Time during which Waste Valve Remains Closed-Hydraulic Ram Formula

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Time during Closure of Waste Valve of Ram is the duration for which the waste valve of a hydraulic ram remains closed during its operation. Check FAQs
t2=lsVmax[g](1H-h)
t2 - Time during Closure of Waste Valve of Ram?ls - Length of Supply Pipe of Hydraulic Ram?Vmax - Maximum Velocity in Supply Pipe of Ram?H - Height of Water in Delivery Tank?h - Height of Water in Supply tank?[g] - Gravitational acceleration on Earth?

Time during which Waste Valve Remains Closed-Hydraulic Ram Example

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With units
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Here is how the Time during which Waste Valve Remains Closed-Hydraulic Ram equation looks like with Values.

Here is how the Time during which Waste Valve Remains Closed-Hydraulic Ram equation looks like with Units.

Here is how the Time during which Waste Valve Remains Closed-Hydraulic Ram equation looks like.

0.224Edit=25.7Edit1.5555Edit9.8066(121.5Edit-3.3Edit)
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Time during which Waste Valve Remains Closed-Hydraulic Ram Solution

Follow our step by step solution on how to calculate Time during which Waste Valve Remains Closed-Hydraulic Ram?

FIRST Step Consider the formula
t2=lsVmax[g](1H-h)
Next Step Substitute values of Variables
t2=25.7m1.5555m/s[g](121.5m-3.3m)
Next Step Substitute values of Constants
t2=25.7m1.5555m/s9.8066m/s²(121.5m-3.3m)
Next Step Prepare to Evaluate
t2=25.71.55559.8066(121.5-3.3)
Next Step Evaluate
t2=0.223979218407693s
LAST Step Rounding Answer
t2=0.224s

Time during which Waste Valve Remains Closed-Hydraulic Ram Formula Elements

Variables
Constants
Time during Closure of Waste Valve of Ram
Time during Closure of Waste Valve of Ram is the duration for which the waste valve of a hydraulic ram remains closed during its operation.
Symbol: t2
Measurement: TimeUnit: s
Note: Value should be greater than 0.
Length of Supply Pipe of Hydraulic Ram
Length of Supply Pipe of Hydraulic Ram is the distance of the pipe that supplies fluid to the hydraulic ram in a hydraulic system.
Symbol: ls
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Maximum Velocity in Supply Pipe of Ram
Maximum Velocity in Supply Pipe of Ram is the highest speed of fluid flowing through the supply pipe of a hydraulic ram during its operation.
Symbol: Vmax
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Height of Water in Delivery Tank
Height of Water in Delivery Tank is the vertical distance of water from the bottom of the tank in a hydraulic ram system.
Symbol: H
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Height of Water in Supply tank
Height of Water in Supply tank is the vertical distance of water level in the supply tank of a hydraulic ram system.
Symbol: h
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Gravitational acceleration on Earth
Gravitational acceleration on Earth means that the velocity of an object in free fall will increase by 9.8 m/s2 every second.
Symbol: [g]
Value: 9.80665 m/s²

Other formulas in Hydraulic Ram category

​Go Aubuisson's Efficiency of Hydraulic Ram
ηd=qHQh
​Go Rankine's Efficiency of Hydraulic Ram
ηr=q(H-h)h(Q-q)
​Go Rate of Discharge of Water Actually Lifted by Ram
qa=π4ds2Vmax2t2t
​Go Rate of Discharge of Water Flowing Past Waste Valve
Qwv=π4ds2Vmax2t1t

How to Evaluate Time during which Waste Valve Remains Closed-Hydraulic Ram?

Time during which Waste Valve Remains Closed-Hydraulic Ram evaluator uses Time during Closure of Waste Valve of Ram = Length of Supply Pipe of Hydraulic Ram*Maximum Velocity in Supply Pipe of Ram/[g]*(1/(Height of Water in Delivery Tank-Height of Water in Supply tank)) to evaluate the Time during Closure of Waste Valve of Ram, Time during which Waste Valve Remains Closed-Hydraulic Ram formula is defined as the duration for which the waste valve remains closed in a hydraulic ram system, which is critical in hydraulic actuators and motors, as it affects the overall system's performance and efficiency. Time during Closure of Waste Valve of Ram is denoted by t2 symbol.

How to evaluate Time during which Waste Valve Remains Closed-Hydraulic Ram using this online evaluator? To use this online evaluator for Time during which Waste Valve Remains Closed-Hydraulic Ram, enter Length of Supply Pipe of Hydraulic Ram (ls), Maximum Velocity in Supply Pipe of Ram (Vmax), Height of Water in Delivery Tank (H) & Height of Water in Supply tank (h) and hit the calculate button.

FAQs on Time during which Waste Valve Remains Closed-Hydraulic Ram

What is the formula to find Time during which Waste Valve Remains Closed-Hydraulic Ram?
The formula of Time during which Waste Valve Remains Closed-Hydraulic Ram is expressed as Time during Closure of Waste Valve of Ram = Length of Supply Pipe of Hydraulic Ram*Maximum Velocity in Supply Pipe of Ram/[g]*(1/(Height of Water in Delivery Tank-Height of Water in Supply tank)). Here is an example- 0.223979 = 25.7*1.555488/[g]*(1/(21.5-3.3)).
How to calculate Time during which Waste Valve Remains Closed-Hydraulic Ram?
With Length of Supply Pipe of Hydraulic Ram (ls), Maximum Velocity in Supply Pipe of Ram (Vmax), Height of Water in Delivery Tank (H) & Height of Water in Supply tank (h) we can find Time during which Waste Valve Remains Closed-Hydraulic Ram using the formula - Time during Closure of Waste Valve of Ram = Length of Supply Pipe of Hydraulic Ram*Maximum Velocity in Supply Pipe of Ram/[g]*(1/(Height of Water in Delivery Tank-Height of Water in Supply tank)). This formula also uses Gravitational acceleration on Earth constant(s).
Can the Time during which Waste Valve Remains Closed-Hydraulic Ram be negative?
No, the Time during which Waste Valve Remains Closed-Hydraulic Ram, measured in Time cannot be negative.
Which unit is used to measure Time during which Waste Valve Remains Closed-Hydraulic Ram?
Time during which Waste Valve Remains Closed-Hydraulic Ram is usually measured using the Second[s] for Time. Millisecond[s], Microsecond[s], Nanosecond[s] are the few other units in which Time during which Waste Valve Remains Closed-Hydraulic Ram can be measured.
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