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The equivalent static wind loads were computed as per IS: 4998(Part 1 -1992 (2003).
In this paper, a novel approach to the determination of Equivalent Static Wind Loads is presented.
Equivalent static wind loads (ESWLs) allow to recover extreme responses in the envelope.
It uses parameters that can be identified in static wind tunnel tests.
Uncertainties in static wind load-related parameters are incorporated in the algorithm.
The wind-resistant design using equivalent static wind loads is convenient for structural engineers.
Similar(8)
This paper is intended to investigate the wind suction effect and its influence on the static wind-resistant behavior of stiffened steel truss bridges during construction.
In this scheme, the equivalent-static wind loading used for design is equal to the mean wind force multiplied by the GLF.
The wind pressure on the vibrating membrane can be simplified to be the sum of the aerodynamic acoustic pressure and the quasi-static wind pressure.
These pressures are caused by the compressive action of the vibrating membrane on the air and the quasi-static wind pressure on the corresponding membrane at any instant.
The cost of materials for the heliostat components and their sensitivity to heliostat size are estimated as a function of the design (stow) wind speed based on the specification of the structural design for quasi-static wind loads.
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