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承受液体重量载荷的周边固定圆形薄膜的大挠度分析:基于薄膜挠度的雨量计的精确设计理论

Large Deflection Analysis of Peripherally Fixed Circular Membranes Subjected to Liquid Weight Loading: A Refined Design Theory of Membrane Deflection-Based Rain Gauges.

作者信息

Sun Jun-Yi, Zhang Qi, Wu Ji, Li Xue, He Xiao-Ting

机构信息

School of Civil Engineering, Chongqing University, Chongqing 400045, China.

Key Laboratory of New Technology for Construction of Cities in Mountain Area (Chongqing University), Ministry of Education, Chongqing 400045, China.

出版信息

Materials (Basel). 2021 Oct 12;14(20):5992. doi: 10.3390/ma14205992.

Abstract

The anticipated use of elastic membranes for deflection-based rain gauges has provided an impetus for this paper to revisit the large deflection problem of a peripherally fixed circular membrane subjected to liquid weight loading, a statics problem when the fluid-structure interaction of membrane and liquid reaches static equilibrium. The closed-form solution of this statics problem of fluid-structure interaction is necessary for the design of such membrane deflection-based rain gauges, while the existing closed-form solution, due to the use of the small rotation angle assumption of the membrane, cannot meet the design requirements for computational accuracy. In this paper, the problem under consideration is reformulated by giving up the small rotation angle assumption, which gives rise to a new and somewhat intractable nonlinear integro-differential equation of the governing out-of-plane equilibrium. The power series method has played an irreplaceable role in analytically solving membrane equations involving both integral and differential operations, and a new and more refined closed-form solution without the small rotation angle assumption is finally presented. Numerical examples conducted show that the new and more refined closed-form solution presented has satisfactory convergence, and the effect of giving up the small rotation angle assumption is also investigated numerically. The application of the closed-form solution presented in designing such membrane deflection-based rain gauges is illustrated, and the reliability of the new and more refined closed-form solution presented was confirmed by conducting a confirmatory experiment.

摘要

弹性膜用于基于挠度的雨量计的预期用途促使本文重新审视周边固定圆形膜在液体重量载荷作用下的大挠度问题,当膜与液体的流固相互作用达到静态平衡时,这是一个静力学问题。这种流固相互作用静力学问题的闭式解对于此类基于膜挠度的雨量计的设计是必要的,而现有的闭式解由于使用了膜的小旋转角假设,无法满足计算精度的设计要求。本文通过放弃小旋转角假设对所考虑的问题进行了重新表述,这导致了一个新的、有点棘手的平面外平衡控制非线性积分 - 微分方程。幂级数法在解析求解涉及积分和微分运算的膜方程中发挥了不可替代的作用,最终给出了一个没有小旋转角假设的新的、更精确的闭式解。进行的数值例子表明,所给出的新的、更精确的闭式解具有令人满意的收敛性,并且还对放弃小旋转角假设的效果进行了数值研究。阐述了所给出的闭式解在设计此类基于膜挠度的雨量计中的应用,并通过进行验证性实验证实了所给出的新的、更精确的闭式解的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/793b/8540914/559f1bd20b88/materials-14-05992-g001.jpg

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