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Experimental study of wind loads on cylindrical reticulated shells 被引量:4

Experimental study of wind loads on cylindrical reticulated shells
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摘要 The cylindrical reticulated shell structures without side walls, which are normally arranged in pairs, are usually used as dry-coal sheds in a thermal power plant. The wind loads of these shells do not exist in standards or codes. Therefore, this study investigates the mean and fluctuating wind loads on a cylindrical reticulated shell with a rise-to-span ratio of 0.39 through a series of wind tunnel tests. The characteristics of the wind pressures on the upper and lower surfaces and the net pressures are presented. The results show that the wind direction and another shell structure significantly affect the wind loads on the principal shell. The most unfavorable wind direction is around 30~, whereas the effects of the wind field and the height of the coal stack are small. The surfaces of the shells are divided into nine blocks, and the block mean and fluctuating (rms) pressure coefficients suitable for engineering applications are given as references for wind load codes. The cylindrical reticulated shell structures without side walls, which are normally arranged in pairs, are usually used as dry-coal sheds in a thermal power plant. The wind loads of these shells do not exist in standards or codes. Therefore, this study investigates the mean and fluctuating wind loads on a cylindrical reticulated shell with a rise-to-span ratio of 0.39 through a series of wind tunnel tests. The characteristics of the wind pressures on the upper and lower surfaces and the net pressures are presented. The results show that the wind direction and another shell structure significantly affect the wind loads on the principal shell. The most unfavorable wind direction is around 30~, whereas the effects of the wind field and the height of the coal stack are small. The surfaces of the shells are divided into nine blocks, and the block mean and fluctuating (rms) pressure coefficients suitable for engineering applications are given as references for wind load codes.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2013年第3期281-296,共16页 应用数学和力学(英文版)
基金 Project supported by the Ministry of Science and Technology of China (Nos. SLDRCE09-B-06 and SLDRCE08-A-03) the National Natural Science Foundation of China (Nos. 51178352, 51278368 and 90715040)
关键词 cylindrical reticulated shell dry-coal shed wind tunnel test block pressurecoefficient fluctuating pressure interference effect cylindrical reticulated shell, dry-coal shed, wind tunnel test, block pressurecoefficient, fluctuating pressure, interference effect
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  • 1Li, Y. Q., Tamura, Y., Yoshida, A., Katsumura, A., and Cho, K. Wind loading and its effects on single-layer reticulated cylindrical shells. Journal of Wind Engineering and Industrial Aerody- namics, 94(12), 949-973 (2006).
  • 2Khanduri, A. C., Stathopoulos, T., and Bedard, C. Wind-induced interference effects on build- ings a review of the state-of-the-art. Engineering Structures, 20(7), 617-630 (1998).
  • 3Huang, P. and Gu, M. Experimental study on wind-induced dynamic interference effects between two tall buildings. Wind and Structures, 8(3), 147-161 (2005).
  • 4Xie, Z. N. and Gu, M. Simplified formulas for evaluation of wind-induced interference effects among three tall buildings. Wind and Structures, 95(1), 31-52 (2007).
  • 5AS/NZS 1170.2-2002. Structural Design--General Requirements and Design Actions, Part2: Wind Actions, Standards Australia/Standards New Zealand, Sydney/Wellington (2002).
  • 6ASCE/SEI 7-10. Minimum Design Loads for Buildings and Other Structures, American Society of Civil Engineers, Virginia (2010).
  • 7GB 50009-2006. Load Code for the Design of Building Structures, China Building Industry Press, Bei.iing (2006).
  • 8Zhou, X. Y., Huang, P., Gu, M., and Mi, F. S. Wind loads and responses of two neighboring dry coal sheds. Advances in Structural Engineering, 14(2), 207-221 (2011).
  • 9Taylor, T. J. Wind pressures on a hemispherical dome. Journal of Wind Engineering and Indus- trial Aerodynamics, 40(2), 199-213 (1991).

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