hoangnp
Industrial
- Feb 18, 2024
- 8
thread135-111334
Hello friends,
I am trying to calculate the natural vaporization Q for a LP Gas cylinder (99 liters or 45 kg LPG). If I do the Q=(m*k*As*Psat)/Rg*Tl equation it turns out 11,9 kg/hr.
If I do Q=K*Aw*(Ta-Ts)/Cv is 1.38 kg/h
So what am I missing?
Thanks
Including:
m (molecular weight): 44
k (mass-transfer coefficient): 1.127
As (area of liquid surface): 0.1256 m2
Psat (saturation vapor pressure of the pure liquid at TL): 9 0C
Rg (ideal gas constant): 0.1885 J/kg 0C
Tl (absolute temperature of the liquid): 25 0C
K (Coefficient of heat exchange with exterior): 500 W*m2*K
Aw (Wet Area): 0.7 m2
Ta (Ambient Temperature): 28 0C
Ts (Temperature correspondent to the vaporization pressure inside the vessel): 25 0C
Cv (Latent heat for the liquid to the temperature inside the vessel): 1.5 kJ/kg*0K
LP Gas comercial: 50/50, density 0.54 kg/liter.
LP Gas cylinder (45kg): OD 360 * H 1050 (mm)
Hello friends,
I am trying to calculate the natural vaporization Q for a LP Gas cylinder (99 liters or 45 kg LPG). If I do the Q=(m*k*As*Psat)/Rg*Tl equation it turns out 11,9 kg/hr.
If I do Q=K*Aw*(Ta-Ts)/Cv is 1.38 kg/h
So what am I missing?
Thanks
Including:
m (molecular weight): 44
k (mass-transfer coefficient): 1.127
As (area of liquid surface): 0.1256 m2
Psat (saturation vapor pressure of the pure liquid at TL): 9 0C
Rg (ideal gas constant): 0.1885 J/kg 0C
Tl (absolute temperature of the liquid): 25 0C
K (Coefficient of heat exchange with exterior): 500 W*m2*K
Aw (Wet Area): 0.7 m2
Ta (Ambient Temperature): 28 0C
Ts (Temperature correspondent to the vaporization pressure inside the vessel): 25 0C
Cv (Latent heat for the liquid to the temperature inside the vessel): 1.5 kJ/kg*0K
LP Gas comercial: 50/50, density 0.54 kg/liter.
LP Gas cylinder (45kg): OD 360 * H 1050 (mm)