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Analyzing the Performance of Wave-Energy Generator Systems (SSG) for the Southern Coasts of Iran, in the Persian Gulf and Oman Sea

机译:在波斯湾和阿曼海中分析伊朗南部海岸的波浪能发生器系统(SSG)的性能

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摘要

The Sea-wave Slot-cone Generator (SSG) wave-energy device is a type of electric energy converting structure that converts energy from sea waves, and which is designed and installed based on wave-overtopping in areas. Most of the previous studies have evaluated SSG systems based on hypothetical waves, considering the system geometry variations. However, it is important to consider the real wave conditions. This paper presents the results of a numerical study to investigate the performances of an SSG system in the context of the Persian Gulf and Oman Sea, where there is a strong need for renewable energies. The computational fluid dynamic (CFD) code Flow-3D was applied. First of all, available experimental data were applied to calibrate and evaluate the accuracy of the numerical model. Then, the real wave conditions on the coasts of the Persian Gulf and Oman Sea were imposed on the JONSWAP spectrum for the numerical modeling. Results of the study demonstrated that the hydraulic efficiency of the SSG system in the Persian Gulf and Oman Sea was low for wave heights lower than 0.5 m. The nominal efficiency of the system was relatively more than 60% for wave heights higher than 1 m; thus, the performance of the SSG system was suitably evaluated. Finally, the numerical results demonstrated that the most optimal conditions, with a nominal efficiency of 97%, were obtained for incident waves that had a height of 2 m and a period of 5.6 s. In this case, the hydraulic performance of the system was maximum.
机译:海波槽锥发生器(SSG)波能量的装置是转换结构的类型的电能,从海浪能量转换,并且其设计和安装基于在区域波漫顶。大多数以前的研究已经评估基于假设的波SSG系统,考虑到系统的几何形状的变化。但是,要考虑实际波条件是很重要的。本文提出了一种数值研究结果,调查对SSG系统的性能在波斯湾和阿曼海,那里是可再生能源的强烈需求的背景下。计算流体动力学(CFD)码流的3D应用。首先,现有的实验数据分别适用于校准和评估数值模型的准确性。然后,在波斯湾和阿曼海的海岸真实波条件强加给了数值模拟的JONSWAP谱。该研究的结果表明,在波斯湾和阿曼海的SSG系统的液压效率较低波高小于0.5米降低。该系统的标称效率相对超过了波高超过1米高60%;因此,SSG系统的性能进行了适当地进行评价。最后,将计算结果表明,最优化的条件下,用97%的额定效率,进行了对于入射波的是具有2μm的高度和周期的5.6 S取得。在这种情况下,系统的水力性能是最大的。

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