Internal Wind Pressures and Buckling Behavior of Large Cylindrical Floating-Roof Tanks Under Various Liquid Levels

Author:

Zhao Yang1,Liu Qing1,Cai Shuqi1,Dong Shilin1

Affiliation:

1. Space Structures Research Center, Zhejiang University, Hangzhou 310058, China

Abstract

Abstract In this paper, two practical large cylindrical floating-roof tanks with diameters of 60 m and 100 m are selected as research objects. Wind pressures on the internal wall of tank shells under various liquid levels are carefully investigated by both experimental and numerical methods, especially those around the sealing device. It is found that computational fluid dynamics (CFD) simulation gives similar but generally greater results than wind tunnel tests (WTTs), and that wind pressures around the sealing device increase with the rise of liquid level. Geometrically nonlinear analyses (GNA) are then performed to figure out the variation of buckling behavior of tank shells with the liquid level. Two buckling modes are specified, featured by large buckles in the unstiffened region and local short-wave buckles in the stiffened region, respectively. Buckling loads are found to increase stepwise with the liquid level, with critical heights roughly calculated by positions of stiffening rings. Finally, recommendations on liquid levels maintained in strong wind conditions are given, considering the safety of both sealing devices and tank shells.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

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