2019SSRN Electronic JournalOpen access

Design of Slab of Residential Building for Wind Loading G+10 Storeys

Rajpal Singh Bumrah, Aradhna Shrivastava, Vijay Kumar Shukla

Open full text 0 citations

Abstract

Wind loads are randomly applied dynamic loads. The intensity of the wind pressure on the surface of a structure depends on wind velocity, air density, orientation of the structure, area of contact surface, and shape of the structure. Because of the complexity involved in defining both the dynamic wind load and the behavior of an indeterminate steel structure when subjected to wind loads, the design criteria adopted by building codes and standards have been based on the application of an equivalent static wind pressure. In this project we are going design G+10 residential building (with parking) considering wind load in Ambikapur, Surguja by considering Wind load along with dead and live load in designing the high rise building because wind load exerts horizontal load on building. This load on the structure induces large dynamic motions, including oscillations. We have IS CODE-456:2000, IS CODE 875:1987 and Stadd Pro Software for the design.

About this research paper

What this paper is about

Wind loads are randomly applied dynamic loads. The intensity of the wind pressure on the surface of a structure depends on wind velocity, air density, orientation of the structure, area of contact surface, and shape of the structure. Because of the complexity involved in defining both the dynamic wind load and the behavior of an indeterminate steel structure when subjected to wind loads, the design criteria adopted by building codes and standards have been based on the application of an equivalent static wind pressure. In this project we are going design G+10 residential building (with parking) considering wind load in Ambikapur, Surguja by considering Wind load along with dead and live load in designing the high rise building because wind load exerts horizontal load on building. This load on the structure induces large dynamic motions, including oscillations. We have IS CODE-456:2000, IS CODE 875:1987 and Stadd Pro Software for the design.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Wind loads are randomly applied dynamic loads. The intensity of the wind pressure on the surface of a structure depends on wind velocity, air density, orientation of the structure, area of contact surface, and shape of the structure. Because of the complexity involved in defining both the dynamic wind load and the behavior of an indeterminate steel structure when subjected to wind loads, the design criteria adopted by building codes and standards have been based on the application of an equivalent static wind pressure. In this project we are going design G+10 residential building (with parking) considering wind load in Ambikapur, Surguja by considering Wind load along with dead and live load in designing the high rise building because wind load exerts horizontal load on building. This load on the structure induces large dynamic motions, including oscillations. We have IS CODE-456:2000, IS CODE 875:1987 and Stadd Pro Software for the design.

Key concepts: Wind engineering, Structural engineering, Wind speed, Slab, Structural load, Wind direction, Wind tunnel, Low-rise

Related papers

Back to paper searchBrowse research topicsOriginal source
Design of Slab of Residential Building for Wind Loading G+10 Storeys — Research Paper | ScholarLens