标题: 辐射热能与波浪运动对波浪发电机组性能之影响研究
Effect of thermal radiation and ocean waves on the performance of the wave power generator
作者: 刘耀先
Liu Yao-Hsien
国立交通大学机械工程学系(所)
关键字: 波浪发电;热传;振动热对流;热辐射;wave power generation;heat transfer;oscillation;convection;thermal radiation
公开日期: 2013
摘要: 波浪发电为极具潜力之海洋能利用方式。以离岸波浪发电机而言,其布放位置为
开放的海洋,随着季节变化其所接收之辐射热能将有巨大变化,因此对机组之温度产 生影响;另外,由于海洋波浪具不同之运动模式,也将影响机组内部之热对流现象,
进而影响散热结果与机组性能。根据目前初步计算显示,在冬季与夏季时波浪发电机 组之表面温度差异可达 45 ˚C 以上,而表面热点之温度将更高达 75 ˚C 以上。此种现象
将影响内部热对流现象,并使热能较不易从表面散失。而随着未来波浪发电机组之功 率逐渐上升,在此密闭腔体内之高功率元件将造成更严重的散热问题。
本计画将使用一实验模型模拟波浪发电机组内部腔体,利用改变腔体外围之温度 模拟太阳辐射热能之影响;另外将设置一振荡平台以模拟波浪运动对热对流之影响。
实验参数将参考台湾周围之太阳辐射热能与波浪条件,并以与工研院合作之波浪发电 机组为设计实验腔体之依据,使得实验数据能应用于台湾未来开发相关波浪发电系统 之参考。
Wave power generation has great potential in the ocean power technologies. For the offshore wave
power generator, it is usually distributed on the ocean. The thermal radiation varies in different
seasons, and the temperature of the system is also affected. Besides, the heat convection is
influenced by the different oscillation modes of the ocean waves. The above factors affect the heat
transfer and thermal efficiency of the wave power generators. Based on the preliminary calculation,
the difference of temperature on the surface between summer and winter could reach 45˚C, and the
temperature in the hot summer time could exceed 75˚C. These phenomena will influence heat
convection inside the system and hinder the heat transfer through surrounding walls. With the
increasing power of wave power generators in the future, these high power components will cause
severe heat transfer problems inside the system.
This proposal uses a test section simulating the chamber inside wave power generation system. The
effect of thermal radiation can be studied by controlling the surrounding temperature of the test
chamber. Also, this test chamber will be mounted on an oscillation system simulating the ocean wave
motion. The experimental parameters will be selected based on the thermal radiation and ocean wave
conditions in Taiwan. The configuration of the test chamber is based on the wave power generation
system collaborated with the Industrial Technology Research Institute of Taiwan. The results
obtained in this research could be used to help the development of the wave power generation
systems in Taiwan.
官方说明文件#: NSC102-ET-E009-003-ET
URI: http://hdl.handle.net/11536/89863
https://www.grb.gov.tw/search/planDetail?id=2866552&docId=408048
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