Steam Point



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Steam Point Generator

Steam table with sensible, latent and total heat, and specific volume at different gauge pressures and temperatures

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Sensible, latent and total heat in evaporated water - steam - at different gauge pressures and boiling temperatures.

Gauge Pressure
(psig)
Temperature
(oF)
Specific Volume Saturated Vapor
(ft3/lb)
Enthalpy
Saturated Liquid
(Btu/lb)
Evaporated
(Btu/lb)
Saturated Vapor
(Btu/lb)
25
(Inches Mercury Vacuum)
13414210210171119
20
(Inches Mercury Vacuum)
16273.912910011130
15
(Inches Mercury Vacuum)
17951.31479901137
10
(Inches Mercury Vacuum)
19239.41609821142
5
(Inches Mercury Vacuum)
20331.81719761147
0 1)21226.81809701150
121525.21839681151
221923.51879661153
322222.31909641154
422421.41929621154
522720.11959601155
623019.41989591157
723218.72009571157
823318.42019561157
923717.12059541159
1023916.52079531160
1224415.32129491161
1424814.32169471163
1625213.42209441164
1825612.62249411165
2025911.92279391166
2226211.32309371167
2426510.82339341167
2626810.32369331169
282719.852399301169
302749.462439291172
322779.12469271173
342798.752489251173
362828.422519231174
382848.082539221175
402867.822569201176
422897.572589181176
442917.312609171177
462937.142629151177
482956.942649141178
502986.682679121179
553006.272719091180
603075.842779061183
653125.492829011183
703165.182868981184
753204.912908951185
803244.672948911185
853284.442988891187
903314.243028861188
953354.053058831188
1003383.893098801189
1053413.743128781190
1103443.593168751191
1153473.463198731192
1203503.343228711193
1253533.233258681193
1303563.123288661194
1353583.023308641194
1403612.923338611194
1453632.843368591195
1503662.743398571196
1553682.683418551196
1603712.63448531197
1653732.543468511197
1703752.473488491197
1753772.413518471198
1803802.353538451198
1853822.293558431198
1903842.243588411199
1953862.193608391199
2003882.143628371199
2053902.093648361200
2103922.053668341200
21539423688321200
2203961.963708301200
2253971.923728281200
2303991.893748271201
2354011.853768251201
2404031.813788231201
2454041.783808221202
2504061.753828201202
2554081.723838191202
2604091.693858171202
2654111.663878151202
2704131.633898141203
2754141.63918121203
2804161.573928111203
2854171.553948091203
2904181.533958081203
2954201.493978061203
3004211.473988051203
3054231.454008031203
3104251.434028021204
3154261.414048001204
3204271.384057991204
3254291.364077971204
3304301.344087961204
3354321.334107941204
3404331.314117931204
3454341.294137911204
3504351.284147901204
3554371.264167891205
3604381.244177881205
3654401.224197861205
3704411.24207851205
3754421.194217841205
3804431.184227831205
3854451.164247811205
3904461.144257801205
3954471.134277781205
4004481.124287771205
45046014397661205
5004700.894537511204
5504790.824647401204
6004890.744757281203
6504970.694837191202
7005050.644917101201
7505130.65046961200
8005200.565126861198
9005340.495296661195
10005460.445446471191
12505740.345806001180
15005970.276105571167
17506180.226425091151
20006360.196724621134
22506540.167014131114
25006690.137333581091
27506830.117642951059
30006960.088042131017
3206.22)705.40----

1) Atmospheric pressure is used for the table except for 2)

2)Critical Point - At 3206.2 psia and 705.40 oF the vapor and liquid are indistinguishable. No change of state occurs when pressure increases above the critical point or when heat is added. At the critical point it is no longer referred to water or steam and it is not possible keep the water and steam apart.

  • 1 psi (lbf/in2) = 6894.8 Pa (N/m2) = 0.06895 bar

Note! Gauge Pressure = Absolute Pressure - Atmospheric Pressure

Steam Point

NTP - Normal Temperature and Pressure - is defined as 20oC (293.15 K, 68oF) and 1 atm ( 101.325 kN/m2, 101.325 kPa, 14.7 psia, 0 psig, 30 in Hg, 760 torr) Ecotec driver download for windows 10.

  • Vacuum steam is the general term used for saturated steam at temperatures below 100°C.

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Example - Boiling Water at 212 oF and 0 psig

At atmospheric pressure - 0 psig - water boils at 212 oF. 180 Btu/lb of energy is required to heat 1 lb of water to saturation temperature 212 oF.

Therefore, at 0 psig and 212 oF - the specific enthalpy of water is 180 Btu/lb.
Another 970 Btu/lb of energy is required to evaporate the 1 lb of water at 212 oF to steam at 212 oF. Therefore, at 0 psig - the specific enthalpy of evaporation is970 Btu/lb.

