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Nexus between distributed generation and urban water infrastructure

机译:地区水基础设施之间的Nexus

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With the increasing penetration of distributed generation (DG) in distribution systems and the concern of energy efficiency, the nexus between electrical and water systems is becoming more apparent and strengthened via combined heat and power (CHP). This paper investigates the nexus between DG penetration and urban water infrastructure. The AC optimal power flow (ACOPF) based optimization model is used to assess DG capacity and determinate DG location. The IEEE 123-bus distribution test system is selected as the test bed and the corresponding water distribution network is developed based on the system cost minimization to constrain the thermal output utilized by water and to check node pressure head. The results indicate which bus in the system is suitable to place a DER and the capacity that can be accommodated by the system. Finally, the nodal pressures of water system are checked to see if the existing water distribution system could support the large penetration of DG.
机译:随着分布式发电(DG)在分配系统中的渗透性增加以及能效的关注,电气和水系统之间的Nexus越来越明显,通过组合的热量和功率(CHP)而加强。本文研究了DG渗透与城市水基础设施之间的Nexus。基于AC最佳功率流(ACOPF)的优化模型用于评估DG容量并确定DG位置。选择IEEE 123-母线分配测试系统作为试验台,并且基于系统成本最小化开发了相应的水分配网络,以限制水利用的热输出并检查节点压力头。结果表明系统中的哪个总线适合放置系统可以容纳的DER和容量。最后,检查了水系统的节点压力,看看现有的水分配系统是否可以支持DG的大渗透。

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