Flow-X─ Function Reference
6-347
Reference - Terminology
barrels per day
(standard)
bbl/d
sm3/s
0.15898729
5/86400
Exact
Normal
Volume
per Time
normal cubic
meter per
second
m3(n)/s
normal cubic
meter per hour
m3(n)/hr
m3(n)/s
1/3600
Exact
normal cubic
meter per day
m3(n)/d
m3(n)/s
1/86400
Exact
kilo normal
cubic meter per
second
km3(n)/s
m3(n)/s
1.0 E+03
Exact
kilo normal
cubic meter per
hour
km3(n)/h
r
m3(n)/s
(1/3600)
E+03
Exact
kilo normal
cubic meter per
day
km3(n)/d
m3(n)/s
(1/86400)
E+03
Exact
mega normal
cubic meter per
hour
Mm3(n)/
hr
m3(n)/s
(1/3600)
E+06
Exact
mega normal
cubic meter per
day
Mm3(n)/
d
m3(n)/s
(1/86400)
E+06
Exact
Terminology
Term
Description
Same as
Heating Value
Usually the same as Gross Heating Value
Calorific Value
Usually the same as Superior Calorific Value
Superior Calorific
Value
Heating value when assuming that water formed
at the combustion stays in the gaseous state.
From ISO6976.
Gross Heating Value
Inferior Calorific
Value
Heating value when assuming that water formed
at the combustion has totally condensed to the
liquid state.
From ISO6976.
Net Heating Value
Gross Heating Value
Heating value when assuming that water formed
at the combustion stays in the gaseous state
Term used in GPA2172.
Superior Calorific Value
Net Heating Value
Heating value when assuming that water formed
at the combustion has totally condensed to the
liquid state.
Term used in GPA2172.
Inferior Calorific Value
Molar Mass Ratio
Ratio of molar mass of gas and molar mass of air
at the base conditions
Specific Gravity
Ideal Specific Gravity
Ideal Relative Density
Relative Density
Ratio of real mass density of gas and real mass
density of air at the base conditions
Real Relative Density
Real Specific Gravity
Specific Gravity
Ratio of real mass density of gas and real density
of air at the base conditions
Molar Mass Ratio
Ideal Specific Gravity
Ideal Relative Density
Summary of Contents for flow-x
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