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Two-Way Coupled CFD Approach for Predicting Gear Temperature of Oil Jet Lubricated Transmissions

机译:用于预测油射流润滑变速器齿轮温度的双向耦合CFD方法

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This article focuses on the development of a two-way coupled methodology to predict gear temperature of oil jet lubricated transmissions using commercial software for computational fluid dynamics simulation. The proposed methodology applies an overset mesh technique to model the gear interlocking motion, multiphase of air-oil mixture, and heat transfer. Two gear pairs were used to develop and validate the methodology, an overdrive helical gear pair of a commercial vehicle transmission and a standard spur gear pair. Different oil jet lubrication methods were investigated using the proposed methodology, such as oil jet directed at the into-mesh position and at the out-of-mesh position. This investigation showed that out of mesh lubrication direction shows better cooling performance which is in well agreement with previous studies of literature. Gear temperature was measured on the spur gears under several operating conditions by a set of thermocouples placed near the tooth contacting surface and 180 degree apart. A good correlation of predictions and measurement results were obtained for all cases within 12°C of maximum deviation. The proposed two-way coupled CFD approach can be used to develop oil jet lubrication systems for effective gear cooling and reduced power loss.
机译:本文侧重于开发双向耦合方法,以利用商业软件来预测油射流润滑传输的齿轮温度,用于计算流体动力学模拟。所提出的方法应用推销网格技术来模拟齿轮互锁运动,空气油混合物的多相和传热。两种齿轮对用于开发和验证方法,用于商用车辆变速器的过载螺旋齿轮对和标准的正齿轮对。使用所提出的方法进行研究了不同的油喷射润滑方法,例如在网状位置和网状位置处引导的油喷射。本研究表明,网眼润滑方向出现了更好的冷却性能,这与先前的文献研究一致。通过在牙齿接触表面附近和180度附近的一组热电偶在若干操作条件下在若干操作条件下测量齿轮温度。在最大偏差12℃内的所有情况下获得了预测和测量结果的良好相关性。所提出的双向耦合的CFD方法可用于开发出用于有效齿轮冷却和降低功率损耗的油喷射润滑系统。

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