首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >NUMERICAL SIMULATION OF SUPERCRITICAL PRESSURE FLUIDS WITH VARIABLE TURBULENT PRANDTL NUMBER AND MODIFIED DAMPING FUNCTION (1/2)
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NUMERICAL SIMULATION OF SUPERCRITICAL PRESSURE FLUIDS WITH VARIABLE TURBULENT PRANDTL NUMBER AND MODIFIED DAMPING FUNCTION (1/2)

机译:湍流PRANDTL数和阻尼修正函数的超临界流体数值模拟(1/2)。

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In most numerical simulations of a fluid flow with constant properties or negligible variations, the value of Pr, has been considered to be unity or close to it. However, numerical attempts with a constant Pr, have never been successful in estimating the wall temperature in highly-buoyant supercritical fluids through vertical tubes. Several experimental data and numerical studies have indicated that Pr, can be very smaller or larger than unity in a region of severe property variation. Recent research, both numerical and experimental, indicate that Pr, is very likely a function of fluid-thermal variables, when the gradients of the physical properties of the fluid are significant. In this regard, a new concept of a variable turbulent Pr, according to the property variation was developed. Another point to be considered is that the turbulent boundary layer (TBL) deforms so severely that the damping function included in the turbulence modeling is no longer a fixed function of the turbulence properties. When a velocity overshoot (or peak) appears in or near the TBL, a new TBL may develop between the point of the velocity peak and the wall. Accordingly, the damping function in the new TBL will be different from that for the TBL without a velocity peak. A new formulation for the damping function, actually the thickness of the viscous sublayer, A~+, was introduced to accommodate the TBL deformation. The new formulations for Pr, and A~+ were tested in the numerical simulation, and the results agreed well with the experimental data.
机译:在大多数具有恒定特性或可忽略不计的变化的流体流动的数值模拟中,Pr的值被认为是单一的或接近于此。然而,用恒定的Pr进行数值尝试从未成功地估计通过垂直管的高浮力超临界流体的壁温。几个实验数据和数值研究表明,在严重的性能变化区域中,Pr可以小于或大于1。数值和实验的最新研究表明,当流体的物理特性的梯度很大时,Pr很可能是流体热变量的函数。在这方面,根据性质的变化,提出了可变湍流Pr的新概念。要考虑的另一点是,湍流边界层(TBL)变形严重,以至于湍流建模中包含的阻尼函数不再是湍流特性的固定函数。当TBL或其附近出现速度超调(或峰值)时,可能会在速度峰值的点和墙之间形成新的TBL。因此,新TBL中的阻尼功能将与没有速度峰值的TBL中的阻尼功能不同。引入了一种新的阻尼函数公式,实际上是粘性子层的厚度A〜+,以适应TBL变形。在数值模拟中测试了新的Pr和A〜+的配方,结果与实验数据吻合良好。

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