Yamatake Corporation
Appendix
Model HGC303 - Heat Value Gas Chromatograph
A-5
5) Compressibility factor Z (sat)
Compressibility factor (sat) is calculated using the following formula.
Z (sat) =
where,
bw
= summation factor of water
6) Real relative density, gas (dry): G
,
where,
G
id
= ideal relative density
(G
id
)
i
= ideal relative density for component
i
Z (dry air)
= compressibility factor for dry air
7) Relative density, liquid: RD liquid
where,
l
i
= liquid volume fraction for component
i
Li
= liquid density for component
i
8) Gas density: GD [lb/1000CF]
9) Liquid density: LD [lb/gal]
where,
(LD)i
= liquid density for component
i
1
1
xw
–
(
)
xi bi
×
(
)
i
1
=
n
∑
xw bw
×
+
×
2
PB
×
–
G
G
id
Z dry air
(
)
Z dry
(
)
-------------------------
×
=
G
id
xi
i
1
=
n
∑
G
id
(
)
i
×
=
RDliquid
l
i
i
1
=
n
∑
Li
×
=
GD
G Density air
(
)
×
PB
14.696
----------------
×
=
LD
l
i
i
1
=
n
∑
LD
(
)
i
×
PB
14.696
----------------
×
=
Содержание HGC303
Страница 10: ...Safety Yamatake Corporation viii Model HGC303 Heat Value Gas Chromatograph ...
Страница 42: ...Installation Yamatake Corporation 2 22 Model HGC303 Heat Value Gas Chromatograph ...
Страница 109: ...Yamatake Corporation Operation Model HGC303 Heat Value Gas Chromatograph 3 67 Figure 3 28 User report GPA mode ...
Страница 110: ...Operation Yamatake Corporation 3 68 Model HGC303 Heat Value Gas Chromatograph ...
Страница 112: ...Maintenance Yamatake Corporation 4 2 Model HGC303 Heat Value Gas Chromatograph ...
Страница 127: ...Yamatake Corporation Appendix Model HGC303 Heat Value Gas Chromatograph A 13 Drawings HGC00 ...
Страница 128: ...Appendix Yamatake Corporation A 14 Model HGC303 Heat Value Gas Chromatograph ...