Length of Stroke in Hydraulic Accumulator Solution

STEP 0: Pre-Calculation Summary
Formula Used
Stroke or Lift of Hydraulic Ram = Volume of Hydraulic Accumulator/Area of Ram of Hydraulic Accumulator
L = V/Arha
This formula uses 3 Variables
Variables Used
Stroke or Lift of Hydraulic Ram - (Measured in Meter) - Stroke or Lift of Hydraulic Ram is the vertical distance by which the ram moves up and down in a hydraulic system to transfer energy.
Volume of Hydraulic Accumulator - (Measured in Cubic Meter) - Volume of Hydraulic Accumulator is the amount of fluid that a hydraulic accumulator can hold, providing a buffer against pressure fluctuations in a hydraulic system.
Area of Ram of Hydraulic Accumulator - (Measured in Square Meter) - Area of Ram of Hydraulic Accumulator is the surface area of the ram in a hydraulic accumulator, which affects the overall performance and efficiency of the system.
STEP 1: Convert Input(s) to Base Unit
Volume of Hydraulic Accumulator: 0.09009 Cubic Meter --> 0.09009 Cubic Meter No Conversion Required
Area of Ram of Hydraulic Accumulator: 0.0154 Square Meter --> 0.0154 Square Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
L = V/Arha --> 0.09009/0.0154
Evaluating ... ...
L = 5.85
STEP 3: Convert Result to Output's Unit
5.85 Meter --> No Conversion Required
FINAL ANSWER
5.85 Meter <-- Stroke or Lift of Hydraulic Ram
(Calculation completed in 00.020 seconds)

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Hydraulic Accumulator Calculators

Capacity of Hydraulic Accumulator
​ LaTeX ​ 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
​ LaTeX ​ Go Work Done in Lifting Ram = Pressure Intensity in Hydraulic Accumulator*Area of Ram of Hydraulic Accumulator*Stroke or Lift of Hydraulic Ram
Annular Area of Differential Hydraulic Accumulator
​ LaTeX ​ Go Annular Area of Differential Hydraulic Accumulator = pi/4*(External Diameter of Bush^2-Diameter of Ram^2)
Total Weight of Ram of Hydraulic Accumulator
​ LaTeX ​ Go Total Weight on Hydraulic Accumulator = Pressure Intensity in Hydraulic Accumulator*Area of Ram of Hydraulic Accumulator

Length of Stroke in Hydraulic Accumulator Formula

​LaTeX ​Go
Stroke or Lift of Hydraulic Ram = Volume of Hydraulic Accumulator/Area of Ram of Hydraulic Accumulator
L = V/Arha

How do Hydraulic Ram Work?


A hydraulic ram operates by harnessing the kinetic energy of flowing water to pump a portion of that water to a higher elevation without requiring external power. Initially, water flows into the ram through a drive pipe, gaining velocity as it approaches the device. Once the water reaches a specific speed, the waste valve closes suddenly, creating a pressure surge due to the water hammer effect. This surge forces a portion of the incoming water into the delivery pipe, lifting it to a higher elevation. After the pressure equalizes, the waste valve reopens, allowing more water to enter, and the cycle repeats. This efficient process enables the hydraulic ram to continuously pump water, making it suitable for applications like irrigation and remote water supply systems.

How to Calculate Length of Stroke in Hydraulic Accumulator?

Length of Stroke in Hydraulic Accumulator calculator uses Stroke or Lift of Hydraulic Ram = Volume of Hydraulic Accumulator/Area of Ram of Hydraulic Accumulator to calculate the Stroke or Lift of Hydraulic Ram, Length of Stroke in Hydraulic Accumulator formula is defined as the maximum distance traveled by the piston in a hydraulic accumulator, which is a critical component in hydraulic systems, determining the overall performance and efficiency of the system. Stroke or Lift of Hydraulic Ram is denoted by L symbol.

How to calculate Length of Stroke in Hydraulic Accumulator using this online calculator? To use this online calculator for Length of Stroke in Hydraulic Accumulator, enter Volume of Hydraulic Accumulator (V) & Area of Ram of Hydraulic Accumulator (Arha) and hit the calculate button. Here is how the Length of Stroke in Hydraulic Accumulator calculation can be explained with given input values -> 5.844156 = 0.09009/0.0154.

FAQ

What is Length of Stroke in Hydraulic Accumulator?
Length of Stroke in Hydraulic Accumulator formula is defined as the maximum distance traveled by the piston in a hydraulic accumulator, which is a critical component in hydraulic systems, determining the overall performance and efficiency of the system and is represented as L = V/Arha or Stroke or Lift of Hydraulic Ram = Volume of Hydraulic Accumulator/Area of Ram of Hydraulic Accumulator. Volume of Hydraulic Accumulator is the amount of fluid that a hydraulic accumulator can hold, providing a buffer against pressure fluctuations in a hydraulic system & Area of Ram of Hydraulic Accumulator is the surface area of the ram in a hydraulic accumulator, which affects the overall performance and efficiency of the system.
How to calculate Length of Stroke in Hydraulic Accumulator?
Length of Stroke in Hydraulic Accumulator formula is defined as the maximum distance traveled by the piston in a hydraulic accumulator, which is a critical component in hydraulic systems, determining the overall performance and efficiency of the system is calculated using Stroke or Lift of Hydraulic Ram = Volume of Hydraulic Accumulator/Area of Ram of Hydraulic Accumulator. To calculate Length of Stroke in Hydraulic Accumulator, you need Volume of Hydraulic Accumulator (V) & Area of Ram of Hydraulic Accumulator (Arha). With our tool, you need to enter the respective value for Volume of Hydraulic Accumulator & Area of Ram of Hydraulic Accumulator 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 Stroke or Lift of Hydraulic Ram?
In this formula, Stroke or Lift of Hydraulic Ram uses Volume of Hydraulic Accumulator & Area of Ram of Hydraulic Accumulator. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Stroke or Lift of Hydraulic Ram = (4*Volume of Hydraulic Accumulator)/(pi*Diameter of Ram^2)
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