Numerical simulation of snowdrift on an air-supported membrane structure and response analysis under snow loads

Q1 Arts and Humanities
He Yanli, Yan Xiaolin, Liu Xiongyan
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引用次数: 0

Abstract

The air supported membrane structure is a typical nonlinear flexible long-span space structure, the wind-induced drift and the resulting accumulation and distribution of snow particles on the structure may be the primary design concern among all loads in heavy-snowfall region. Thus, an accurate prediction of snow distribution on membrane surface is vital to structural design. A numerical simulation method is used to estimate snowdrift in this paper. Based on Euler-Euler method in multi-phase flow theory, this numerical model adopted Mixture model and combined with the snow deposition and erosion model, the snowdrift on an air-supported membrane coal shed is simulated, the distribution factor for roof snow load is given under different wind speed and different directions to estimate the worst load case, snow load on the air-supported membrane structure is significantly affected by snowdrift which causes significant non-uniform snow load. Furthermore, the response analysis of the air-supported membrane structure under snow load is studied, for comparison, uniform snow load case, non-uniform snow load case, and simulated snow load case under 0° wind direction are all considered. The results show that non-uniform snow load caused by snow drifting is more dangerous and should be considered.
气支膜结构在雪荷载作用下的漂移数值模拟及响应分析
空气支撑膜结构是一种典型的非线性柔性大跨度空间结构,风致漂移及其产生的雪粒在结构上的积聚和分布可能是大雪区所有荷载中的主要设计问题。因此,准确预测膜表面的雪分布对结构设计至关重要。本文采用数值模拟方法对雪堆进行了估算。基于多相流理论中的欧拉-欧拉方法,该数值模型采用混合模型,结合雪的沉积和侵蚀模型,模拟了空气支撑膜煤棚上的雪堆,给出了不同风速和不同方向下屋顶雪荷载的分布因子,以估计最坏的荷载情况,雪堆对空气支撑膜结构上的雪荷载有显著影响,导致雪荷载显著不均匀。此外,还研究了空气支撑膜结构在雪荷载作用下的响应分析,比较了均匀雪荷载、非均匀雪荷载和0°风向下的模拟雪荷载情况。结果表明,飘雪引起的非均匀雪荷载更为危险,应予以考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Space Structures
International Journal of Space Structures Arts and Humanities-Conservation
CiteScore
2.00
自引率
0.00%
发文量
21
期刊介绍: The aim of the journal is to provide an international forum for the interchange of information on all aspects of analysis, design and construction of space structures. The scope of the journal encompasses structures such as single-, double- and multi-layer grids, barrel vaults, domes, towers, folded plates, radar dishes, tensegrity structures, stressed skin assemblies, foldable structures, pneumatic systems and cable arrangements. No limitation on the type of material is imposed and the scope includes structures constructed in steel, aluminium, timber, concrete, plastics, paperboard and fabric.
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