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Authored by
David Price
2013-05-21 17:06:23 +0100
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23945e7a05d4647a8e0a669b958ec2bb51b4a77f
23945e7a
1 parent
739a1f89
Added a one-flow test file
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www.reportinghub.no/test/dpr2/testcase/epim-dpr2/PL147/tqedits/TRYM-MONTH_AND_DAY_2012-02-01_final-dpr2-one-flow.xml
www.reportinghub.no/test/dpr2/testcase/epim-dpr2/PL147/tqedits/TRYM-MONTH_AND_DAY_2012-02-01_final-dpr2-one-flow.xml
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23945e7
<?xml version="1.0" encoding="UTF-8"?>
<objects
xmlns:xsi=
"http://www.w3.org/2001/XMLSchema-instance"
xmlns=
"http://www.epim.no/schemas/mprml/1"
version=
"1.0(MPRML)"
>
<documentInfo>
<DocumentName
namingSystem=
"EC"
>
TRYM February 2012
</DocumentName>
<DocumentAlias
namingSystem=
"EC"
>
TRYM Copex Report
</DocumentAlias>
<DocumentDate>
2012-03-05T00:00:00.0Z
</DocumentDate>
<documentClass
namingSystem=
"EC"
>
Dong E
&
P Norge AS
</documentClass>
<documentClass
namingSystem=
"EC"
>
DPR 2.0
</documentClass>
<documentClass
namingSystem=
"ERH"
>
dpr2
</documentClass>
<FileCreationInformation>
<FileCreationDate>
2012-03-15T00:00:00.0Z
</FileCreationDate>
<SoftwareName>
Energy Components
</SoftwareName>
<FileCreator>
Dong E
&
P Norge AS
</FileCreator>
<Comment>
NA
</Comment>
</FileCreationInformation>
<Owner>
Dong E
&
P Norge AS
</Owner>
</documentInfo>
<context
xsi:type=
"obj_report"
>
<kind>
DPR 2.0
</kind>
<title>
TRYM
</title>
<date>
2012-02-01
</date>
<dateEnd>
2012-02-01
</dateEnd>
<month>
2012-02
</month>
<year>
2012
</year>
<reportVersion>
1.1
</reportVersion>
<reportStatus>
final
</reportStatus>
<installation
kind=
"field"
namingSystem=
"NPD"
uidRef=
"18081500"
>
TRYM
</installation>
<operator>
<name>
Dong E
&
P Norge AS
</name>
<role>
Operating company
</role>
</operator>
</context>
<object
xsi:type=
"obj_productVolume"
>
<name>
TRYM
</name>
<installation
kind=
"field"
namingSystem=
"NPD"
uidRef=
"18081500"
>
TRYM
</installation>
<facility>
<name
kind=
"field"
namingSystem=
"NPD"
uidRef=
"18081500"
>
TRYM
</name>
<facilityParent1
namingSystem=
"String"
uidRef=
"x"
kind=
"block valve"
>
String
</facilityParent1>
<facilityParent2
namingSystem=
"String"
uidRef=
"x"
kind=
"block valve"
>
String
</facilityParent2>
<facilityAlias
namingSystem=
"String"
>
String
</facilityAlias>
<facilityAlias
namingSystem=
"String"
>
String
</facilityAlias>
<contextFacility
namingSystem=
"String"
uidRef=
"x"
kind=
"block valve"
>
String
</contextFacility>
<contextFacility
namingSystem=
"String"
uidRef=
"x"
kind=
"block valve"
>
String
</contextFacility>
<downtimeReason
uid=
"a5c6a140-8ae8-11e2-b65a-78acc03c3a5e"
>
<who>
MR Who
</who>
<role>
Platform manager
</role>
<dTimStart>
2012-02-01T02:00:00.0Z
</dTimStart>
<dTimEnd>
2012-02-29T04:00:00.0Z
</dTimEnd>
<remark>
