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Numerical Modeling of Turbulent, Parallel, Round Jets

机译:湍流,平行,圆形射流的数值建模

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Although extensive research has been conducted for turbulent single and offset wall jets, relatively little research has been conducted for turbulent parallel jets. Relevant applications include burners, boilers, film cooling, fuel-injection, heating and air-conditioning systems, and designs for pollutant exhaust stacks. The objective of the present work is to evaluate the use of Reynolds-averaged Navier-Stokes, k-epsilon, numerical simulations to predict the three-dimensional evolution of twin, isothermal, turbulent, round jets at a Reynold's number (based on jet diameter d and jet exit velocity Ue) of 25,000. Comparisons with existing experimental literature are conducted with respect to the stream wise turbulence intensity. Further, the stream-wise distance to the combined point is evaluated, along with integrations of stream wise momentum flux. This research will offer an enhanced understanding of parallel jet flow interaction in terms of flow entrainment, as well as provide insights into the sensitivity of the numerical results to variations of inlet turbulence.
机译:尽管已经对湍流单壁和偏壁式射流进行了广泛的研究,但对湍流平行射流却进行了相对较少的研究。相关应用包括燃烧器,锅炉,薄膜冷却,燃料喷射,加热和空调系统以及污染物排放烟囱的设计。本工作的目的是评估使用雷诺平均Navier-Stokes,k-ε数值模拟来预测以雷诺数为基础的双等温湍流圆形射流的三维演变(基于射流直径) d和射流出口速度Ue)为25,000。与现有的实验文献进行了关于流向湍流强度的比较。此外,评估了到组合点的流向距离以及流向动量通量的积分。这项研究将提供关于流动夹带的并行射流相互作用的加深理解,并提供对数值结果对入口湍流变化敏感性的洞察力。

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