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Study on Resistance Characteristics of Trilobal Throttling Element in Narrow Annular Channel

机译:窄环通道中三轴节流元件的电阻特性研究

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An experimental study was performed to investigate the resistance characteristics of the trilobal throttling element in narrow annular channel, while corresponding flow fields analyzed using Fluent software with RNG k-ε turbulence model based on the structural grid for the trilobal throttling element with different placket angle. A relationship between the packet angle θ and the local resistance coefficient ξ is obtained. Results show that the local resistance coefficient obtained by numerical simulation of the trilobal throttling element in narrow annular channel have a good agreement with the experimental data, and their relative error is less than 8%. This also fully proves that the RNG k-ε turbulence model is suitable for the simulation of the trilobal throttling element in the narrow annular channel. The local resistance coefficient of the trilobal throttling element in narrow annular channel increases with rising packet angle θ, and the relationship is similar to the power function change.
机译:进行实验研究以研究窄环形通道中的三嘴巴节流元件的电阻特性,而基于具有不同Placket角度的三嘴巴节流元件的结构网格,使用具有RNG K-ε湍流模型的流畅软件分析的相应流场。获得分组角θ与局部电阻系数ξ之间的关系。结果表明,通过窄环形通道中三袜子节流元件的数值模拟获得的局部电阻系数与实验数据具有良好的一致性,其相对误差小于8%。这也完全证明了RNG K-ε湍流模型适用于窄环形通道中的三嘴巴节流元件的模拟。窄环形通道中的三轴管节流元件的局部电阻系数随着划分的划分角度θ而增加,并且该关系类似于功率函数变化。

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