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Design optimization of an internal combustion engine powered CHP system for residential scale application

机译:住宅规模应用的内燃机驱动CHP系统的设计优化

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We present an analytical dynamic mathematical model and a design optimization of a residential scale combined heat and power system. The mathematical model features a detailed description of the internal combustion engine based on a mean value approach, and simplified sub-models for the throttle valve, the intake and exhaust manifolds, and the external circuit. The validated zero-dimensional dynamic mathematical model of the system is implemented in gPROMS~®, and used for simulation and optimization studies. The objective of the design optimization is to estimate the optimum displacement volume of the internal combustion engine that minimizes the operational costs while satisfying the electrical and heating demand of a residential 10-house district. The simulation results show that the mathematical model can accurately predict the behavior of the actual system while the design optimization will later be the basis for advanced control studies.
机译:我们提出了一个分析型动态数学模型和住宅规模的热电联产系统的设计优化。该数学模型具有基于平均值方法的内燃机的详细描述,以及节气门,进气和排气歧管以及外部回路的简化子模型。已验证的系统零维动态数学模型在gPROMS〜®中实现,并用于仿真和优化研究。设计优化的目的是估算内燃机的最佳排量,该排量在满足居民10户住宅区的电气和供热需求的同时,将运营成本降至最低。仿真结果表明,该数学模型可以准确地预测实际系统的行为,而设计优化随后将成为高级控制研究的基础。

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