The total specific enthalpy of the steam (or heat required to evaporate water to steam) at atmospheric pressure and 212 oF can be summarized to

hs = (180 Btu/lb) + (970 Btu/lb)

= 1150 Btu/lb

Related Topics

  • Steam and Condensate - Steam & condensate systems- properties, capacities, pipe sizing, systems configuration and more
  • Flash Steam - Flash steam generation - thermodynamic fundamentals, heat loss, energy recovery and more
  • Steam Thermodynamics - Thermodynamics of steam and condensate applications
  • Pipe Sizing - Sizing steam and condensate pipes - pressure loss, recommended velocity, capacity and more

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  • Classification of Steam Heating Systems - Steam systems carries heat through pipes from the boiler to consumers as heat exchangers, process equipment etc.
  • Condensate Lines - Flash Steam - Flash steam produced in condensate pipe lines
  • Design of Steam Heating Systems - An introduction to the basic design of steam heating systems
  • Enthalpy of Superheated Steam - Enthalpy of steam superheated to temperatures above boiling point
  • Enthalpy of Wet Steam - Wet steam, the dryness fraction and enthalpy
  • Evaporation from Water Surface - Evaporation of water from a water surface - like a swimming pool or an open tank - depends on water temperature, air temperature, air humidity and air velocity above the water surface - online calculator
  • Evaporative Cooling - An evaporative cooling tutorial
  • Flash Steam Energy Loss - When flash steam is generated and vented to the surroundings a considerable amount of energy is lost
  • Flash Steam Generation - Fundamental Physics - Tutorial to the basic physics behind flash steam generation
  • Flash Steam Generation - Imperial Units (psig) - When condensate passes steam traps - flash steam is generated
  • Flash Steam Generation - SI-units - When condensate leaves the steam traps - flash steam is generated. Amount of flash steam generated at different pressures - kN/m2
  • Heating Air with Steam - Calculate air heating with steam
  • Heating Water by Injecting Steam - Water can be heated by injecting steam
  • Latent Heat Flow - Latent heat is the heat, when supplied to or removed from air, results in a change in moisture content - the temperature of the air is not changed
  • Mollier Diagram for Water-Steam - Enthalpy-entropy diagram for water and steam
  • Pressure Drop in Steam Pipes - Steam pipes and pressure drop diagrams - imperial and metric units
  • Properties of Saturated Steam - Imperial Units - Steam table with sensible, latent and total heat, and specific volume at different gauge pressures and temperatures
  • Properties of Saturated Steam - Pressure in Bar - Saturated Steam Table with properties like boiling point, specific volume, density, specific enthalpy, specific heat and latent heat of vaporization
  • Properties of Saturated Steam - SI Units - A Saturated Steam Table with steam properties as specific volume, density, specific enthalpy and specific entropy
  • Sizing Steam Pipes (lb/h) - Steam is a compressible gas where the capacity of a pipe line depends on the size of the pipe and the steam pressure.
  • Steam and Vapor Enthalpy - Introduction and definition of vapor and steam enthalpy - specific enthalpy of saturated liquid, saturated vapor and superheated vapor
  • Steam Condensation and Heat Transfer - Heat transfer when condensing steam
  • Steam Entropy - Basic steam thermodynamics and the entropy diagram
  • Steam Pipe - Online Pressure drop Calculator - Calculate pressure drops in steam distribution pipe lines
  • Steam Trap Selection Guide - A steam trap selection guide - Float & Thermostatic, Inverted Bucket, Bimetal Thermostatic, Impulse and Thermodynamic Disc steam traps
  • Steam Viscosity - Absolute viscosity of steam at pressure ranging 1 - 10000 psia
  • STP - Standard Temperature and Pressure & NTP - Normal Temperature and Pressure - The definition of STP - Standard Temperature and Pressure and NTP - Normal Temperature and Pressure
  • Stress in Steam Boiler Shells from Boiler Pressure - Calculate stress in in steam boiler shells caused by steam pressure
  • Vapor and Steam - Introduction to vapor and steam
  • Water - Enthalpy (H) and Entropy (S) - Figures and tables showing the enthalpy and entropy of liquid water as function of temperature - SI and Imperial Units
  • Water - Saturation Pressure and Specific Weight - Vapor pressure and specific weight of water at temperatures ranging 32 to 212 oF - Imperial Units
  • Water - Specific Volume - Online calculator, figures and tables showing Specific Volume of water at temperatures ranging from 0-370 °C and 32 - 700 °F - Imperial and IS Units
  • Water - Thermophysical Properties - Thermal properties of water - density, freezing temperature, boiling temperature, latent heat of melting, latent heat of evaporation, critical temperature and more
  • Wet Steam Quality and Dryness Fraction - Introduction and definition of steam quality and dryness fraction including calculating wet steam enthalpy and specific volume

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  • es: propiedades de vapor calientan presión temperatura volumen específico
  • de: Dampfeigenschaften zu erhitzen Druck spezifische Volumen Temperatur
Steam

Critical point is where vapor and liquid are indistinguishable and triple point is where ice, water and vapor coexist in thermodynamic equilibrium

At the critical point there is no change of state when pressure is increased or if heat is added. At the critical point water and steam can't be distinguished and there is no point referring to water or steam.

