Basic Wind given Velocity Pressure Solution

STEP 0: Pre-Calculation Summary
Formula Used
Basic Wind Speed = sqrt(Velocity Pressure/(0.00256*Velocity Exposure Coefficient*Topographic Factor*Wind Directionality Factor*Importance Factor for End Use))
VB = sqrt(q/(0.00256*Kz*Kzt*Kd*I))
This formula uses 1 Functions, 6 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Basic Wind Speed - (Measured in Meter per Second) - Basic Wind Speed is the wind speed corresponding to a 3-s gust speed at 33 ft above the ground in Exposure C.
Velocity Pressure - (Measured in Pascal) - Velocity Pressure is the pressure required to accelerate air from zero velocity to some velocity and is proportional to the kinetic energy of the air stream.
Velocity Exposure Coefficient - Velocity Exposure Coefficient is evaluated at some height z.
Topographic Factor - Topographic Factor are also called indirect factors as they influence the growth and development of organisms by bringing variations in climatic factors.
Wind Directionality Factor - Wind Directionality Factor reflects the fact that the climatologically and aerodynamically or dynamically most unfavourable wind directions typically do not coincide.
Importance Factor for End Use - Importance Factor for End Use is the factor whose value lies in range 0.8 to 1.2.
STEP 1: Convert Input(s) to Base Unit
Velocity Pressure: 20 Poundal per Square Foot --> 29.7632788711526 Pascal (Check conversion ​here)
Velocity Exposure Coefficient: 0.85 --> No Conversion Required
Topographic Factor: 25 --> No Conversion Required
Wind Directionality Factor: 0.78 --> No Conversion Required
Importance Factor for End Use: 0.8 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
VB = sqrt(q/(0.00256*Kz*Kzt*Kd*I)) --> sqrt(29.7632788711526/(0.00256*0.85*25*0.78*0.8))
Evaluating ... ...
VB = 29.6106978052379
STEP 3: Convert Result to Output's Unit
29.6106978052379 Meter per Second --> No Conversion Required
FINAL ANSWER
29.6106978052379 29.6107 Meter per Second <-- Basic Wind Speed
(Calculation completed in 00.004 seconds)

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Created by Mridul Sharma
Indian Institute of Information Technology (IIIT), Bhopal
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​ LaTeX ​ Go Pressure Coefficient = Wind Pressure/(Velocity Pressure*Gust Response Factor)
Velocity Pressure using Wind Pressure
​ LaTeX ​ Go Velocity Pressure = Wind Pressure/(Gust Response Factor*Pressure Coefficient)
Equivalent Static Design Wind Pressure
​ LaTeX ​ Go Wind Pressure = Velocity Pressure*Gust Response Factor*Pressure Coefficient

Basic Wind given Velocity Pressure Formula

​LaTeX ​Go
Basic Wind Speed = sqrt(Velocity Pressure/(0.00256*Velocity Exposure Coefficient*Topographic Factor*Wind Directionality Factor*Importance Factor for End Use))
VB = sqrt(q/(0.00256*Kz*Kzt*Kd*I))

What is Velocity Pressure?

Velocity pressure is required to accelerate air from zero velocity to some velocity (V) and is proportional to the kinetic energy of the air stream.

How to Calculate Basic Wind given Velocity Pressure?

Basic Wind given Velocity Pressure calculator uses Basic Wind Speed = sqrt(Velocity Pressure/(0.00256*Velocity Exposure Coefficient*Topographic Factor*Wind Directionality Factor*Importance Factor for End Use)) to calculate the Basic Wind Speed, The Basic Wind given Velocity Pressure is defined as the basic wind when we have a prior info velocity pressure and other factors affecting it like topographic factor, importance factor etc. Basic Wind Speed is denoted by VB symbol.

How to calculate Basic Wind given Velocity Pressure using this online calculator? To use this online calculator for Basic Wind given Velocity Pressure, enter Velocity Pressure (q), Velocity Exposure Coefficient (Kz), Topographic Factor (Kzt), Wind Directionality Factor (Kd) & Importance Factor for End Use (I) and hit the calculate button. Here is how the Basic Wind given Velocity Pressure calculation can be explained with given input values -> 29.6107 = sqrt(29.7632788711526/(0.00256*0.85*25*0.78*0.8)).

FAQ

What is Basic Wind given Velocity Pressure?
The Basic Wind given Velocity Pressure is defined as the basic wind when we have a prior info velocity pressure and other factors affecting it like topographic factor, importance factor etc and is represented as VB = sqrt(q/(0.00256*Kz*Kzt*Kd*I)) or Basic Wind Speed = sqrt(Velocity Pressure/(0.00256*Velocity Exposure Coefficient*Topographic Factor*Wind Directionality Factor*Importance Factor for End Use)). Velocity Pressure is the pressure required to accelerate air from zero velocity to some velocity and is proportional to the kinetic energy of the air stream, Velocity Exposure Coefficient is evaluated at some height z, Topographic Factor are also called indirect factors as they influence the growth and development of organisms by bringing variations in climatic factors, Wind Directionality Factor reflects the fact that the climatologically and aerodynamically or dynamically most unfavourable wind directions typically do not coincide & Importance Factor for End Use is the factor whose value lies in range 0.8 to 1.2.
How to calculate Basic Wind given Velocity Pressure?
The Basic Wind given Velocity Pressure is defined as the basic wind when we have a prior info velocity pressure and other factors affecting it like topographic factor, importance factor etc is calculated using Basic Wind Speed = sqrt(Velocity Pressure/(0.00256*Velocity Exposure Coefficient*Topographic Factor*Wind Directionality Factor*Importance Factor for End Use)). To calculate Basic Wind given Velocity Pressure, you need Velocity Pressure (q), Velocity Exposure Coefficient (Kz), Topographic Factor (Kzt), Wind Directionality Factor (Kd) & Importance Factor for End Use (I). With our tool, you need to enter the respective value for Velocity Pressure, Velocity Exposure Coefficient, Topographic Factor, Wind Directionality Factor & Importance Factor for End Use and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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