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December 12, 2011 B5557.0112234 JAR/ STS 1 11 Moral Stoned Pressure Tables Design Wind Pressure Tables Report B5557.0112234 Rendered to: MORAL STONE PRODUCTS LLC 2256 Centennial Road Toledo, Ohio
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How to fill out design wind pressure tables

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How to fill out design wind pressure tables:

01
Start by gathering the necessary information, such as the location of the structure, its dimensions, and the design wind speed required by the building codes or standards.
02
Determine the exposure category of the structure, which is based on its surrounding terrain and vegetation conditions. This information can usually be found in the building codes or standards.
03
Identify the appropriate design wind pressure coefficients for different components of the structure, such as the roof, walls, and windows. These coefficients can also be found in the building codes or standards.
04
Calculate the design wind pressures for each component by multiplying the design wind speed by the corresponding pressure coefficient. For example, if the design wind speed is 100 mph and the roof pressure coefficient is 1.2, the design wind pressure on the roof would be 120 psf.
05
Fill out the design wind pressure tables by entering the calculated design wind pressures for each component. Include all relevant information, such as the component description, design wind speed, pressure coefficients, and design wind pressures. This will provide a comprehensive overview of the wind loads on the structure.
06
Review the completed design wind pressure tables to ensure accuracy and consistency. Double-check all calculations and make any necessary adjustments or corrections.
07
Keep the design wind pressure tables on file for future reference and use in the design and construction processes. They serve as an important documentation of the wind load analysis and can be valuable for structural engineers, architects, and contractors involved in the project.

Who needs design wind pressure tables?

01
Structural Engineers: Design wind pressure tables are essential tools for structural engineers to accurately calculate the wind loads on a structure. They use this information to determine the design requirements for the building's structural elements, such as beams, columns, and foundations.
02
Architects: Architects need design wind pressure tables to ensure that the building's envelope, including walls, windows, and roofs, is designed to withstand the wind forces it will be subjected to. This information helps them create a safe and functional building design that complies with building codes and standards.
03
Contractors: Contractors rely on design wind pressure tables to understand the wind load requirements for construction materials, such as selecting the appropriate thickness of glass for windows or determining the necessary fastening systems for cladding materials. It ensures that the construction is done correctly and meets the required safety standards.
04
Building Inspectors: Building inspectors refer to design wind pressure tables during the inspection process to verify that the structure has been designed and constructed to withstand the anticipated wind forces. This ensures that the building is safe for occupancy and compliant with the applicable building codes.
05
Building Owners/Developers: Design wind pressure tables provide building owners and developers with crucial information about the wind resistance of their structures. It helps them assess the overall safety and durability of the building, make informed decisions regarding maintenance and repairs, and ensure compliance with insurance requirements.
06
Insurance Companies: Insurance companies rely on design wind pressure tables to assess the risk associated with insuring a building against wind-related damage. These tables help them determine the appropriate coverage limits, premiums, and deductibles based on the building's location and potential wind loads.
07
Researchers and Academics: Researchers and academics in the field of structural engineering and wind engineering often use design wind pressure tables as reference material for studying wind effects on structures. They analyze the data in these tables to advance their knowledge and improve design guidelines and standards.
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Design wind pressure tables provide information on the expected wind pressures for different geographic locations, which is used in the design of structures to ensure they can withstand wind loads.
Architects, engineers, and designers involved in the construction of buildings are typically required to file design wind pressure tables.
Design wind pressure tables are filled out by inputting the relevant wind pressure data for the specific location of the structure being designed.
The purpose of design wind pressure tables is to provide accurate data on wind pressures to ensure the structural integrity and safety of buildings.
Design wind pressure tables must include data on the location, wind speeds, and corresponding wind pressures for the specific project.
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