Specific Weight of Transformer Solution

STEP 0: Pre-Calculation Summary
Formula Used
Specific Weight = Weight/KVA Rating
g = W/KVA
This formula uses 3 Variables
Variables Used
Specific Weight - (Measured in Newton per Cubic Meter) - Specific weight of transformer oil is the ratio of its weight at 20ºC to the weight of the same volume of water at 4ºC. Usually this parameters is not regulated and is within 0.856 to 0.886.
Weight - (Measured in Kilogram) - Weight of transformer depends on the type of transformer, and the size. No single percentage figure would be meaningful.
KVA Rating - (Measured in Watt) - KVA rating of transformer unit represents kilovolt-amperes, or 1,000 volt-amperes.The higher the kVA rating, the more power the generator produces.
STEP 1: Convert Input(s) to Base Unit
Weight: 1895 Kilogram --> 1895 Kilogram No Conversion Required
KVA Rating: 390 Kilovolt Ampere --> 390000 Watt (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
g = W/KVA --> 1895/390000
Evaluating ... ...
g = 0.00485897435897436
STEP 3: Convert Result to Output's Unit
0.00485897435897436 Newton per Cubic Meter --> No Conversion Required
FINAL ANSWER
0.00485897435897436 0.004859 Newton per Cubic Meter <-- Specific Weight
(Calculation completed in 00.004 seconds)

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Created by Jaffer Ahmad Khan
College Of Engineering, Pune (COEP), Pune
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8 Mechanical Specifications Calculators

Area of Core given EMF Induced in Secondary Winding
​ Go Area of Core = EMF Induced in Secondary/(4.44*Supply Frequency*Number of Turns in Secondary*Maximum Flux Density)
Number of Turns in Secondary Winding
​ Go Number of Turns in Secondary = EMF Induced in Secondary/(4.44*Supply Frequency*Area of Core*Maximum Flux Density)
Area of Core given EMF Induced in Primary Winding
​ Go Area of Core = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary*Maximum Flux Density)
Number of Turns in Primary Winding
​ Go Number of Turns in Primary = EMF Induced in Primary/(4.44*Supply Frequency*Area of Core*Maximum Flux Density)
Stacking Factor of Transformer
​ Go Stacking Factor of Transformer = Net Cross Sectional Area/Gross Cross Sectional Area
Number of Turns in Secondary Winding given Transformation Ratio
​ Go Number of Turns in Secondary = Number of Turns in Primary*Transformation Ratio
Number of Turns in Primary Winding given Transformation Ratio
​ Go Number of Turns in Primary = Number of Turns in Secondary/Transformation Ratio
Specific Weight of Transformer
​ Go Specific Weight = Weight/KVA Rating

Specific Weight of Transformer Formula

Specific Weight = Weight/KVA Rating
g = W/KVA

What is specific weight of transformer oil?

Specific weight of transformer oil is the ratio of its weight at 20ºC to the weight of the same volume of water at 4ºC. Usually this parameters is not regulated and is within 0.856 to 0.886. If the oil is heated, its specific weight decreases, and vise versa when the oil is cold.

How to Calculate Specific Weight of Transformer?

Specific Weight of Transformer calculator uses Specific Weight = Weight/KVA Rating to calculate the Specific Weight, Specific weight of transformer depends on the type of transformer, and the size. No single percentage figure would be meaningful, recognizing the enormous range of transformers ranging from a simple doorbell transformer up to the giants used at power generation plants. Specific Weight is denoted by g symbol.

How to calculate Specific Weight of Transformer using this online calculator? To use this online calculator for Specific Weight of Transformer, enter Weight (W) & KVA Rating (KVA) and hit the calculate button. Here is how the Specific Weight of Transformer calculation can be explained with given input values -> 0.004859 = 1895/390000.

FAQ

What is Specific Weight of Transformer?
Specific weight of transformer depends on the type of transformer, and the size. No single percentage figure would be meaningful, recognizing the enormous range of transformers ranging from a simple doorbell transformer up to the giants used at power generation plants and is represented as g = W/KVA or Specific Weight = Weight/KVA Rating. Weight of transformer depends on the type of transformer, and the size. No single percentage figure would be meaningful & KVA rating of transformer unit represents kilovolt-amperes, or 1,000 volt-amperes.The higher the kVA rating, the more power the generator produces.
How to calculate Specific Weight of Transformer?
Specific weight of transformer depends on the type of transformer, and the size. No single percentage figure would be meaningful, recognizing the enormous range of transformers ranging from a simple doorbell transformer up to the giants used at power generation plants is calculated using Specific Weight = Weight/KVA Rating. To calculate Specific Weight of Transformer, you need Weight (W) & KVA Rating (KVA). With our tool, you need to enter the respective value for Weight & KVA Rating 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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