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On thermodynamics in the primary power conversion of oscillating water column wave energy converters

机译:振荡水柱波能量转换器一次功率转换中的热力学

摘要

The paper presents an investigation to the thermodynamics of the air flow in the air chamber for the oscillating water column wave energy converters, in which the oscillating water surface in the water column pressurizes or de-pressurises the air in the chamber. To study the thermodynamics and the compressibility of the air in the chamber, a method is developed in this research: the power take-off is replaced with an accepted semi-empirical relationship between the air flow rate and the oscillating water column chamber pressure, and the thermodynamic process is simplified as an isentropic process. This facilitates the use of a direct expression for the work done on the power take-off by the flowing air and the generation of a single differential equation that defines the thermodynamic process occurring inside the air chamber. Solving the differential equation, the chamber pressure can be obtained if the interior water surface motion is known or the chamber volume (thus the interior water surface motion) if the chamber pressure is known. As a result, the effects of the air compressibility can be studied. Examples given in the paper have shown the compressibility, and its effects on the power losses for large oscillating water column devices.
机译:本文对振荡水柱波能量转换器的空气腔中空气流的热力学进行了研究,其中水柱中的振荡水表面对腔室内的空气进行加压或减压。为了研究腔室中空气的热力学和可压缩性,本研究开发了一种方法:将取力器替换为空气流速和振荡水柱腔室压力之间公认的半经验关系,并且热力学过程简化为等熵过程。这有利于将直接表达式用于通过流动的空气进行的动力输出所完成的工作,并有助于生成单个微分方程,该微分方程定义了发生在气室内的热力学过程。求解微分方程,如果已知内部水表面运动,则可以得到腔室压力;如果已知腔室压力,则可以得到腔室容积(因此是内部水表面运动)。结果,可以研究空气可压缩性的影响。本文给出的示例表明了可压缩性及其对大型振荡水柱设备功率损耗的影响。

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