Temperature Stress using Temperature Variation in Water Pipe Solution

STEP 0: Pre-Calculation Summary
Formula Used
Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*Change in Temperature
σt = Egpa*α*Δt
This formula uses 4 Variables
Variables Used
Thermal Stress - (Measured in Pascal) - Thermal Stress is the stress produced by any change in the temperature of the material. Thermal stress is induced in a body when the temperature of the body is raised or lowered.
Modulus of Elasticity in Gpa - (Measured in Pascal) - Modulus of Elasticity in Gpa is the unit of measurement of an object's or substance's resistance to being deformed elastically when a stress is applied to it in Gpa.
Coefficient of Thermal Expansion - (Measured in Per Kelvin) - The Coefficient of Thermal Expansion is a material property that is indicative of the extent to which a material expands upon heating.
Change in Temperature - (Measured in Kelvin) - Change in Temperature is the change in final and initial temperatures.
STEP 1: Convert Input(s) to Base Unit
Modulus of Elasticity in Gpa: 200 Gigapascal --> 200000000000 Pascal (Check conversion ​here)
Coefficient of Thermal Expansion: 0.000434 Per Degree Celsius --> 0.000434 Per Kelvin (Check conversion ​here)
Change in Temperature: 16.12 Degree Celsius --> 16.12 Kelvin (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σt = Egpa*α*Δt --> 200000000000*0.000434*16.12
Evaluating ... ...
σt = 1399216000
STEP 3: Convert Result to Output's Unit
1399216000 Pascal -->1.399216 Gigapascal (Check conversion ​here)
FINAL ANSWER
1.399216 Gigapascal <-- Thermal Stress
(Calculation completed in 00.004 seconds)

Credits

Creator Image
Created by Suraj Kumar
Birsa Institute of Technology (BIT), Sindri
Suraj Kumar has created this Calculator and 2100+ more calculators!
Verifier Image
Verified by Ishita Goyal
Meerut Institute of Engineering and Technology (MIET), Meerut
Ishita Goyal has verified this Calculator and 2600+ more calculators!

Temperature Stresses Calculators

Temperature Stress using Initial and Final Temperature
​ LaTeX ​ Go Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*(Final Temperature-Initial Temperature)
Temperature Variation using Thermal Stress Developed in Pipes
​ LaTeX ​ Go Change in Temperature = Thermal Stress/(Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion)
Modulus of Elasticity of Pipe Material
​ LaTeX ​ Go Modulus of Elasticity in Gpa = Thermal Stress/(Coefficient of Thermal Expansion*Change in Temperature)
Temperature Stress using Temperature Variation in Water Pipe
​ LaTeX ​ Go Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*Change in Temperature

Temperature Stress using Temperature Variation in Water Pipe Formula

​LaTeX ​Go
Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*Change in Temperature
σt = Egpa*α*Δt

What is Thermal Stress?

Thermal stress is the stress produced by any change in the temperature of the material. Thermal stress is induced in a body when the temperature of the body is raised or lowered and the body is not allowed to expand or contract freely.

How to Calculate Temperature Stress using Temperature Variation in Water Pipe?

Temperature Stress using Temperature Variation in Water Pipe calculator uses Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*Change in Temperature to calculate the Thermal Stress, The Temperature Stress using Temperature Variation in Water Pipe formula is defined as the measure of increase or decrease in temperature of the pipe that causes it to expand or contract in the absence of induced stresses. Thermal Stress is denoted by σt symbol.

How to calculate Temperature Stress using Temperature Variation in Water Pipe using this online calculator? To use this online calculator for Temperature Stress using Temperature Variation in Water Pipe, enter Modulus of Elasticity in Gpa (Egpa), Coefficient of Thermal Expansion (α) & Change in Temperature (Δt) and hit the calculate button. Here is how the Temperature Stress using Temperature Variation in Water Pipe calculation can be explained with given input values -> 1.1E-9 = 200000000000*0.000434*16.12.

FAQ

What is Temperature Stress using Temperature Variation in Water Pipe?
The Temperature Stress using Temperature Variation in Water Pipe formula is defined as the measure of increase or decrease in temperature of the pipe that causes it to expand or contract in the absence of induced stresses and is represented as σt = Egpa*α*Δt or Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*Change in Temperature. Modulus of Elasticity in Gpa is the unit of measurement of an object's or substance's resistance to being deformed elastically when a stress is applied to it in Gpa, The Coefficient of Thermal Expansion is a material property that is indicative of the extent to which a material expands upon heating & Change in Temperature is the change in final and initial temperatures.
How to calculate Temperature Stress using Temperature Variation in Water Pipe?
The Temperature Stress using Temperature Variation in Water Pipe formula is defined as the measure of increase or decrease in temperature of the pipe that causes it to expand or contract in the absence of induced stresses is calculated using Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*Change in Temperature. To calculate Temperature Stress using Temperature Variation in Water Pipe, you need Modulus of Elasticity in Gpa (Egpa), Coefficient of Thermal Expansion (α) & Change in Temperature (Δt). With our tool, you need to enter the respective value for Modulus of Elasticity in Gpa, Coefficient of Thermal Expansion & Change in Temperature and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Thermal Stress?
In this formula, Thermal Stress uses Modulus of Elasticity in Gpa, Coefficient of Thermal Expansion & Change in Temperature. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Thermal Stress = Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion*(Final Temperature-Initial Temperature)
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!