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Dynamics of Air Flow in Sewer Conduit Headspace

机译:下水道顶部空间的空气动力学

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Pressurization in sanitary sewer conduit atmosphere is modeled using computational fluid dynamics techniques. The modeling approach considers both turbulent and laminar flow regimes. The turbulent model takes into consideration the turbulence-driven secondary currents associated with the sewer headspace and hence the Reynolds equations governing the air flow field are closed with an anisotropic closure model which comprises the use of the eddy viscosity concept for the turbulent shear stresses and semiempirical relations for the turbulent normal stresses. The resulting formulations are numerically integrated. The turbulent model outputs are verified with experimental data reported in the literature. Satisfactory agreement is obtained between numerical simulations and experimental data. Mathematical formulas and curves as functions of longitudinal pressure gradient, wastewater velocity, and sewer headspace geometry are developed for the cross-sectional average streamwise velocity.
机译:使用计算流体动力学技术对下水道中的大气压力进行建模。建模方法同时考虑了湍流和层流状态。湍流模型考虑了与下水道顶部空间相关的湍流驱动的二次流,因此控制各向异性的雷诺兹方程用各向异性封闭模型封闭,该模型包括将涡流粘度概念用于湍流剪应力和半经验模型。湍流法向应力的关系。所得配方在数值上进行积分。用文献报道的实验数据验证了湍流模型的输出。在数值模拟和实验数据之间获得令人满意的一致性。针对横截面平均水流速度,开发了与纵向压力梯度,废水速度和下水道顶部空间几何形状有关的数学公式和曲线。

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