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1. A.THE TANK AND SUPPORT STRUCTURE SHALL BE DESIGNED, FABRICATED, AND ERECTED IN ACCORDANCE WITH AWA D10011 AND THE PROJECT SPECIFICATIONS. 1. B. LOADING CRITERIA: 1. B.A. DESIGN WIND VELOCITY MPH
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How to fill out design wind velocity:

01
Start by determining the geographic location where the structure is being designed. This will help in identifying the appropriate wind speed data.
02
Consult the local building and construction codes to understand the specific guidelines and requirements for determining design wind velocity.
03
Use available resources such as wind speed maps, meteorological data, or wind tunnels to gather information on the prevailing wind speeds in the project area.
04
Take into account the importance level of the structure, which will dictate the design wind speed required. Different buildings have different thresholds for withstanding wind forces.
05
Consider any site-specific conditions that may affect the design wind velocity, such as nearby tall buildings, mountains, or bodies of water. These factors can create localized variations in wind patterns.
06
Calculate the annual probability of exceedance for the design wind speed. This helps in determining the appropriate return period for wind events and ensures the structure's safety.
07
Document the methodology and data used in determining the design wind velocity in the project specifications or design reports.
08
Regularly review and update the design wind velocity as new data becomes available or if there are changes to the project that may affect wind load requirements.

Who needs design wind velocity:

01
Architects and engineers: Designers rely on accurate wind velocity data to ensure the structural integrity and stability of buildings. They consider design wind velocity as a crucial parameter during the design process.
02
Construction companies: Builders use design wind velocity to determine the appropriate materials, construction techniques, and reinforcement needed to withstand wind loads during construction.
03
Building code officials: Regulatory authorities and building code officials require design wind velocity information to enforce safety standards and ensure that structures are built to withstand wind forces.
04
Insurance companies: Insurers utilize design wind velocity as a key factor in assessing risks and determining premiums for property insurance policies. Accurate wind load calculations help them evaluate potential damages and losses caused by wind events.
05
Developers and property owners: Understanding the design wind velocity is essential for developers and property owners to make informed decisions regarding the feasibility, cost, and safety of construction projects. It helps them assess potential risks and ensure compliance with building codes and regulations.
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Design wind velocity is the speed of the wind that a structure is expected to withstand during its design life.
Architects, engineers, and designers are required to file design wind velocity for structures they are designing.
Design wind velocity is typically determined using wind loading codes and formulas, and it must be documented in the project designs.
The purpose of design wind velocity is to ensure that structures are built to withstand the maximum wind forces they may experience.
Design wind velocity reports must include the location of the structure, the design wind speed, the methodology used to determine the wind speed, and any assumptions made during the calculation.
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