首页> 外文会议>ASME International Conference on Micro/Nanoscale Heat and Mass Transfer >THE UNCERTAINTIES OF CONTINUUM-BASED CFD SOLVERS TO PERFORM MICROSCALE HOT-WIRE ANEMOMETER SIMULATIONS IN FLOW FIELDS CLOSE TO TRANSITIONAL REGIME
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THE UNCERTAINTIES OF CONTINUUM-BASED CFD SOLVERS TO PERFORM MICROSCALE HOT-WIRE ANEMOMETER SIMULATIONS IN FLOW FIELDS CLOSE TO TRANSITIONAL REGIME

机译:基于连续体的CFD求解器的不确定性在靠近过渡制度的流场中进行微米热线风速计模拟

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In this study, we simulate the flow and heat transfer during hot-wire anemometry and investigate its thermal behavior and physics using the Computational Fluid Dynamics (CFD) tool. In this regard, we use the finite-volume method and solve the compressible Navier-Stokes equations numerically in slightly non-continuum flow fields. We do not use any slip flow model to include the transitional flow physics in our simulations. Using the CFD method, we simulate the flow over hot-wire and evaluate the uncertainty of CFD in thermal simulation of hot-wire in low transitional flow regimes. The domain sizes and the mesh distributions are carefully chosen to avoid boundary condition error appearances. Following the past researches, we do not take into account the conduction heat transfer passing through hot-wire mounting arms in our simulations. Imposing a fixed temperature condition at the face of hot-wire, we simulate the flow over and the heat transfer from hot-wire and calculate the convection heat transfer coefficient and the local Nusselt number values. To be sure of the accuracy of our CFD code, we simulate a number of similar test cases and compare our numerical solutions with the available numerical solutions and/or experimental data.
机译:在这项研究中,我们使用计算流体动力学(CFD)工具来模拟热线风速谱期间的流动和传热并研究其热行为和物理。在这方面,我们使用有限卷法,在略微非连续流场中以数字方式解决可压缩的Navier-Stokes方程。我们不使用任何滑移模型来包括我们模拟中的过渡流物理。使用CFD方法,我们模拟了热线的流量,并评估了低过渡流程中热线热模拟中CFD的不确定性。仔细选择域大小和网状分布,以避免边界条件错误出现。在过去的研究之后,我们没有考虑我们在模拟中通过热线安装臂的传导传热。在热线面上施加固定温度条件,我们模拟流量超过热线,并计算对流传热系数和局部露珠数值。为了确保我们的CFD代码的准确性,我们模拟了许多类似的测试用例,并将我们的数值解决方案与可用的数字解决方案和/或实验数据进行比较。

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