electric load (FEL). The PESR, TCSR, CERR, and Cl are 0.101, 0.271, 0.498, and 0.867, respectively. By comparing with reference systems, it is found that in FEL mode, the system is improved because of higher energy utilization efficiency and better use of economic and environmental advantages of biomass. In following the thermal load (FTL) mode, economic performance is compromised for optimal overall performance. Sensitivity analysis is carried out to find out the effect of variation of various parameters on optimization results. It is found that the variation of a single-aspect parameter could affect the system performance on all aspects. The variation of primary energy consumption per unit electricity from the grid (pec(en,g)) has the greatest effect on optimization results. The corresponding variation ranges of PESR, TCSR, and CERR owing to its variation are from -0.063/0.231/0.473 to 0.284/0.295/0.624 and from -0.029/0.101/0.314 to 0.194/0.123/0.379 in FEL and FTL modes.
机译:基于生命周期评估,对生物质气化集成的冷热电联产(CCHP)系统进行了多标准优化。标准包括一次能源节约率(PESR),总成本节约率(TCSR)和二氧化碳减排率(CERR)。总体绩效标准Cl是通过“与理想解决方案相似的偏好顺序技术”(TOPSIS)获得的。结果表明,当标称电功率为1572.8 kW,生物质给料类型为木屑颗粒时,Cl达到最大值,其运行策略遵循电负荷(FEL)。 PESR,TCSR,CERR和Cl分别为0.101、0.271、0.498和0.867。通过与参考系统进行比较,发现在FEL模式下,由于更高的能源利用效率以及对生物质的经济和环境优势的更好利用,对系统进行了改进。在遵循热负载(FTL)模式时,为了获得最佳整体性能而牺牲了经济性能。进行敏感性分析以发现各种参数变化对优化结果的影响。发现单方面参数的变化会在所有方面影响系统性能。电网每单位电能的一次能源消耗的变化(pec(en,g))对优化结果影响最大。在FEL和FTL模式下,由于其变化,PESR,TCSR和CERR的对应变化范围是-0.063 / 0.231 / 0.473至0.284 / 0.295 / 0.624和-0.029 / 0.101 / 0.314至0.194 / 0.123 / 0.379。

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