Energy Supplied by Supply Tank to Hydraulic Ram Solution

STEP 0: Pre-Calculation Summary
Formula Used
Energy Supplied to Hydraulic Ram = Weight of Water Flowing per Second*Height of Water in Supply tank
Es = W*h
This formula uses 3 Variables
Variables Used
Energy Supplied to Hydraulic Ram - (Measured in Joule) - Energy Supplied to Hydraulic Ram is the amount of energy transferred to the hydraulic ram, which is a mechanical device that uses pressure to lift or move heavy loads.
Weight of Water Flowing per Second - (Measured in Newton) - Weight of Water Flowing per Second is the amount of water flowing per second in a hydraulic ram system, typically measured in kilograms per second.
Height of Water in Supply tank - (Measured in Meter) - Height of Water in Supply tank is the vertical distance of water level in the supply tank of a hydraulic ram system.
STEP 1: Convert Input(s) to Base Unit
Weight of Water Flowing per Second: 2300 Newton --> 2300 Newton No Conversion Required
Height of Water in Supply tank: 3.3 Meter --> 3.3 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Es = W*h --> 2300*3.3
Evaluating ... ...
Es = 7590
STEP 3: Convert Result to Output's Unit
7590 Joule --> No Conversion Required
FINAL ANSWER
7590 Joule <-- Energy Supplied to Hydraulic Ram
(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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Hydraulic Ram Calculators

Rankine's Efficiency of Hydraulic Ram
​ LaTeX ​ Go Rankine's Efficiency = (Discharge from Valve Box*(Height of Water in Delivery Tank-Height of Water in Supply tank))/(Height of Water in Supply tank*(Discharge from Supply Tank-Discharge from Valve Box))
Rate of Discharge of Water Flowing Past Waste Valve
​ LaTeX ​ Go Discharge of Water Flowing Past Waste Valve = pi/4*Diameter of Supply Pipe in Ram^2*Maximum Velocity in Supply Pipe of Ram/2*Time to Build Maximum Velocity in Supply Pipe/Total Time for One Cycle of Ram
Rate of Discharge of Water Actually Lifted by Ram
​ LaTeX ​ Go Discharge of Water Lifted by Ram = pi/4*Diameter of Supply Pipe in Ram^2*Maximum Velocity in Supply Pipe of Ram/2*Time during Closure of Waste Valve of Ram/Total Time for One Cycle of Ram
Aubuisson's Efficiency of Hydraulic Ram
​ LaTeX ​ Go D’Aubuisson’s Efficiency = (Discharge from Valve Box*Height of Water in Delivery Tank)/(Discharge from Supply Tank*Height of Water in Supply tank)

Energy Supplied by Supply Tank to Hydraulic Ram Formula

​LaTeX ​Go
Energy Supplied to Hydraulic Ram = Weight of Water Flowing per Second*Height of Water in Supply tank
Es = W*h

What is Overall Efficiency?

Overall efficiency is the ratio of the total useful output to the total input energy of a system, expressed as a percentage. It accounts for all energy conversions and losses within the system, including mechanical, electrical, and thermal inefficiencies. High overall efficiency indicates that the system effectively utilizes the input energy with minimal waste. This measure is important for evaluating the performance of complex systems, such as engines, power plants, or industrial processes, where multiple stages of energy transformation occur.






How to Calculate Energy Supplied by Supply Tank to Hydraulic Ram?

Energy Supplied by Supply Tank to Hydraulic Ram calculator uses Energy Supplied to Hydraulic Ram = Weight of Water Flowing per Second*Height of Water in Supply tank to calculate the Energy Supplied to Hydraulic Ram, Energy Supplied by Supply Tank to Hydraulic Ram formula is defined as the total energy provided by the supply tank to the hydraulic ram, which is a critical component in hydraulic actuation systems, enabling the efficient transmission of power and motion in various industrial and mobile applications. Energy Supplied to Hydraulic Ram is denoted by Es symbol.

How to calculate Energy Supplied by Supply Tank to Hydraulic Ram using this online calculator? To use this online calculator for Energy Supplied by Supply Tank to Hydraulic Ram, enter Weight of Water Flowing per Second (W) & Height of Water in Supply tank (h) and hit the calculate button. Here is how the Energy Supplied by Supply Tank to Hydraulic Ram calculation can be explained with given input values -> 7590 = 2300*3.3.

FAQ

What is Energy Supplied by Supply Tank to Hydraulic Ram?
Energy Supplied by Supply Tank to Hydraulic Ram formula is defined as the total energy provided by the supply tank to the hydraulic ram, which is a critical component in hydraulic actuation systems, enabling the efficient transmission of power and motion in various industrial and mobile applications and is represented as Es = W*h or Energy Supplied to Hydraulic Ram = Weight of Water Flowing per Second*Height of Water in Supply tank. Weight of Water Flowing per Second is the amount of water flowing per second in a hydraulic ram system, typically measured in kilograms per second & Height of Water in Supply tank is the vertical distance of water level in the supply tank of a hydraulic ram system.
How to calculate Energy Supplied by Supply Tank to Hydraulic Ram?
Energy Supplied by Supply Tank to Hydraulic Ram formula is defined as the total energy provided by the supply tank to the hydraulic ram, which is a critical component in hydraulic actuation systems, enabling the efficient transmission of power and motion in various industrial and mobile applications is calculated using Energy Supplied to Hydraulic Ram = Weight of Water Flowing per Second*Height of Water in Supply tank. To calculate Energy Supplied by Supply Tank to Hydraulic Ram, you need Weight of Water Flowing per Second (W) & Height of Water in Supply tank (h). With our tool, you need to enter the respective value for Weight of Water Flowing per Second & Height of Water in Supply tank 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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