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Grid-interactive micro-hydrokinetic with pumped-hydro storage: The case study of three South African demand sectors

机译:带抽水蓄能的网格互动微流体动力学:南非三个需求部门的案例研究

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This paper investigates the operation of different demand sector such as residential, commercial and industrial load profiles when supplied with a grid tied micro-hydrokinetic pumped-hydro storage (MHK-PHS) hybrid system. The aim is to explore the demand sector which is more favorable to the proposed grid-tied MHK-PHS hybrid system under the time-of-use (TOU) tariff scheme. Hence, the optimum configuration of the proposed MHK-PHS hybrid system is determined in order to investigate the effect of each demand sector on sizing and operation of the hybrid system. HOMER Pro Version 3.6.1 has been used to perform the optimization under TOU tariff scheme. The results have shown that the industrial load sector incur the lowest cost of energy at the highest capital cost as opposed to the residential and commercial load sectors. However, from economic perspective, the residential demand sector proved to be more favorable to the proposed hybrid system due to the lowest net present cost (NPV). For each load demand sector, HOMER led to oversizing constraint of the hybrid system by not recharging the storage system after use.
机译:本文研究了并网供电的微型水动力抽水蓄能(MHK-PHS)混合系统提供给住宅,商业和工业负载等不同需求部门的运行情况。目的是探索在使用时间(TOU)费率计划下,对建议的并网MHK-PHS混合系统更有利的需求部门。因此,确定所提出的MHK-PHS混合系统的最佳配置,以便研究每个需求部门对混合系统的规模和运行的影响。在TOU资费方案下,使用HOMER Pro版本3.6.1进行优化。结果表明,与住宅和商业负荷部门相比,工业负荷部门的能源成本最低,资本成本最高。但是,从经济角度来看,由于最低净现值(NPV),居民需求部门被证明对拟议的混合动力系统更为有利。对于每个负载需求部门,HOMER通过在使用后不给存储系统充电来导致混合系统的过大约束。

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