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MODELLING AND SIMULATION OF A RESIDENTIAL CCHP SYSTEM BASED ON PEM FUEL CELL AND ADSORPTION MACHINE

机译:基于PEM燃料电池和吸附机的住宅CCHP系统建模与仿真

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Fuel Cell and Adsorption Machine based Trigeneration Systems are very attractive for residential applications because they allow production of electricity, heat and cold in a decentralized, quiet, efficient and environmentally friendly way. Furthermore they are suitable to be supplied by methane provided by natural gas city-network. Energy and economic performance of this kind of CCHP systems depend on the optimization of several design parameters related with the customer's energy demand, the system lay-out, the sizing of components, the control and management strategy. Through a general scheme in which all possible components are included (MicroFC-CHP system, gas boiler, and adsorption heat pump), a mathematical model and a computer simulation tool have been developed in order to calculate the energy balance of the system for a typical energy demand profile for a residential building. Different cases have been considered varying the power-size of each component and comparing the total efficiency with a traditional system based on boiler and electric air conditioner.
机译:基于燃料电池和吸附机的三合体系统对于住宅应用非常有吸引力,因为它们允许以分散,安静,高效和环保的方式生产电力,热和冷。此外,它们适合由天然气城市网络提供的甲烷供应。这种CCHP系统的能源和经济性能取决于多个与客户能源需求相关的设计参数的优化,系统铺设,组件的尺寸,控制和管理策略。通过包括所有可能组件的一般方案(Microfc-CHP系统,燃气锅炉和吸附热泵),已经开发了数学模型和计算机仿真工具,以便为典型的系统计算系统的能量平衡住宅建筑的能量需求剖面。不同的情况被认为是改变每个组件的功率 - 大小,并比较基于锅炉和电动空调的传统系统的总效率。

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