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首页> 外文期刊>International Journal of Rotating Machinery >Effects of Compressibility on the Performance of a Wave-Energy Conversion Device with an Impulse Turbine Using a Numerical Simulation Technique
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Effects of Compressibility on the Performance of a Wave-Energy Conversion Device with an Impulse Turbine Using a Numerical Simulation Technique

机译:数值模拟技术对可压缩性对脉冲涡轮波能转换装置性能的影响

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This article presents work carried out to predict the behavior of a 0.6 m impulse turbine with fixed guide vanes as compared with that of a 0.6 hub-to-tip ratio turbine under real sea conditions. In order to predict the true performance of the actual oscillating water column (OWC), the numerical technique was fine-tuned by incorporating the compressibility effect. Water surface elevation versus time history was used as the input data for this purpose. The effect of compressibility inside the air chamber and the turbine's performance under unsteady and irregular flow conditions were analyzed numerically. Considering the quasi-steady assumptions, the unidirectional steady-flow experimental data was used to simulate the turbines characteristics under irregular unsteady flow conditions. The results showed that the performance of this type of turbine is quite stable and that the efficiency of the air chamber and the mean conversion efficiency are reduced by around 8% and 5%, respectively, as a result of the compressibility inside the air chamber. The mean efficiencies of the OWC device and the impulse turbine were predicted for 1 month, based on the Irish wave climate, and it was found that the total time period of wave data used is one of the important factors in the simulation technique.
机译:本文介绍了为预测在实际海况下具有固定导流叶片的0.6 m脉冲涡轮与0.6轮毂与叶尖比涡轮的性能而进行的工作。为了预测实际振荡水柱(OWC)的真实性能,通过结合可压缩性效应对数值技术进行了微调。为此,将水面高度与时间的关系用作输入数据。数值分析了在不稳定和不规则流动条件下气室内的可压缩性和涡轮机性能的影响。考虑到准稳态假设,单向稳态试验数据被用来模拟非规则非稳态流动条件下的涡轮机特性。结果表明,这种类型的涡轮机性能相当稳定,并且由于气室内部的可压缩性,气室效率和平均转换效率分别降低了8%和5%左右。基于爱尔兰海浪气候,预测了OWC装置和脉冲涡轮的平均效率为1个月,发现波浪数据的总使用时间是模拟技术的重要因素之一。

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