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Identifying the Conditions of Maximum Electricity Demand Coverage in a Direct Mode, by Wind and Photovoltaic sources

机译:用风和光伏来源识别直接模式的最大电力需求覆盖条件

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To reach the objectives of energy security and updated NDC targets, 100% RES scenario is considered for the R. Moldova. The specific goal of this study is to identify the conditions under which a maximum coverage of the annual electricity demand can be obtained directly from WF+PV sources. Two approaches are used to reach the goal: WF and PV cover energy demand in a direct mode without considering the balancing power–Technical Weight, and second, WF and PV cover the demand in a direct mode together with a source of balancing power- Gas turbine (GT)- Economic Weight. The results obtained: When the capacities of WF and PV are determined in a way to produce electricity equal to annual power demand, Technical Weight is equal to a maximum of 71-72%. If WF and PV electricity produced is higher than demand by 50%, WF+PV tandem may cover the energy demand in a direct mode at maximum level of 80.5%. Five variants of WF, PV and GT economic parameters variation were considered when these sources are operating together. The calculations done and analysis performed showed that: The minimum price of electricity produced by WF+PV+GT in Vl (basic variant, current data) takes place at a PV integration level of lS% (Zopt). At WF specific investment of $$750/kW$ (V2), compared to $$1445/kW$ in Vl, Zopt is equal to zero. That is, at such WF specific investment, PV implementation is not feasible. Price for electricity is lower than in Vl by 25.4%. Even at a specific investment of about $$1000/kW$ for WF, the minimum energy price is obtained in the absence of PV. Decreasing PV specific investment by up to 50% (V3) compared to the level established in Vl has little influence on the maximum Technical Weight. The electricity price is lower than in Vl by circa S%. A 25% decline in TG specific investments (V4), or a 17% drop in the price for natural gas (V5) compared to Vl, have no material effect on the maximum Technical Weight.
机译:为了达到能源安全和更新的NDC目标的目标,为R.摩尔多瓦考虑了100%的Res情景。本研究的具体目标是确定可直接从WF + PV源获得年度电力需求的最大覆盖率的条件。两种方法用于达到目标:Wf和PV覆盖能源需求在直接模式下,不考虑平衡的动力技术重量,而第二,WF和PV覆盖直接模式的需求以及平衡动力的源头涡轮机(GT) - 经济体重。得到的结果:当WF和PV的容量以等于年电量的方式确定时,技术重量等于最高71-72%。如果产生的WF和PV电量高于50%的需求,则WF + PV串联可能以直接模式覆盖能源需求,最高水平为80.5%。当这些来源一起运行时,考虑了WF,PV和GT经济参数变化的五种变体。完成的计算和分析表明:VL(基本变体,当前数据)中的WF + PV + GT产生的电力最低价格在LS%(Zopt)的PV积分水平下进行。在WF特定投资$ 750 / kW $(v2),与$ $ 1445 / kW $ in vl相比,zopt等于零。也就是说,在此类WF特定投资中,光伏实施是不可行的。电力价格低于VL 25.4%。即使在WF的约1000美元/ kW $的特定投资中,也在没有PV的情况下获得最低能源价格。与VL中建立的水平相比,将PV特异性投资降低至50%(V3)对最大技术重量影响不大。电价低于大约在VL中的大约。与VL相比,TG的特定投资(V4)下降25%,或者在天然气(V5)的价格下降17%,对最大技术重量没有任何材料影响。

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