AN EVALUATION OF WAVE ENERGY GENERATION AND COST OF ENERGY IN THE BLACK SEA

İlkay Özer Erselcan
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Abstract

The performance of several point absorber-type wave energy converters is studied by evaluating the annual energy production and the cost of energy in two locations off the Turkish coasts of the Black Sea. The added mass, hydrodynamic damping, and wave forces exerted on the floats are calculated by a 3D Boundary Element Method based on potential flow theory. The responses of the floats are evaluated in the time domain by employing a family of Runge-Kutta Methods with different orders of accuracy and the annual energy generated is calculated by taking the annual occurrence of sea states into account. The cost of energy generated by each wave energy converter is evaluated by calculating the Levelized Cost of Energy. The results show that the WECs with Berkeley Wedge-Shaped floats generate the maximum amount of energy in Sinop and Hopa. The most economical wave energy converters are those with a cone float and with a Berkeley Wedge-Shaped float in Sinop and Hopa, respectively.
黑海波浪能发电和能源成本评估
通过评估土耳其黑海沿岸两个地点的年发电量和能源成本,研究了几种点吸收型波浪能转换器的性能。采用基于势流理论的三维边界要素法计算了浮子上的附加质量、水动力阻尼和波浪力。采用一系列不同精度等级的 Runge-Kutta 方法对浮筒的时域响应进行了评估,并根据每年出现的海况计算了每年产生的能量。通过计算平准化能源成本,评估了每个波浪能转换器产生的能源成本。结果表明,采用伯克利楔形浮筒的波浪能转换器在西诺普和霍帕产生的能量最大。在西诺普和霍帕,最经济的波浪能转换器分别是锥形浮筒和伯克利楔形浮筒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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