首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.4 pt.B: Fluid-Structure Interaction >AN ADVANCED MIXING TEE MOCK-UP CALLED 'THE SKIN OF THE FLUID' DESIGNED TO QUALIFY THE NUMERICAL LES ANALYSES APPLIED TO THE THERMAL EVALUATION
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AN ADVANCED MIXING TEE MOCK-UP CALLED 'THE SKIN OF THE FLUID' DESIGNED TO QUALIFY THE NUMERICAL LES ANALYSES APPLIED TO THE THERMAL EVALUATION

机译:先进的混合三通模型,称为“流体的皮肤”,旨在验证用于热评估的数值分析

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Nowadays, the LES (Large Eddy Simulation) models have reached an advanced stage in the thermal hydraulic numerical analyses. Particularly, in the mixing tee geometry, the LES allows the thermal, temperature fluctuations cartography - both in amplitude and frequency - to be evaluated. However, for the purpose of mechanical studies a better determination of the fluctuation temperature which impacts the wall would be of significant interest, magnitude of the fluctuation being directly linked to the lifetime of the Tee. This demand steps of experimental qualifications based on cartographic comparisons between numerical and experimental results, not compatible with basic current experiments proposing only local measurements. A mixing tee mock-up (φ 50 mm) called "the skin of the fluid" was designed to show the real time observation of the temperature fluctuations in the mixing area with a digital infrared device. With its low Biot number the mock-up is quasi permeable to the fluctuation and does not attenuate the temperature amplitude at high frequency, consequently, the infrared image represents the temperature fluctuations which impacts the wall. An existent LES numerical analysis performed with the TRIO U code (developed by the CEA) on the same geometry is shown for a first comparative approach.
机译:如今,LES(大涡模拟)模型已进入热工水力数值分析的高级阶段。特别是,在混合三通的几何形状中,LES允许评估振幅和频率的热,温度波动图。然而,出于机械研究的目的,将更好地确定影响壁的起伏温度,起伏的大小直接与三通的使用寿命有关。这要求根据数字和实验结果之间的制图比较来进行实验鉴定,这与仅建议局部测量的基本当前实验不兼容。设计了一个名为“流体表皮”的混合三通模型(φ50 mm),以显示使用数字红外设备实时观察混合区域中温度波动的情况。由于其Biot值较低,因此该模型对于波动几乎是可渗透的,并且不会衰减高频下的温度幅度,因此,红外图像表示影响墙壁的温度波动。对于第一种比较方法,显示了使用TRIO U代码(由CEA开发)在相同几何形状上进行的现有LES数值分析。

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