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液力緩速器葉片變角度的緩速性能分
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Analysis for Hydrodynamic Retarder with Different Vanes
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    摘要:

    采用雷諾時均N-S方程,、標(biāo)準(zhǔn)k-ε模型和SIMPLEC算法對液力緩速器內(nèi)部流場進(jìn)行了數(shù)值模擬,,分析傾角為50°,、55°,、60°時液體流動的速度分布、壓力分布和湍動能分布規(guī)律,。以Rothalpy值的變化作為損失分析指標(biāo),,定量比較不同傾角對制動力矩的影響,,得出葉片傾角為55°時緩速能力最大,,其原因是沿程摩擦阻力損失與沖擊損失的疊加使得液力損失最大,。

    Abstract:

    Hydrodynamic retarder under different vane degree condition was simulated. By using the time averaged N-S equation and the standard k-εturbulence and the SIMPLEC algorithm simultaneously, the internal characteristics of flow field were simulated. The calculated velocity, pressure and turbulent kinetic energy distribution of the turbulent flow in hydrodynamic retarder were given. The method of loss analysis was proposed which changed value of Rothalpy was used to compare the retarder ability. The result shows that the model under 55° vane degree has the biggest impact because the loss of friction and impact made hydrodynamic loss most.

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嚴(yán)軍,何仁.液力緩速器葉片變角度的緩速性能分[J].農(nóng)業(yè)機(jī)械學(xué)報,2009,40(4):206-209. Analysis for Hydrodynamic Retarder with Different Vanes[J]. Transactions of the Chinese Society for Agricultural Machinery,2009,40(4):206-209.

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