If the position of the trace in (99c) were only relatively inaccessible to movement, a descriptively
</remark>
</downtimeReason>
<downtimeReason
uid=
"a5c6a141-8ae8-11e2-abf3-78acc03c3a5e"
>
<who>
Mr Who2
</who>
<role>
Platform manager 2
</role>
<dTimStart>
2012-02-01T06:00:00.0Z
</dTimStart>
<dTimEnd>
2012-02-29T14:00:00.0Z
</dTimEnd>
<remark>
Let us continue to suppose that the fundamental error of regarding functional notions as categorial
</remark>
</downtimeReason>
<flow
uid=
"TRY_SALEABLE_PRODUCTION"
>
<name>
Trym saleable volumes
</name>
<kind>
production
</kind>
<qualifier>
saleable
</qualifier>
<version>
2012-02-01T02:00:00.0Z
</version>
<versionSource>
version src 255
</versionSource>
<gor
uom=
"Euc"
>
48.25
</gor>
<gorMTD
uom=
"m3/m3"
>
33.03
</gorMTD>
<waterConcMass
uom=
"%"
>
89.99
</waterConcMass>
<waterConcVol
uom=
"ppm"
>
72.85
</waterConcVol>
<atmosphere
uom=
"Pa"
>
13.71
</atmosphere>
<volumeValue>
<volume
status=
"comm failure"
uom=
"m3"
>
134.26
</volume>
<grossCalorificValue
uom=
"J/m3"
>
862.8
</grossCalorificValue>
<temp
uom=
"K"
>
88.52
</temp>
<pres
uom=
"Pa"
>
46.23
</pres>
</volumeValue>
<volume
status=
"bad calibration"
uom=
"m3"
>
11.89
</volume>
<volumeStd
status=
"bad calibration"
uom=
"m3"
>
15.4
</volumeStd>
<flowRate
status=
"bad calibration"
uom=
"m3/s"
>
77.85
</flowRate>
<temp
uom=
"K"
>
22.68
</temp>
<pres
uom=
"Pa"
>
88.49
</pres>
<absoluteMinPres
uom=
"Pa"
>
67.96
</absoluteMinPres>
<portDiff
uid=
"a5c6a142-8ae8-11e2-a16c-78acc03c3a5e"
>
<port
uidRef=
"a5c6a143-8ae8-11e2-9fb7-78acc03c3a5e"
>
Port 1
</port>
<presDiff
uom=
"Pa"
>
64.99
</presDiff>
<tempDiff
uom=
"K"
>
52.23
</tempDiff>
<chokeSize
uom=
"in/32"
>
78.15
</chokeSize>
<chokeRelative
uom=
"%"
>
18.46
</chokeRelative>
</portDiff>
<portDiff
uid=
"a5c6a144-8ae8-11e2-9abb-78acc03c3a5e"
>
<port
uidRef=
"a5c6a145-8ae8-11e2-9ed8-78acc03c3a5e"
>
Port 2
</port>
<presDiff
uom=
"Pa"
>
79.65
</presDiff>
<tempDiff
uom=
"K"
>
31.38
</tempDiff>
<chokeSize
uom=
"in/32"
>
61.63
</chokeSize>
<chokeRelative
uom=
"%"
>
76.93
</chokeRelative>
</portDiff>
<mass
uom=
"kg"
>
741.86
</mass>
<work
uom=
"MJ"
>
900.63
</work>
<efficiency
uom=
"%"
>
44.64
</efficiency>
<rvp
uom=
"Pa"
>
473.2
</rvp>
<tvp
uom=
"bar"
>
672.31
</tvp>
<bsw
uom=
"%"
>
56.58
</bsw>
<bswPrevious
uom=
"m3/m3"
>
34.61
</bswPrevious>
<densityValue>
<density
uom=
"kg/m3"
>
37.41
</density>
<temp
uom=
"K"
>
53.03
</temp>
<pres
uom=
"Pa"
>
79.19
</pres>
</densityValue>
<density
uom=
"kg/m3"
>
412.02
</density>
<densityFlowRate
uom=
"Mg/a"
>
328.63
</densityFlowRate>
<densityStd
uom=
"kg/m3"
>
667.03
</densityStd>
<concentration
uom=
"ppm"
>
62.47
</concentration>
<molecularWeight>
40.34
</molecularWeight>
<weightPercent
uom=
"%"
>
38.31
</weightPercent>
<molePercent
uom=
"%"
>
53.15
</molePercent>
<moleAmt
uom=
"kmol"
>
80.5
</moleAmt>
<sg
uom=
"Euc"
>
78.32
</sg>
<hcDewpoint
uom=
"K"
>
539.52
</hcDewpoint>
<waterDewpoint
uom=
"K"
>
647.14
</waterDewpoint>
<wobbeIndex
uom=
"J/m3"
