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Prediction of Losses in Small Scale Axial Air Turbine Based on CFD Modelling

机译:基于CFD造型的小规模轴向汽轮机损失预测

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Efficient small scale axial air turbines play a major role in determining the overall conversion efficiency in certain energy cycles using renewable energy sources. Loss predictions are vital for the development and optimization of such small scale turbines. Since all published loss prediction schemes were developed for large scale turbines, therefore there is a need for an effective approach to predict such losses for the small scale axial turbines. This work aims to develop a new approach to predict the losses in a small scale axial air turbine using both conventional loss models and computational fluid dynamics (CFD) simulations. Results showed that the Kacker & Okapuu model gave the closest values to the CFD simulation results thus it can be used to produce the initial turbine design that can be further optimised through CFD simulations.
机译:高效的小尺度轴向风力涡轮机在使用可再生能源确定某些能量循环中的整体转换效率方面发挥着重要作用。 损耗预测对于这种小型涡轮机的开发和优化至关重要。 由于所有公开的损耗预测方案都是为大型涡轮机开发的,因此需要一种有效的方法来预测小刻度轴向涡轮机的这种损失。 这项工作旨在开发一种新方法,可以使用传统的损耗模型和计算流体动力学(CFD)模拟来预测小型轴向燃风机中的损失。 结果表明,Kacker&Onapuu模型将最接近的CFD仿真结果提供了最接近的值,因此它可以用于生产可以通过CFD仿真进一步优化的初始涡轮机设计。

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