The critical point of water is achieved at

  • Water vapor pressure of 217.75 atm = 220.64 bar = 22.064 MPa = 3200.1 psi
  • Temperature of 647.096 K = 373.946 °C = 705.103 °F
  • Critical point density: 0.322 g/cm3 = 0.6248 slug/ft3 = 20.102 lbm/ft3

For states above the critical point the steam is supercritical. Supercritical is not the same as superheated - which is saturated steam at lower pressures and temperatures heated above the saturation temperature.


The triple point of a substance is the temperature and pressure at which the three phases (gas, liquid, and solid) of that substance coexist in thermodynamic equilibrium.

The triple point of water is at

  • Water vapor pressure of 0.00604 atm = 6.12 mbar = 611.657 Pa = 0.08871 psi
  • Temperature 273.16 K = 0.01 °C = 32.02 °F
  • Triple point density (liquid): 0.99979 g/cm3= 1.93991 slug/ft3 = 62.4148 lbm/ft3

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See Water and Heavy Water - for thermodynamic properties.
See also Water Boiling points at high pressure, Boiling points at vacuum pressure, Density, specific weight and thermal expansion coefficient, Dynamic and kinematic viscosity, Enthalpy and entropy, Heat of vaporization, Ionization Constant, pKw, of normal and heavy water, Melting points at high pressure, Saturation pressure, Specific gravity, Specific heat (heat capacity) and Specific volume for online calculatores, figures and tables showing temperature or pressure dependences of the different properties.

Related Topics

  • Steam Thermodynamics - Thermodynamics of steam and condensate applications
  • Material Properties - Material properties for gases, fluids and solids - densities, specific heats, viscosities and more
  • Steam and Condensate - Steam & condensate systems- properties, capacities, pipe sizing, systems configuration and more
  • Thermodynamics - Effects of work, heat and energy on systems
  • Water Systems - Hot and cold water service systems - design properties, capacities, sizing and more
  • Fluid Mechanics - The study of fluids - liquids and gases. Involves velocity, pressure, density and temperature as functions of space and time
Steam Point

Related Documents

Steam Points

  • Critical Points for some Substances - Critical points of some common substances like air, argon, helium and more
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  • Diffusion Coefficients Gases in Water - Diffusion flux [kg/m2s] tells how fast a substanse solved in another substance flows due to concentration gradients. Diffusion constants [m2/s] are given for several gases in water
  • Enthalpy of Superheated Steam - Enthalpy of steam superheated to temperatures above boiling point
  • Enthalpy of Wet Steam - Wet steam, the dryness fraction and enthalpy
  • Entropy of Superheated Steam - Entropy of steam superheated to temperatures above saturation point
  • Heavy Water - Thermophysical Properties - Thermodynamic properties of heavy water (D2O) - density, melting temperature, boiling temperature, latent heat of fusion, latent heat of evaporation, critical temperature and more
  • Mollier Diagram for Water-Steam - Enthalpy-entropy diagram for water and steam
  • Triple Point - Triple points for some common substances
  • Vacuum Pipe Lines - Pressure Drops - Vacuum pipes and pressure drops
  • Water - Boiling Points at Vacuum Pressure - Online calculator, figures and tables giving the boiling temperatures of water in varying vacuum, SI and Imperial units.
  • Water - Density, Specific Weight and Thermal Expansion Coefficient - Definitions, online calculator, figures and tables giving Density, Specific Weight and Thermal Expansion Coefficient of liquid water at temperatures ranging from 0 to 360 °C and 32 to 680°F - in Imperial and SI Units
  • Water - Dynamic and Kinematic Viscosity - Online calculator, figures and tables showing viscosity of water at temperatures ranging from 0 to 360 °C (32 to 675 °F) - Imperial and SI Units
  • Water - Enthalpy (H) and Entropy (S) - Figures and tables showing the enthalpy and entropy of liquid water as function of temperature - SI and Imperial Units
  • Water - Ionization Constant, pKw, of normal and heavy water - Ionization constant (= dissociation constant = self-ionization constant = ion product = autoprotolysis constant ) of water and heavy water, given as function of temperature (°C and °F) in figures and tables
  • Water - Properties at Gas-Liquid Equilibrium Conditions - Figures and tables showing how the properties of water changes along the boiling/condensation curve (vapor pressure, density, viscosity, thermal conductivity, specific heat, Prandtl number, thermal diffusivity, entropy and enthalpy).
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  • Water - Specific Gravity - Figures and tables showing specific gravity of liquid water in the range of 32 to 700 °F or 0 to 370°C, using water density at four different temperatures as reference
  • Water - Specific Heat - Online calculator, figures and tables showing specific heat of liquid water at constant volume or constant pressure at temperatures from 0 to 360 °C (32-700 °F) - SI and Imperial units
  • Water - Specific Volume - Online calculator, figures and tables showing Specific Volume of water at temperatures ranging from 0-370 °C and 32 - 700 °F - Imperial and IS Units
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