首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >COMBINED EXPERIMENTAL/NUMERICAL METHOD USING INFRARED THERMOGRAPHY AND FINITE ELEMENT ANALYSIS FOR ESTIMATION OF LOCAL HEAT TRANSFER DISTRIBUTION IN AN INTERNAL COOLING SYSTEM
【24h】

COMBINED EXPERIMENTAL/NUMERICAL METHOD USING INFRARED THERMOGRAPHY AND FINITE ELEMENT ANALYSIS FOR ESTIMATION OF LOCAL HEAT TRANSFER DISTRIBUTION IN AN INTERNAL COOLING SYSTEM

机译:红外热成像和有限元分析相结合的实验/数值方法,用于估算内部冷却系统的局部传热分布

获取原文

摘要

In the present study a method for estimating local heat transfer distributions of internal cooling systems is described. Experimental data and finite element analysis are applied for this method. The investigations considered in this paper are based on experiments performed on a two-pass cooling channel connected by a 180° bend with internal rib arrangements. The solid walls of the cooling channels are made of a metallic material. During the experiment the temperature response of the outer surface induced by heated internal flow is recorded by infrared thermography. The internal heat transfer distribution is obtained using an optimization routine. For each loop of the optimization a transient thermal simulation of the solid body is performed applying the boundary and inlet conditions of the experiment. The temperature of the outer surface calculated by the finite element simulation is compared to the measured temperature recorded by infrared thermography. The difference of these temperature distributions is minimized by adapting the distribution of the internal heat transfer coefficients. The adaptation is conducted on single elements of the inner surface and will be presented in detail in the paper. This approach allows to achieve a high resolution in heat transfer while minimizing the required iterations. The combination of experimental data and finite element analysis allows to consider three dimensional conduction effects in the solid and the streamwise fluid temperature development. Results are compared to literature data.
机译:在本研究中,描述了一种估计内部冷却系统的局部传热分布的方法。该方法应用了实验数据和有限元分析。本文考虑的研究是基于对通过180°弯曲并带有内部肋骨布置的两道冷却通道进行的实验。冷却通道的实心壁由金属材料制成。在实验过程中,通过红外热像仪记录由加热的内部流动引起的外表面的温度响应。内部传热分布是使用优化例程获得的。对于优化的每个循环,应用实验的边界条件和入口条件对固体进行瞬态热模拟。将通过有限元模拟计算出的外表面温度与通过红外热像仪记录的实测温度进行比较。通过调整内部传热系数的分布,可以使这些温度分布的差异最小化。修改是在内表面的单个元素上进行的,将在本文中进行详细介绍。这种方法可以实现传热的高分辨率,同时最大程度地减少所需的迭代次数。实验数据和有限元分析相结合,可以考虑固体和沿流流体温度发展过程中的三维传导效应。将结果与文献数据进行比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号