首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >APPLICATION OF A FAST LOOSELY COUPLED FLUID/SOLID HEAT TRANSFER METHOD TO THE TRANSIENT ANALYSIS OF LOW-PRESSURE-TURBINE DISK CAVITIES
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APPLICATION OF A FAST LOOSELY COUPLED FLUID/SOLID HEAT TRANSFER METHOD TO THE TRANSIENT ANALYSIS OF LOW-PRESSURE-TURBINE DISK CAVITIES

机译:快速耦合流体传热法在低压 - 汽轮机盘腔瞬态分析中的应用

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A transient aero-thermal analysis of the disk cavities of an aero-engine LPT (Low Pressure Turbine) is presented. The full simulation includes a 2D thermal model of the solid parts combined with an axisymmetric flow model of six separate cavities interconnected through inlet and outlet boundaries. Computing elapsed time is significantly reduced by using a cluster of GPUs (Graphics Processing Units) making this approach compatible with turbine design time-frames. The problem of flow reversal that takes place in some of the cavity boundaries along the transient flight cycle is addressed in detail. The fully coupled numerical solution is validated against engine data and compared as well against an uncoupled simulation. It is shown that the coupled solution outperforms the uncoupled one in terms of accuracy, since it removes some hypotheses inherent to the uncoupled approach. It is believed that this is the first time that GPUs have been used to solve a fully coupled fluid/solid thermal problem of industrial interest for the gas turbine community.
机译:呈现了空气发动机LPT(低压涡轮机)的磁盘空腔的瞬态空气热分析。全仿真包括固体部件的2D热模型,与通过入口和出口边界互连的六个单独腔的轴对称流量模型组合。通过使用使得这种方法与涡轮机设计时间框架兼容,通过使用GPU(图形处理单元)来显着减少计算经过的时间。详细介绍了沿瞬态飞行周期的一些腔边界发生的流动反转问题。完全耦合的数控解决方案是针对发动机数据的验证,并与未耦合模拟相比验证。结果表明,耦合解决方案在准确性方面优于未耦合的一个,因为它去除了对未耦合的方法固有的一些假设。据信,这是GPU首次用于解决燃气轮机界的工业利益的完全耦合的流体/固体热问题。

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