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Correlation between wind force and moment coefficients is investigated and wind force coefficients for the design of main wind force resisting systems are proposed.
In particular, it is proposed to use the theory of dynamic shakedown as an efficient means for describing the collapse probability of the main wind force resisting system.
Correlation between the wind force and moment coefficients is investigated, and appropriate wind force coefficients for the design of main wind force resisting systems are proposed.
A discussion is made regarding the application of the model of the pressures to wind load estimations for the main wind force resisting systems of circular flat roofs, using the gust effect factor approach and the LRC method.
When the DAD-estimated reactions were compared with reactions predicted by the ASCE 7-05 main wind force resisting system (MWFRS) method, they showed the ASCE 7 reactions were highly non-conservative(i.e. smaller than the DAD method predictions), by as much as 39% at the gable end truss.
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The present article proposes a model of wind force coefficient for designing open-topped storage tanks in various arrangements; main focus is on oil storage tanks.
The control winding is designed so that when it is short-circuited the resulting current saturates the core irrespective of what happens in the load/main winding and thus affecting the electromagnetic force in the main winding.
Model conditions were systematically varied to produce the hindcast model simulations of the bloom; results indicate that high abundance of cysts in western GOM was the main cause of the 2005 bloom, although wind forcing was an important regulator.
The main design considerations are the craft drag, mainly skirt contact drag over the appropriate terrain, which determines the pulling force, wind forces on the platform, and gravitational forces when climbing or traversing slopes over land.
The effect of wind forces on tall buildings is twofold.
Variation in wind forcing affecting estuarine hydrology was assessed with time series of coastal wind stress.
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