基于self的动态潮汐能资源评价

M. Behera, P. Tkalich
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引用次数: 3

摘要

本研究旨在研究新加坡海峡潮汐能的理论资源,以支持寻找可再生能源以减少东南亚地区的碳足迹。采用半隐式欧拉-拉格朗日有限元(SELFE)模型,用Boussinesq近似求解三维浅水方程,模拟了新加坡海峡的潮汐水动力学。已经确定了具有高潮汐流(2.5 m/s)并适合安装潮汐能量转换器(TEC)阵列以产生可持续能源的潜在地点。此外,在计算典型TEC阵列的理论功率输出之前,还考虑了安装潮汐能转换器的各种操作因素。对TEC阵列可能的理论电力提取的近似估计显示,2011年新加坡总能源需求的能源潜力高达4.36%。因此,该研究建议对潜在地点进行详细调查,以量化新加坡海峡的总潮汐流能量潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Kinetic Tidal Energy Resources Using SELFE
An investigation is carried out to study the theoretical tidal stream energy resource in the Singapore Strait to support the search for renewable energy in the effort to reduce the carbon footprints in the Southeast Asia. The tidal hydrodynamics in the Singapore Strait has been simulated using a Semi-implicit Eulerian-Lagrangian Finite-Element (SELFE) model solving the 3D shallow water equations with Boussinesq approximations. Potential sites, with high tidal current (2.5 m/s) and suitable for Tidal Energy Converter (TEC) array installation to generate sustainable energy, have been identified. Further, various operational factors for installation of Tidal Energy Converters are considered before computing the theoretical power output for a typical TEC array. An approximate estimation of the possible theoretical power extraction from a TEC array shows an energy potential of up to 4.36% of the total energy demand of Singapore in 2011. Thus, the study suggests a detailed investigation of potential sites to quantify the total tidal stream energy potential in the Singapore Strait.
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