>
703.54
</wobbeIndex>
<grossCalorificValueStd
uom=
"J/m3"
>
999.35
</grossCalorificValueStd>
<rvpStabilizedCrude
uom=
"Pa"
>
218.7
</rvpStabilizedCrude>
<bswStabilizedCrude
uom=
"Euc"
>
473.17
</bswStabilizedCrude>
<densityStabilizedCrude
uom=
"kg/m3"
>
90.92
</densityStabilizedCrude>
<product>
<kind>
oil - net
</kind>
<name
namingSystem=
"TEST411"
>
Test product name 187
</name>
<splitFactor>
0.11
</splitFactor>
<gor
uom=
"Euc"
>
82.69
</gor>
<gorMTD
uom=
"m3/m3"
>
63.83
</gorMTD>
<waterConcMass
uom=
"%"
>
18.93
</waterConcMass>
<waterConcVol
uom=
"ppm"
>
63.88
</waterConcVol>
<atmosphere
uom=
"Pa"
>
25.5
</atmosphere>
<volumeValue>
<volume
status=
"device failure"
uom=
"m3"
>
505.2
</volume>
<grossCalorificValue
uom=
"J/m3"
>
619.52
</grossCalorificValue>
<temp
uom=
"K"
>
92.1
</temp>
<pres
uom=
"Pa"
>
13.05
</pres>
</volumeValue>
<volume
status=
"bad calibration"
uom=
"m3"
>
86.05
</volume>
<volumeStd
status=
"bad calibration"
uom=
"m3"
>
50.84
</volumeStd>
<flowRate
status=
"bad calibration"
uom=
"m3/s"
>
81.66
</flowRate>
<temp
uom=
"K"
>
12.39
</temp>
<pres
uom=
"Pa"
>
23.36
</pres>
<absoluteMinPres
uom=
"Pa"
>
85.53
</absoluteMinPres>
<portDiff
uid=
"a5c6a146-8ae8-11e2-a53c-78acc03c3a5e"
>
<port
uidRef=
"a5c6a147-8ae8-11e2-9d3d-78acc03c3a5e"
>
Port 1
</port>
<presDiff
uom=
"Pa"
>
68.18
</presDiff>
<tempDiff
uom=
"K"
>
26.62
</tempDiff>
<chokeSize
uom=
"in/32"
>
54.61
</chokeSize>
<chokeRelative
uom=
"%"
>
53.42
</chokeRelative>
</portDiff>
<portDiff
uid=
"a5c6a148-8ae8-11e2-a4d1-78acc03c3a5e"
>
<port
uidRef=
"a5c6a149-8ae8-11e2-aab3-78acc03c3a5e"
>
Port 2
</port>
<presDiff
uom=
"Pa"
>
33.9
</presDiff>
<tempDiff
uom=
"K"
>
83.62
</tempDiff>
<chokeSize
uom=
"in/32"
>
50.9
</chokeSize>
<chokeRelative
uom=
"%"
>
90.59
</chokeRelative>
</portDiff>
<mass
uom=
"kg"
>
413.44
</mass>
<work
uom=
"MJ"
>
634.56
</work>
<efficiency
uom=
"%"
>
76.94
</efficiency>
<rvp
uom=
"Pa"
>
659.3
</rvp>
<tvp
uom=
"bar"
>
800.3
</tvp>
<bsw
uom=
"%"
>
16.46
</bsw>
<bswPrevious
uom=
"m3/m3"
>
42.44
</bswPrevious>
<densityValue>
<density
uom=
"kg/m3"
>
440.19
</density>
<temp
uom=
"K"
>
50.6
</temp>
<pres
uom=
"Pa"
>
45.21
</pres>
</densityValue>
<density
uom=
"kg/m3"
>
100.46
</density>
<densityFlowRate
uom=
"Mg/a"
>
662.64
</densityFlowRate>
<densityStd
uom=
"kg/m3"
>
265.49
</densityStd>
<concentration
uom=
"ppm"
>
61.62
</concentration>
<molecularWeight>
59.0
</molecularWeight>
<weightPercent
uom=
"%"
>
63.08
</weightPercent>
<molePercent
uom=
"%"
>
92.99
</molePercent>
<moleAmt
uom=
"kmol"
>
49.5
</moleAmt>
<sg
uom=
"Euc"
>
55.69
</sg>
<hcDewpoint
uom=
"K"
>
164.87
</hcDewpoint>
<waterDewpoint
uom=
"K"
>
865.69
</waterDewpoint>
<wobbeIndex
uom=
"J/m3"
>
378.96
</wobbeIndex>
<grossCalorificValueStd
uom=
"J/m3"
>
123.58
</grossCalorificValueStd>
<rvpStabilizedCrude
uom=
"Pa"
>
57.65
</rvpStabilizedCrude>
<bswStabilizedCrude
uom=
"Euc"
>
230.87
</bswStabilizedCrude>
<densityStabilizedCrude
uom=
