Initial Temperature of Pipe Solution

STEP 0: Pre-Calculation Summary
Formula Used
Initial Temperature = Final Temperature-(Thermal Stress/(Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion))
ti = Tf-(σt/(Egpa*α))
This formula uses 5 Variables
Variables Used
Initial Temperature - (Measured in Kelvin) - Initial Temperature is the measure of hotness or coldness of a system at its initial state.
Final Temperature - (Measured in Kelvin) - Final Temperature is change in temperature to your substance's original temperature to find its final heat.
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.
STEP 1: Convert Input(s) to Base Unit
Final Temperature: 22 Celsius --> 295.15 Kelvin (Check conversion ​here)
Thermal Stress: 1.4 Gigapascal --> 1400000000 Pascal (Check conversion ​here)
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)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ti = Tf-(σt/(Egpa*α)) --> 295.15-(1400000000/(200000000000*0.000434))
Evaluating ... ...
ti = 279.020967741935
STEP 3: Convert Result to Output's Unit
279.020967741935 Kelvin -->5.87096774193549 Celsius (Check conversion ​here)
FINAL ANSWER
5.87096774193549 5.870968 Celsius <-- Initial Temperature
(Calculation completed in 00.020 seconds)

Credits

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Created by Suraj Kumar
Birsa Institute of Technology (BIT), Sindri
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Meerut Institute of Engineering and Technology (MIET), Meerut
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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

Initial Temperature of Pipe Formula

​LaTeX ​Go
Initial Temperature = Final Temperature-(Thermal Stress/(Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion))
ti = Tf-(σt/(Egpa*α))

What is Thermal Stress?

In mechanics and thermodynamics, thermal stress is mechanical stress created by any change in temperature of a material. These stresses can lead to fracturing or plastic deformation depending on the other variables of heating, which include material types and constraints.

How to Calculate Initial Temperature of Pipe?

Initial Temperature of Pipe calculator uses Initial Temperature = Final Temperature-(Thermal Stress/(Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion)) to calculate the Initial Temperature, The Initial Temperature of Pipe formula is defined as the value of starting temperature of a pipe before any external influences or operations affect it. This parameter is significant because it can impact various properties and behaviors of the pipe material and the fluid or gas flowing through it. Initial Temperature is denoted by ti symbol.

How to calculate Initial Temperature of Pipe using this online calculator? To use this online calculator for Initial Temperature of Pipe, enter Final Temperature (Tf), Thermal Stress t), Modulus of Elasticity in Gpa (Egpa) & Coefficient of Thermal Expansion (α) and hit the calculate button. Here is how the Initial Temperature of Pipe calculation can be explained with given input values -> -267.279032 = 295.15-(1400000000/(200000000000*0.000434)).

FAQ

What is Initial Temperature of Pipe?
The Initial Temperature of Pipe formula is defined as the value of starting temperature of a pipe before any external influences or operations affect it. This parameter is significant because it can impact various properties and behaviors of the pipe material and the fluid or gas flowing through it and is represented as ti = Tf-(σt/(Egpa*α)) or Initial Temperature = Final Temperature-(Thermal Stress/(Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion)). Final Temperature is change in temperature to your substance's original temperature to find its final heat, 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 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.
How to calculate Initial Temperature of Pipe?
The Initial Temperature of Pipe formula is defined as the value of starting temperature of a pipe before any external influences or operations affect it. This parameter is significant because it can impact various properties and behaviors of the pipe material and the fluid or gas flowing through it is calculated using Initial Temperature = Final Temperature-(Thermal Stress/(Modulus of Elasticity in Gpa*Coefficient of Thermal Expansion)). To calculate Initial Temperature of Pipe, you need Final Temperature (Tf), Thermal Stress t), Modulus of Elasticity in Gpa (Egpa) & Coefficient of Thermal Expansion (α). With our tool, you need to enter the respective value for Final Temperature, Thermal Stress, Modulus of Elasticity in Gpa & Coefficient of Thermal Expansion 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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