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Preliminary design and performance analysis of a radial inflow turbine for ocean thermal energy conversion

机译:海洋热能转化用径流式水轮机的初步设计和性能分析

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Ocean thermal energy conversion is an organic Rankine cycle for generating power using the temperature difference between surface seawater and deep seawater. The potential of ocean thermal energy is significant, and it is an environmentally friendly power system. However, its thermal efficiency is very low due to the low temperature difference between surface seawater and deep seawater. Hence, it is essential to develop a high efficiency turbine in order to improve the thermal efficiency of ocean thermal energy conversion. The precise preliminary design for the high efficiency radial inflow turbine requires selection of the appropriate flow and loading coefficients for the target efficiency. A new approach for the appropriate choice of flow and loading coefficients is proposed in this study. The meanline analysis and three-dimensional viscous simulations for the designed turbine are conducted in order to verify the proposed approach in design and off-design conditions. The results demonstrate that the optimum radial inflow turbine for the design conditions can be designed through applying the proposed model. (C) 2017 Elsevier Ltd. All rights reserved.
机译:海洋热能转换是利用地表海水和深层海水之间的温差发电的有机朗肯循环。海洋热能的潜力是巨大的,它是一种环保的电力系统。然而,由于地表海水和深层海水之间的温差低,其热效率非常低。因此,必须开发一种高效涡轮机以提高海洋热能转化的热效率。高效的径向流入涡轮机的精确初步设计需要选择适当的流量和负载系数,以实现目标效率。在这项研究中提出了一种新的方法,用于适当选择流量和载荷系数。进行了设计涡轮机的均值分析和三维粘性模拟,以验证设计和非设计条件下的拟议方法。结果表明,可以通过应用所提出的模型来设计针对设计条件的最佳径向流入涡轮机。 (C)2017 Elsevier Ltd.保留所有权利。

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