Inst ToolsInst ToolsInst Tools
  • Ask
  • Courses
  • Videos
  • Q & A
    • Interview
      • Instrumentation
      • Electronics
      • Electrical
      • Practical Questions
    • MCQ
      • Instrumentation MCQ
      • Electrical MCQ
      • Electronics MCQ
      • Control Systems MCQ
      • Analog Electronics MCQ
      • Digital Electronics MCQ
      • Power Electronics MCQ
      • Microprocessor MCQ
      • Multiple Choice Questions
  • EE
    • Electronics
      • Electronics Q & A
      • Electronic Basics
      • Electronic Devices & Circuits
      • Electronics Animation
      • Digital Electronics
    • Electrical
      • Electrical Basics
      • Electrical Q & A
      • Power Electronics
      • Electrical Machines
      • Electrical Animation
      • Power Systems
      • Switchgear & Protection
      • Transmission & Distribution
  • Measure
    • Control Valves
    • Calibration
    • Temperature
    • Pressure
    • Flow
    • Level
    • Analyzers
    • Switches
    • Vibration
    • Solenoid Valve
  • Control
    • PLC Tutorials
    • Control Systems
    • Safety Instrumented System (SIS)
    • Communication
    • Fire & Gas System
  • More
    • Design
    • Tools
    • Animation
    • Basics
    • Formulas
    • Standards
    • TextBooks
    • Common
    • Software
    • Excel Tools
    • Erection & Commissioning
    • Process Fundamentals
    • Videos
    • Books
Search
All rights reserved. Reproduction in whole or in part without written permission is prohibited.
Reading: Gas Flow Formulas
Share
Notification Show More
Font ResizerAa
Inst ToolsInst Tools
Font ResizerAa
  • Courses
  • PLC Tutorials
  • Control Systems
Search
  • Ask
  • Courses
  • Videos
  • Q & A
    • Interview
    • MCQ
  • EE
    • Electronics
    • Electrical
  • Measure
    • Control Valves
    • Calibration
    • Temperature
    • Pressure
    • Flow
    • Level
    • Analyzers
    • Switches
    • Vibration
    • Solenoid Valve
  • Control
    • PLC Tutorials
    • Control Systems
    • Safety Instrumented System (SIS)
    • Communication
    • Fire & Gas System
  • More
    • Design
    • Tools
    • Animation
    • Basics
    • Formulas
    • Standards
    • TextBooks
    • Common
    • Software
    • Excel Tools
    • Erection & Commissioning
    • Process Fundamentals
    • Videos
    • Books
Follow US
All rights reserved. Reproduction in whole or in part without written permission is prohibited.
Inst Tools > Blog > Formulas > Gas Flow Formulas

Gas Flow Formulas

Last updated: April 13, 2019 5:47 pm
Editorial Staff
Formulas
1 Comment
Share
4 Min Read
SHARE

Gas Flow Units

MMSCFD – Million standard cubic feet of gas per day – a common volume of gas measure (unit abbreviation MMscf)
SCFD – Standard cubic feet per day (gas)
SCFM – Standard cubic feet per minute (gas)
Sm^3/hr – Standard cubic metre per hour defined at 15 deg. C – 59°F – for US
Nm^3/hr – Normal cubic metre per hour defined at zero deg. C – 32°F – for countries using SI metric system of units
MSm^3/d – Mega Standard Cubic Metres per day defined at 15 deg. Celsius – 59° Fahrenheit – outside of US

Contents
Gas Flow UnitsGas Flow RateMMSCFD to Sm3/h is calculated as:MMSCFD to Nm3/h is calculated as:Constants for the actual gas flow calculationCalculation Explanation :

Gas Flow Rate

Gas flow rate by cubic volume and motion velocity conversions

Gas flow rate Formulas

Math equations used to manually calculate gas flow outcomes

MMSCFD to Sm3/h is calculated as:

MMSCFD to Sm3h Conversion Formula

Where:

288.15 = 15°C expressed in Kelvin (see below)

288.81 = 60°F expressed in Kelvin

24 = hours per day gas flow time

35.3147 = ft3 per m3

MMSCFD to Nm3/h is calculated as:

MMSCFD to Nm3h Conversion Formula

Where:

273.15 = 0°C expressed in Kelvin (see below)

288.81 = 60°F expressed in Kelvin

24 = hours per day gas flow time

35.3147 = ft3 per m3

Constants for the actual gas flow calculation

Volume ratio – 35.3147

0 degrees Celsius in K – 273.15

15 degrees Celsius in K – 288.15

59 degrees Fahrenheit in K – 288.81

hrs/day – 24

Ratio 60F/15°C – 0.997,714,761

Ratio 60F/0°C – 0.945,777,501

Please note that some numbers in these mathematical examples are rounded.

