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Numerical Study of Pressure Field in Laterally Closed Industrial Buildings with Curved Metallic Roofs due to the Wind Effect by FEM and European Rule Comparison

机译:基于FEM的侧向封闭金属屋面弯曲工业厂房内压力场数值模拟与欧洲规范比较。

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In this paper, an evaluation of distribution of the air pressure is determined throughout the laterally closed industrial buildings with curved metallic roofs due to the wind effect by the finite element method (FEM). The non-linearity is due to Reynolds-averaged Navier-Stokes (RANS) equations that govern the turbulent flow. The Navier-Stokes equations are non-linear partial differential equations and this non-linearity makes most problems difficult to solve and is part of the cause of turbulence. The RANS equations are time-averaged equations of motion for fluid flow. They are primarily used while dealing with turbulent flows. Turbulence is a highly complex physical phenomenon that is pervasive in flow problems of scientific and engineering concern like this one. In order to solve the RANS equations a two-equation model is used: the standard k — £ model. The calculation has been carried out keeping in mind the following assumptions: turbulent flow, an exponential-like wind speed profile with a maximum velocity of 40 m/s at 10 m reference height, and different heights of the building ranging from 6 to 10 meters. Finally, the forces and moments are determined on the cover, as well as the distribution of pressures on the same one, comparing the numerical results obtained with the Spanish CTE DB SE-AE, Spanish NBE AE-88 and European standard rules, giving place to the conclusions that are exposed in the study.
机译:在本文中,通过有限元方法(FEM)确定了由于风效应而在具有弯曲金属屋顶的横向封闭式工业建筑中的气压分布评估。非线性归因于控制湍流的雷诺平均Navier-Stokes(RANS)方程。 Navier-Stokes方程是非线性偏微分方程,这种非线性使大多数问题难以解决,并且是湍流原因的一部分。 RANS方程是流体流动的时间平均运动方程。它们主要用于处理湍流。湍流是一种高度复杂的物理现象,普遍存在于这种科学和工程问题的流动问题中。为了求解RANS方程,使用了两个方程模型:标准k_£模型。进行计算时要牢记以下假设:湍流,在10 m参考高度处最大速度为40 m / s的指数状风速曲线以及建筑物的6至10米的不同高度。最后,确定盖上的力和力矩以及同一盖上的压力分布,将与西班牙CTE DB SE-AE,西班牙NBE AE-88和欧洲标准规则获得的数值结果进行比较,得出研究中得出的结论。

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