The Effect of Air Chamber Geometrical Design for Enhancing the Output Power of Oscillating Water Column Wave Energy Converter

IF 0.7 4区 工程技术 Q4 ENGINEERING, OCEAN
Mamdouh Elmallah, M. Elgohary, M. Shouman
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引用次数: 0

Abstract

Abstract This paper represents the effects of geometry and design of an oscillating water column energy converter air chamber on the airflow response. The primary goal of this research is to use different shapes of air chambers, such as rectangular, cylindrical, and conical air chambers with varying cross sections, to optimize the air velocity entering the turbine, to obtain the maximum power available in a progressive wave with a constant period and wavelength. Modeling and numericalsimulation are performed by using the commercial software ANSYS. Since this paper is concerned with the effect of air flow velocity, a vent is located at the chamber's outlet rather than a turbine. In order to obtain the exit air velocity results, the wave system air characteristics results are applied as an input air flowfor three air chamber cases. The results show that the air velocity flow increasedsignificantly from 7.14 m/s in the rectangular air chamber to 10.4 m/s in cylindrical air chamber and reached a maximum of 14.2 m/s in the conical airchamber.
气室几何设计对提高振荡水柱波能转换器输出功率的影响
摘要本文研究了振荡水柱式能量转换气室的几何形状和设计对气流响应的影响。本研究的主要目标是使用不同形状的气室,如矩形、圆柱形和锥形不同截面的气室,优化进入涡轮的空气速度,以获得恒定周期和波长的进流波的最大功率。利用商业软件ANSYS对其进行了建模和数值仿真。由于本文关注的是气流速度的影响,因此在腔室的出口处设置了通风口,而不是涡轮。为了得到出口风速结果,将波系空气特性结果作为三种气室情况下的输入气流。结果表明:空气流速从矩形气室的7.14 m/s显著增加到圆柱形气室的10.4 m/s,在锥形气室达到最大值14.2 m/s;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Marine Technology Society Journal
Marine Technology Society Journal 工程技术-工程:大洋
CiteScore
1.70
自引率
0.00%
发文量
83
审稿时长
3 months
期刊介绍: The Marine Technology Society Journal is the flagship publication of the Marine Technology Society. It publishes the highest caliber, peer-reviewed papers, six times a year, on subjects of interest to the society: marine technology, ocean science, marine policy, and education.
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