Saturation Pressure Corresponding to Wet Bulb Temperature Formula

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Saturation Pressure Corresponding to WBT (Wet Bulb Temperature) is the pressure that can be found from the steam table corresponding to wet bulb temperature. Check FAQs
pw=pv+pt(tdb-Tw1544-1.44Tw)1+(tdb-Tw1544-1.44Tw)
pw - Saturation Pressure Corresponding to WBT?pv - Pressure of Water Vapor?pt - Total Pressure of Moist Air?tdb - Dry Bulb Temperature in °C?Tw - Wet Bulb Temperature?

Saturation Pressure Corresponding to Wet Bulb Temperature Example

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With units
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Here is how the Saturation Pressure Corresponding to Wet Bulb Temperature equation looks like with Values.

Here is how the Saturation Pressure Corresponding to Wet Bulb Temperature equation looks like with Units.

Here is how the Saturation Pressure Corresponding to Wet Bulb Temperature equation looks like.

200.3011Edit=60Edit+100Edit(110Edit-753Edit1544-1.44753Edit)1+(110Edit-753Edit1544-1.44753Edit)
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Saturation Pressure Corresponding to Wet Bulb Temperature Solution

Follow our step by step solution on how to calculate Saturation Pressure Corresponding to Wet Bulb Temperature?

FIRST Step Consider the formula
pw=pv+pt(tdb-Tw1544-1.44Tw)1+(tdb-Tw1544-1.44Tw)
Next Step Substitute values of Variables
pw=60Bar+100Bar(110-7531544-1.44753)1+(110-7531544-1.44753)
Next Step Convert Units
pw=6E+6Pa+1E+7Pa(110-7531544-1.44753)1+(110-7531544-1.44753)
Next Step Prepare to Evaluate
pw=6E+6+1E+7(110-7531544-1.44753)1+(110-7531544-1.44753)
Next Step Evaluate
pw=20030111.2808204Pa
Next Step Convert to Output's Unit
pw=200.301112808204Bar
LAST Step Rounding Answer
pw=200.3011Bar

Saturation Pressure Corresponding to Wet Bulb Temperature Formula Elements

Variables
Saturation Pressure Corresponding to WBT
Saturation Pressure Corresponding to WBT (Wet Bulb Temperature) is the pressure that can be found from the steam table corresponding to wet bulb temperature.
Symbol: pw
Measurement: PressureUnit: Bar
Note: Value can be positive or negative.
Pressure of Water Vapor
Pressure of Water Vapor is the pressure exerted by the water vapor in the moist air or the mixture of dry air and water vapor.
Symbol: pv
Measurement: PressureUnit: Bar
Note: Value can be positive or negative.
Total Pressure of Moist Air
Total Pressure of Moist Air is the pressure exerted by the mixture of air and water vapor which is equal to the sum of the respected pressures. It is also called barometric pressure.
Symbol: pt
Measurement: PressureUnit: Bar
Note: Value can be positive or negative.
Dry Bulb Temperature in °C
Dry bulb temperature in °C is the temperature of air measured by a thermometer freely exposed to the air but shielded from radiation and moisture.
Symbol: tdb
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Wet Bulb Temperature
Wet Bulb Temperature is the temperature of the wet bulb and denoted by the symbol Tw.
Symbol: Tw
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Pressure of Water Vapor category

​Go Partial Pressure of Water Vapor
pv=pw-(pt-pw)(tdb-Tw)1544-1.44Tw
​Go Dry Bulb Temperature using Carrier's Equation
tdb=((pw-pv)1544-1.44Twpt-pw)+Tw
​Go Wet Bulb Temperature using Carrier's Equation
Tw=1544(pw-pv)-tdb(pt-pw)1.44(pw-pv)-(pt-pw)
​Go Total Pressure of Moist Air using Carrier's Equation
pt=(pw-pv)(1544-1.44Tw)tdb-Tw+pw

How to Evaluate Saturation Pressure Corresponding to Wet Bulb Temperature?

Saturation Pressure Corresponding to Wet Bulb Temperature evaluator uses Saturation Pressure Corresponding to WBT = (Pressure of Water Vapor+Total Pressure of Moist Air*((Dry Bulb Temperature in °C-Wet Bulb Temperature)/(1544-1.44*Wet Bulb Temperature)))/(1+((Dry Bulb Temperature in °C-Wet Bulb Temperature)/(1544-1.44*Wet Bulb Temperature))) to evaluate the Saturation Pressure Corresponding to WBT, The Saturation pressure corresponding to wet bulb temperature formula calculates the pressure corresponding to the wet-bulb temperature by using the carrier's equation. Saturation Pressure Corresponding to WBT is denoted by pw symbol.

How to evaluate Saturation Pressure Corresponding to Wet Bulb Temperature using this online evaluator? To use this online evaluator for Saturation Pressure Corresponding to Wet Bulb Temperature, enter Pressure of Water Vapor (pv), Total Pressure of Moist Air (pt), Dry Bulb Temperature in °C (tdb) & Wet Bulb Temperature (Tw) and hit the calculate button.

FAQs on Saturation Pressure Corresponding to Wet Bulb Temperature

What is the formula to find Saturation Pressure Corresponding to Wet Bulb Temperature?
The formula of Saturation Pressure Corresponding to Wet Bulb Temperature is expressed as Saturation Pressure Corresponding to WBT = (Pressure of Water Vapor+Total Pressure of Moist Air*((Dry Bulb Temperature in °C-Wet Bulb Temperature)/(1544-1.44*Wet Bulb Temperature)))/(1+((Dry Bulb Temperature in °C-Wet Bulb Temperature)/(1544-1.44*Wet Bulb Temperature))). Here is an example- 0.000624 = (6000000+10000000*((110-753)/(1544-1.44*753)))/(1+((110-753)/(1544-1.44*753))).
How to calculate Saturation Pressure Corresponding to Wet Bulb Temperature?
With Pressure of Water Vapor (pv), Total Pressure of Moist Air (pt), Dry Bulb Temperature in °C (tdb) & Wet Bulb Temperature (Tw) we can find Saturation Pressure Corresponding to Wet Bulb Temperature using the formula - Saturation Pressure Corresponding to WBT = (Pressure of Water Vapor+Total Pressure of Moist Air*((Dry Bulb Temperature in °C-Wet Bulb Temperature)/(1544-1.44*Wet Bulb Temperature)))/(1+((Dry Bulb Temperature in °C-Wet Bulb Temperature)/(1544-1.44*Wet Bulb Temperature))).
Can the Saturation Pressure Corresponding to Wet Bulb Temperature be negative?
Yes, the Saturation Pressure Corresponding to Wet Bulb Temperature, measured in Pressure can be negative.
Which unit is used to measure Saturation Pressure Corresponding to Wet Bulb Temperature?
Saturation Pressure Corresponding to Wet Bulb Temperature is usually measured using the Bar[Bar] for Pressure. Pascal[Bar], Kilopascal[Bar], Pound Per Square Inch[Bar] are the few other units in which Saturation Pressure Corresponding to Wet Bulb Temperature can be measured.
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