Pressure Head of Water Supplied in Hydraulic Accumulator Solution

STEP 0: Pre-Calculation Summary
Formula Used
Pressure Head in Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator/(Water Density*Acceleration Due to Gravity)
hp = Pha/(ρwater*g)
This formula uses 4 Variables
Variables Used
Pressure Head in Hydraulic Accumulator - (Measured in Meter) - Pressure Head in Hydraulic Accumulator is the height of a liquid column that corresponds to a particular pressure exerted by the liquid column on the base of its container.
Pressure Intensity in Hydraulic Accumulator - (Measured in Pascal) - Pressure Intensity in Hydraulic Accumulator at a point is defined as the intensity of fluid pressure supplied by pump in the hydraulic accumulator.
Water Density - (Measured in Kilogram per Cubic Meter) - Water Density is mass per unit of water.
Acceleration Due to Gravity - (Measured in Meter per Square Second) - Acceleration Due to Gravity is acceleration gained by an object because of gravitational force.
STEP 1: Convert Input(s) to Base Unit
Pressure Intensity in Hydraulic Accumulator: 420000 Newton per Square Meter --> 420000 Pascal (Check conversion here)
Water Density: 1000 Kilogram per Cubic Meter --> 1000 Kilogram per Cubic Meter No Conversion Required
Acceleration Due to Gravity: 9.8 Meter per Square Second --> 9.8 Meter per Square Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
hp = Pha/(ρwater*g) --> 420000/(1000*9.8)
Evaluating ... ...
hp = 42.8571428571429
STEP 3: Convert Result to Output's Unit
42.8571428571429 Meter --> No Conversion Required
FINAL ANSWER
42.8571428571429 42.85714 Meter <-- Pressure Head in Hydraulic Accumulator
(Calculation completed in 00.004 seconds)

Credits

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velagapudi ramakrishna siddhartha engineering college (vr siddhartha engineering college), vijayawada
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13 Hydraulic Accumulator Calculators

Capacity of Hydraulic Accumulator
Go Capacity of Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator*Area of Ram of Hydraulic Accumulator*Stroke or Lift of Hydraulic Ram
Work Done in Lifting Ram of Hydraulic Accumulator
Go Work Done in Lifting Ram = Pressure Intensity in Hydraulic Accumulator*Area of Ram of Hydraulic Accumulator*Stroke or Lift of Hydraulic Ram
Pressure Head of Water Supplied in Hydraulic Accumulator
Go Pressure Head in Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator/(Water Density*Acceleration Due to Gravity)
Total Weight Placed on Differentail Hydraulic Ram Including Weight of Hydraulic Ram
Go Total Weight on Differential Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator*Annular Area of Differential Hydraulic Accumulator
Annular Area of Differential Hydraulic Accumulator
Go Annular Area of Differential Hydraulic Accumulator = pi/4*(External Diameter of Bush^2-Diameter of Ram^2)
Length of Stroke given Diameter of Plunger
Go Stroke or Lift of Hydraulic Ram = (4*Volume of Hydraulic Accumulator)/(pi*Diameter of Ram^2)
Total Energy Stored in Differential Hydraulic Accumulator
Go Total Energy in Hydraulic Accumulator = Total Weight on Differential Hydraulic Accumulator*Stroke or Lift of Hydraulic Ram
Total Weight of Ram of Hydraulic Accumulator
Go Total Weight on Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator*Area of Ram of Hydraulic Accumulator
Capacity of Hydraulic Accumulator given Volume
Go Capacity of Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator*Volume of Hydraulic Accumulator
Distance Moved by Hydraulic Ram per Second
Go Distance Moved by Ram per Second = Stroke or Lift of Hydraulic Ram/Time Taken by Hydraulic Ram for One Stroke
Length of Stroke in Hydraulic Accumulator
Go Stroke or Lift of Hydraulic Ram = Volume of Hydraulic Accumulator/Area of Ram of Hydraulic Accumulator
Volume of Hydraulic Accumulator
Go Volume of Hydraulic Accumulator = Area of Ram of Hydraulic Accumulator*Stroke or Lift of Hydraulic Ram
Work Supplied by Hydraulic Accumulator
Go Work Done in Lifting Ram = Total Weight on Hydraulic Accumulator*Stroke or Lift of Hydraulic Ram

Pressure Head of Water Supplied in Hydraulic Accumulator Formula

Pressure Head in Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator/(Water Density*Acceleration Due to Gravity)
hp = Pha/(ρwater*g)

What is the difference between pressure and pressure head?

By definition, 'Head' is a measure of energy. The units of energy are feet (or meters). 'Pressure' is a force applied against a unit of area such as a pound of force applied to a square inch of area (psi).

Can you have a negative pressure head?

Negative head is a condition of negative pressure or vacuum which occurs when the pump outlet is at the same level or above the level of the cold water storage tank.

How to Calculate Pressure Head of Water Supplied in Hydraulic Accumulator?

Pressure Head of Water Supplied in Hydraulic Accumulator calculator uses Pressure Head in Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator/(Water Density*Acceleration Due to Gravity) to calculate the Pressure Head in Hydraulic Accumulator, The Pressure head of water supplied in hydraulic accumulator formula is defined as the height of a liquid column that corresponds to a particular pressure exerted by the liquid column on the base of its container. Pressure Head in Hydraulic Accumulator is denoted by hp symbol.

How to calculate Pressure Head of Water Supplied in Hydraulic Accumulator using this online calculator? To use this online calculator for Pressure Head of Water Supplied in Hydraulic Accumulator, enter Pressure Intensity in Hydraulic Accumulator (Pha), Water Density water) & Acceleration Due to Gravity (g) and hit the calculate button. Here is how the Pressure Head of Water Supplied in Hydraulic Accumulator calculation can be explained with given input values -> 42.85714 = 420000/(1000*9.8).

FAQ

What is Pressure Head of Water Supplied in Hydraulic Accumulator?
The Pressure head of water supplied in hydraulic accumulator formula is defined as the height of a liquid column that corresponds to a particular pressure exerted by the liquid column on the base of its container and is represented as hp = Pha/(ρwater*g) or Pressure Head in Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator/(Water Density*Acceleration Due to Gravity). Pressure Intensity in Hydraulic Accumulator at a point is defined as the intensity of fluid pressure supplied by pump in the hydraulic accumulator, Water Density is mass per unit of water & Acceleration Due to Gravity is acceleration gained by an object because of gravitational force.
How to calculate Pressure Head of Water Supplied in Hydraulic Accumulator?
The Pressure head of water supplied in hydraulic accumulator formula is defined as the height of a liquid column that corresponds to a particular pressure exerted by the liquid column on the base of its container is calculated using Pressure Head in Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator/(Water Density*Acceleration Due to Gravity). To calculate Pressure Head of Water Supplied in Hydraulic Accumulator, you need Pressure Intensity in Hydraulic Accumulator (Pha), Water Density water) & Acceleration Due to Gravity (g). With our tool, you need to enter the respective value for Pressure Intensity in Hydraulic Accumulator, Water Density & Acceleration Due to Gravity 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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