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A BASIC STUDY ON INFLUENCE OF AIRCHAMBER VOLUME ON OWC MODELS TO POWER CONVERSION PERFORMANCE

机译:飞机舱容积对OWC模型对功率转换性能影响的基础研究

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Oscillating water column (OWC) types of wave energy converters have still several issues to be studied because system including wave-air-turbine interaction is complex. Besides, scale effects between small scale models and full scale models have not been definite. Although the effect in initial design of OWC devices might been able to be ignored, it is important to understand its characteristics exactly. The present study carried out forced oscillation tests in a water tank corresponding to the radiation problem. Three models whose scale are 1/1, 1/2 and 1/4 were used. In the forced oscillation test, we measured mean water elevation in an airchamber to predict the air flow rate and air pressure inside of the airchamber. From the mean water elevation and the air pressure, the primary power conversion was calculated. As a result, the pressure and the elevation were affected by not only the scale reduction but also the difference of airchamber volume. Variation of the volume of an airchamber affected on hydrodynamic performance sensitively.
机译:由于包括波浪-空气-涡轮相互作用的系统很复杂,因此振荡水柱(OWC)类型的波浪能转换器仍需研究几个问题。此外,小比例模型和全比例模型之间的比例效应还不确定。尽管可以忽略OWC设备初始设计的影响,但准确了解其特性非常重要。本研究在水箱中进行了与辐射问题相对应的强制振荡测试。使用了比例为1 / 1、1 / 2和1/4的三个模型。在强制振荡测试中,我们测量了气室中的平均水位,以预测气室中的空气流速和气压。根据平均水位和气压,计算一次功率转换。结果,压力和高度不仅受结垢减小的影响,而且还受到气室容积的差异的影响。空气室容积的变化会敏感地影响水动力性能。

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