Vertical Depth below Surface for Gauge Pressure at any point in Liquid Solution

STEP 0: Pre-Calculation Summary
Formula Used
Height of Crack = Gauge Pressure for Horizontal/Specific Weight of Liquid
h = Pg,H/y
This formula uses 3 Variables
Variables Used
Height of Crack - (Measured in Meter) - Height of Crack is the size of a flaw or crack in a material that can lead to catastrophic failure under a given stress.
Gauge Pressure for Horizontal - (Measured in Pascal) - Gauge Pressure for Horizontal is the amount by which the pressure measured in a fluid exceeds that of the atmosphere.
Specific Weight of Liquid - (Measured in Newton per Cubic Meter) - The Specific weight of liquid is also known as the unit weight, is the weight per unit volume of the liquid. For Example - Specific weight of water on Earth at 4°C is 9.807 kN/m3 or 62.43 lbf/ft3.
STEP 1: Convert Input(s) to Base Unit
Gauge Pressure for Horizontal: 117818 Pascal --> 117818 Pascal No Conversion Required
Specific Weight of Liquid: 9.81 Kilonewton per Cubic Meter --> 9810 Newton per Cubic Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
h = Pg,H/y --> 117818/9810
Evaluating ... ...
h = 12.0099898063201
STEP 3: Convert Result to Output's Unit
12.0099898063201 Meter -->12009.9898063201 Millimeter (Check conversion here)
FINAL ANSWER
12009.9898063201 12009.99 Millimeter <-- Height of Crack
(Calculation completed in 00.004 seconds)

Credits

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National Institute of Technology Karnataka (NITK), Surathkal
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11 Liquid Containers Subjected To Constant Horizontal Acceleration Calculators

Width of Tank Perpendicular to Motion given Total Force Exerted at Any Section of Tank
Go Width of Section = 2*Force on Cylinder/(Specific Weight of Liquid*Height of Crack*Height of Crack)
Specific Weight of Liquid given Total Force exerted at any Section of Container
Go Specific Weight of Liquid = 2*Force on Cylinder/(Width of Section*Height of Crack*Height of Crack)
Vertical Depth below Free Surface given Total Force exerted at any Section of Container
Go Height of Crack = sqrt(2*Force on Cylinder/Specific Weight of Liquid*Width of Section)
Pressure at Any Points in Liquid
Go Absolute Pressure for Both Direction = Atmospheric Pressure+Specific Weight of Liquid*Height of Crack
Total Force Exerted at Any Section on Container
Go Force on Cylinder = 0.5*Specific Weight of Liquid*Width of Section*Height of Crack^2
Angle of Inclination of Free Surface
Go Angle of Inclination = arctan(Constant Horizontal Acceleration/[g])
Constant Horizontal Acceleration given Angle of Inclination of Free Surface
Go Constant Horizontal Acceleration = tan(Angle of Inclination)*[g]
Constant Horizontal Acceleration given Slope of Surface of Constant Pressure
Go Constant Horizontal Acceleration = Slope of Surface of Constant Pressure*[g]
Vertical Depth below Surface for Gauge Pressure at any point in Liquid
Go Height of Crack = Gauge Pressure for Horizontal/Specific Weight of Liquid
Specific Weight of liquid for Gauge Pressure at point in liquid
Go Specific Weight of Liquid = Gauge Pressure for Horizontal/Height of Crack
Gauge Pressure at Any Point in Liquid with Height
Go Gauge Pressure for Horizontal = Specific Weight of Liquid*Height of Crack

Vertical Depth below Surface for Gauge Pressure at any point in Liquid Formula

Height of Crack = Gauge Pressure for Horizontal/Specific Weight of Liquid
h = Pg,H/y

What is Pressure ?

Pressure is the force applied perpendicular to the surface of an object per unit area over which that force is distributed. Gauge pressure is the pressure relative to the ambient pressure. Various units are used to express pressure.

How to Calculate Vertical Depth below Surface for Gauge Pressure at any point in Liquid?

Vertical Depth below Surface for Gauge Pressure at any point in Liquid calculator uses Height of Crack = Gauge Pressure for Horizontal/Specific Weight of Liquid to calculate the Height of Crack, The Vertical Depth below Surface for Gauge Pressure at any point in Liquid is defined as depth from free surface where pressure is calculated. Height of Crack is denoted by h symbol.

How to calculate Vertical Depth below Surface for Gauge Pressure at any point in Liquid using this online calculator? To use this online calculator for Vertical Depth below Surface for Gauge Pressure at any point in Liquid, enter Gauge Pressure for Horizontal (Pg,H) & Specific Weight of Liquid (y) and hit the calculate button. Here is how the Vertical Depth below Surface for Gauge Pressure at any point in Liquid calculation can be explained with given input values -> 12.00999 = 117818/9810.

FAQ

What is Vertical Depth below Surface for Gauge Pressure at any point in Liquid?
The Vertical Depth below Surface for Gauge Pressure at any point in Liquid is defined as depth from free surface where pressure is calculated and is represented as h = Pg,H/y or Height of Crack = Gauge Pressure for Horizontal/Specific Weight of Liquid. Gauge Pressure for Horizontal is the amount by which the pressure measured in a fluid exceeds that of the atmosphere & The Specific weight of liquid is also known as the unit weight, is the weight per unit volume of the liquid. For Example - Specific weight of water on Earth at 4°C is 9.807 kN/m3 or 62.43 lbf/ft3.
How to calculate Vertical Depth below Surface for Gauge Pressure at any point in Liquid?
The Vertical Depth below Surface for Gauge Pressure at any point in Liquid is defined as depth from free surface where pressure is calculated is calculated using Height of Crack = Gauge Pressure for Horizontal/Specific Weight of Liquid. To calculate Vertical Depth below Surface for Gauge Pressure at any point in Liquid, you need Gauge Pressure for Horizontal (Pg,H) & Specific Weight of Liquid (y). With our tool, you need to enter the respective value for Gauge Pressure for Horizontal & Specific Weight of Liquid 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 Height of Crack?
In this formula, Height of Crack uses Gauge Pressure for Horizontal & Specific Weight of Liquid. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Height of Crack = sqrt(2*Force on Cylinder/Specific Weight of Liquid*Width of Section)
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