Calculation Explanation :

The S and N letter obviously refers to the gas condition (standard and normal). Both conditions are at atmospheric pressure (1 atm or 101.325 kPa) with standard referring to 15ºC and normal to 0ºC gas temperature.

Firstly when comparing a gas at the same pressures and at different temperatures, the density increases as the temperature decreases. Therefore a certain mass of gas will have a smaller volume at normal conditions as apposed to standard conditions.

Now, 1 ft3 = 0.0283168 m3, 1 sft3 = 0.0283168 sm3 and 1 nft3 = 0.0283168 nm3. So, lets look at an example:

A gas well produces natural gas at a flow rate of 140 000 SCFD (standard cubic feet per day) at a stable state:

140 000 SCFD = 3964.352 sm3/day = 165.18 sm3/hr (this online gas flow converter gives very accurate sm3/hr readings, and for other gas transfer units it contains – without rounding errors.)

Now, using the equation PV=nRT for the both states, knowing that the P, n and R remains constant the equation can be written as follows:

V1 / V2 = T1 / T2
V1 = V2 x T1 / T2

Assuming condition 1 is at standard conditions (15ºC, 288.15K), and condition 2 is at normal conditions (0ºC, 273.15K), the gas volume based flow rate can be converted as follows:

165.18 = V2 x (288.15 / 273.15)
V2 = 156.58 nm3/hr (gives great nm3/h which is less < than the sm3/h)

Don't Miss Our Updates
Be the first to get exclusive content straight to your email.
We promise not to spam you. You can unsubscribe at any time.
Invalid email address
You've successfully subscribed !
Formula to Calculate Process Variable from 4-20mA
Calculate Temperature Transmitter Output
Remote Seal Transmitters Ranging Calculation
Closed Tank Remote Seal Capillary type DP Transmitter
4-20mA Formulas and Examples
Share This Article
Facebook Whatsapp Whatsapp LinkedIn Copy Link
Share
1 Comment
  • Wahab says:
    September 13, 2023 at 4:10 pm

    excellent site

    Reply

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Stay Connected

128.3kFollowersLike
69.1kFollowersFollow
208kSubscribersSubscribe
38kFollowersFollow

Categories

Recent Comments

  • Guifty Shimica on Top Non-PLC Certification Courses for Automation Professionals
  • Guifty Shimica on Top Non-PLC Certification Courses for Automation Professionals
  • MIHARITSOA Aina Sitraka on Top Non-PLC Certification Courses for Automation Professionals
  • Vaishnavi on Free Instrumentation Course for Trainee Engineers

Related Articles

DP Transmitter Level Measurement for Closed Tank Wet leg Method

DP Transmitter Dry Leg & Wet Leg Calculations

PLC Problems Troubleshooting

PLC Problems Troubleshooting

Formula for Linear mA to Square root mA conversion

plc-analog-input-card-conversion-formula

PLC Analog Input Conversion Formula

Control Valve Cv Formula

Control Valve Cv calculation

How is pressure drop calculated through a valve?

How is Pressure Drop Calculated through a Valve ?

Current-to-Percentage-Conversion

Formula for Current 4-20ma to Percentage Conversion

Convert-Linear-%-to-Square-root-%

Formula for Linear % to Square root % conversion

More Articles

Digital Electronics Multiple Choice Questions

Design of Combinational Circuits Objective Questions

What to Choose RTD or Thermocouple ?

Optoisolator Working Principle

Optoisolator Working Principle

Two solenoid valves circuit

Solenoid Valves Questions & Answers – 4

Chemiluminescent Analyzer

Chemiluminescence

Ultrasonic level measurement

Ultrasonic Level Measurement

Voltage Control Methods at Distribution System

Factors affect Voltage Level Selection in Service System

old Pressure Switches

Pressure Switch Frozen Screwed Cover Extends the Plant Shutdown

Follow US
All rights reserved. Reproduction in whole or in part without written permission is prohibited.
Welcome Back!

Sign in to your account

Username or Email Address
Password

Lost your password?