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ON THE OPTIMUM SIZING OF A REAL WEC FROM ATECHNO-ECONOMIC PERSPECTIVE

机译:论阿科诺经济视角下真正的WEC的最佳规模

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When designing "multi-MW arrays" of Wave Energy Converters (WECs), having a low number of converters with high individual power ratings can be beneficial as the Operation and Maintenance (O&M) costs may be reduced. However, having converters of small dimensions or small power ratings could also be beneficial as suggested by previous works due to a reduction in material costs as compared to power production, the use of small, inexpensive vessels. In this work, a case study investigating the optimum size of WEC for a 20MW array is performed. Analysis is carried out based on the CorPower Ocean technology. In this case study, firstly a Levelized Cost of Energy (LCOE) model is created. This model incorporates the latest Capital Expenditure (CAPEX) estimates for CorPower Ocean's 250 kW prototype. Using this techno-economic model, several sizes/ratings of WEC are tested for use in a 20 MW array. Operational Expenditure (OPEX) is calculated using two different calculation approaches in order to check its influence on final indicators. OPEX is firstly calculated as a percentage of CAPEX, previous works, and secondly using a failure-repair model, taking into account individual failures of WECs in the array. Size/rating analysis is carried out for several European locations in order to establish any dependence between site location and optimal WEC size/rating.
机译:当设计波能转换器(WECS)的“多MW阵列”时,具有具有高单位功率额定值的低数量的转换器可以是有益的,因为可以减少操作和维护(O&M)成本。然而,由于与电力生产相比,由于材料成本降低,使用小型廉价血管的材料成本降低,具有小尺寸或小型电力额定值的转换器也可能是有益的。在这项工作中,进行了调查用于20MW阵列的WEC最佳尺寸的案例研究。基于Corpower海洋技术进行分析。在这种情况下,首先创建能量(LCoE)模型的尺寸化成本。该型号包含了Corpower Ocean的250 kW原型的最新资本支出(CAPEX)估计。使用这种技术经济模型,测试了几种尺寸/额定的WEC阵列以20 MW阵列。使用两种不同的计算方法计算运营支出(OPEX),以检查其对最终指标的影响。 OPEX首先计算为CAPEX,以前的工作百分比,其次使用故障修复模型,同时考虑到阵列中WECS的各个故障。为几个欧洲地区进行大小/评级分析,以便在现场位置和最佳WEC尺寸/评级之间建立任何依赖性。

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