Forwarded from Farshad Golshan
nomenclatures of areas and models.pdf
2 MB
Hydrocarbon Processing, December 2024
#Paper
#Paper
hydrogen cyanide in amine systems.pdf
2.2 MB
Hydrocarbon Processing, December 2024
#Paper
#Paper
methane and CO2 distillation-part 1.pdf
2.4 MB
Hydrocarbon Processing, December 2024
#Paper
#Paper
Brunei to Tokyo with hydrogen.pdf
2.8 MB
Hydrocarbon Processing, December 2024
#Paper
#Paper
Liquid pockets in flare header.pdf
2.5 MB
Hydrocarbon Processing, December 2024
#Paper
#Paper
modular plant.pdf
1.9 MB
Hydrocarbon Processing, December 2024
#Paper
#Paper
BCPS_49777_1947_Chemical-Engineering.pdf
54 MB
Chemical Engineering Magazine
February 1947
Oldies but Goldies
February 1947
Oldies but Goldies
Practical Process Engineering
Pipe Flo training- 5-17-2024
This was a free training for Pipe Flo I presented a few months ago. That was in Persian/Farsi language.
If you need the same training in English language, contact me. If the number of interested people exceeds 20-30, I renew this.
If you need the same training in English language, contact me. If the number of interested people exceeds 20-30, I renew this.
Here I want to introduce a software named "BoilFAST" for boil off gas calculations for cryogenic tanks like hydrogen, LNG, ammonia, etc.
Below is the link to download it. No installation and license are required. Enjoy it.
Below is the link to download it. No installation and license are required. Enjoy it.
The other software I want to introduce today is "ThermoFAST" for property calculations of cryogenic fluids. The desktop version is here and also you can add it to Microsoft Excel.
Modelling_of_Liquid_Hydrogen_Boil-Off.pdf
2.9 MB
This paper explains the theory and calculations of BoilFAST software.
The next free software is "HyPRISM".
It is a simulation tool designed to model the pressure increase in thermally dissociated hydrate plugs in pipelines. Given an initial condition set within the equilibrium region, the model predicts the final steady state temperature and pressure in a pipeline after dissociating a four phase hydrate plug. It will also depict the pathway taken by the system between these two points, returning values for a number of key properties over the heating range.
It is a simulation tool designed to model the pressure increase in thermally dissociated hydrate plugs in pipelines. Given an initial condition set within the equilibrium region, the model predicts the final steady state temperature and pressure in a pipeline after dissociating a four phase hydrate plug. It will also depict the pathway taken by the system between these two points, returning values for a number of key properties over the heating range.