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Analytical and numerical simulations of an oscillating water column with humidity in the air chamber

机译:气室中带有湿度的振荡水柱的分析和数值模拟

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This paper examines an Oscillating Water Column (OWC) model, where the air chamber is represented as a dry air-water vapour mixture, based on the thermodynamics of a real gas. The novelty of this study consists of the inclusion of humidity effects on the general performance of the OWC and its coupling with the radiation-diffraction problem of the device. Using FLUENT (R), a numerical 2D flume is built to simulate wave-induced flow in the OWC. Air phase properties are adjusted to represent the presence of moisture. Turbine linear performance, according to a standard Wells turbine power take-off system, is simulated by means of an Actuator Disk Model (ADM). Numerical outputs are compared with analytical solutions of the classic OWC radiation-diffraction problem, in which the theoretical real gas model is embedded. Results show that the use of real gas thermodynamic theory reduces considerably the predicted power output of OWC devices, with theoretical losses reaching 50% in certain cases. The effect of humidity mitigates resonant conditions. Techno-economic considerations justify the inclusion of real gas theory to achieve competitive devices.(C) 2019 Elsevier Ltd. All rights reserved.
机译:本文研究了振荡水塔(OWC)模型,其中基于真实气体的热力学,将气室表示为干燥的空气-水蒸气混合物。这项研究的新颖性包括湿度对OWC总体性能的影响及其与设备的辐射衍射问题的耦合。使用FLUENT(R),可以建立一个二维二维水槽来模拟OWC中的波浪感应流。调整气相特性以表示水分的存在。根据标准的Wells涡轮机取力系统,涡轮机的线性性能通过执行器盘模型(ADM)进行仿真。将数值输出与经典OWC辐射衍射问题的解析解进行比较,其中嵌入了理论上的实际气体模型。结果表明,使用真实气体热力学理论会大大降低OWC设备的预测功率输出,在某些情况下理论损失会达到50%。湿度的影响减轻了共振条件。技术经济方面的考虑因素证明了采用真实气体理论来实现竞争性设备的合理性。(C)2019 Elsevier Ltd.保留所有权利。

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