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An integrated method for decentralized Combined Heat and Power planning

机译:分散式热电联产计划的集成方法

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An integrated long-term power system planning with a focus on combined heat and power (CHP) is proposed as a solution to the problem of inadequacy in energy resources. A directional energy network model is designed and optimized to give the least-cost answers to the planning questions. Study shows the heat waste recovery from decentralized power generations including reciprocating engines, micro turbines, Stirling engines and fuel cells results in a considerable cost reduction, efficiency improvement, emission control and reliability enhancement. The detailed numerical results as well as the suggested plans are presented and discussed. A 16.3% capacity share belongs to the decentralized generation in the sample power system. Meanwhile, the plan assigns about 80% of the new thermal capacities to CHP. Reducing the pollutant emissions by 30% is of the environmental outcomes of the proposed plan.
机译:提出了以热电联产(CHP)为重点的综合长期电力系统规划,以解决能源资源不足的问题。设计并优化了定向能源网络模型,以提供对规划问题的最低成本答案。研究表明,从分散式发电设备(包括往复式发动机,微型涡轮机,斯特林发动机和燃料电池)中回收的废热可显着降低成本,提高效率,减少排放并提高可靠性。给出并讨论了详细的数值结果以及建议的计划。 16.3%的容量份额属于样本电源系统中的分散发电。同时,该计划将大约80%的新热容量分配给CHP。将污染物排放减少30%是提议计划的环境结果。

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