"kg/m3"
>
87.87
</densityStabilizedCrude>
<componentContent
uid=
"a5c6a14a-8ae8-11e2-b107-78acc03c3a5e"
>
<kind>
condensate
</kind>
<referenceKind>
oil
</referenceKind>
<gor
uom=
"Euc"
>
60.51
</gor>
<gorMTD
uom=
"m3/m3"
>
18.36
</gorMTD>
<waterConcMass
uom=
"%"
>
40.9
</waterConcMass>
<waterConcVol
uom=
"ppm"
>
86.33
</waterConcVol>
<atmosphere
uom=
"Pa"
>
88.88
</atmosphere>
<volumeValue>
<volume
status=
"bad calibration"
uom=
"m3"
>
312.64
</volume>
<grossCalorificValue
uom=
"J/m3"
>
17.24
</grossCalorificValue>
<temp
uom=
"K"
>
71.58
</temp>
<pres
uom=
"Pa"
>
84.36
</pres>
</volumeValue>
<volume
status=
"bad calibration"
uom=
"m3"
>
60.48
</volume>
<volumeStd
status=
"bad calibration"
uom=
"m3"
>
15.54
</volumeStd>
<flowRate
status=
"bad calibration"
uom=
"m3/s"
>
52.91
</flowRate>
<temp
uom=
"K"
>
52.17
</temp>
<pres
uom=
"Pa"
>
62.3
</pres>
<absoluteMinPres
uom=
"Pa"
>
12.62
</absoluteMinPres>
<portDiff
uid=
"a5c91240-8ae8-11e2-ae52-78acc03c3a5e"
>
<port
uidRef=
"a5c91241-8ae8-11e2-8794-78acc03c3a5e"
>
Port 1
</port>
<presDiff
uom=
"Pa"
>
51.38
</presDiff>
<tempDiff
uom=
"K"
>
61.09
</tempDiff>
<chokeSize
uom=
"in/32"
>
42.97
</chokeSize>
<chokeRelative
uom=
"%"
>
52.18
</chokeRelative>
</portDiff>
<portDiff
uid=
"a5c91242-8ae8-11e2-9489-78acc03c3a5e"
>
<port
uidRef=
"a5c91243-8ae8-11e2-8437-78acc03c3a5e"
>
Port 2
</port>
<presDiff
uom=
"Pa"
>
84.67
</presDiff>
<tempDiff
uom=
"K"
>
40.75
</tempDiff>
<chokeSize
uom=
"in/32"
>
76.06
</chokeSize>
<chokeRelative
uom=
"%"
>
88.08
</chokeRelative>
</portDiff>
<mass
uom=
"kg"
>
467.73
</mass>
<work
uom=
"MJ"
>
840.23
</work>
<efficiency
uom=
"%"
>
33.86
</efficiency>
<rvp
uom=
"Pa"
>
991.18
</rvp>
<tvp
uom=
"bar"
>
755.73
</tvp>
<bsw
uom=
"%"
>
78.2
</bsw>
<bswPrevious
uom=
"m3/m3"
>
91.4
</bswPrevious>
<densityValue>
<density
uom=
"kg/m3"
>
241.87
</density>
<temp
uom=
"K"
>
33.79
</temp>
<pres
uom=
"Pa"
>
32.72
</pres>
</densityValue>
<density
uom=
"kg/m3"
>
576.9
</density>
<densityFlowRate
uom=
"Mg/a"
>
105.41
</densityFlowRate>
<densityStd
uom=
"kg/m3"
>
55.76
</densityStd>
<concentration
uom=
"ppm"
>
20.34
</concentration>
<molecularWeight>
16.71
</molecularWeight>
<weightPercent
uom=
"%"
>
57.89
</weightPercent>
<molePercent
uom=
"%"
>
38.67
</molePercent>
<moleAmt
uom=
"kmol"
>
67.02
</moleAmt>
<sg
uom=
"Euc"
>
21.22
</sg>
<hcDewpoint
uom=
"K"
>
715.1
</hcDewpoint>
<waterDewpoint
uom=
"K"
>
100.26
</waterDewpoint>
<wobbeIndex
uom=
"J/m3"
>
289.8
</wobbeIndex>
<grossCalorificValueStd
uom=
"J/m3"
>
363.38
</grossCalorificValueStd>
<rvpStabilizedCrude
uom=
"Pa"
>
407.89
</rvpStabilizedCrude>
<bswStabilizedCrude
uom=
"Euc"
>
704.82
</bswStabilizedCrude>
<densityStabilizedCrude
uom=
"kg/m3"
>
257.23
</densityStabilizedCrude>
</componentContent>
<period>
<kind>
month
</kind>
<dateStart>
2012-02-01
</dateStart>
<dateEnd>
2012-02-29
</dateEnd>
<gor
uom=
"Euc"
>
55.03
</gor>
<gorMTD
uom=
"m3/m3"
>
71.04
</gorMTD>
<waterConcMass
uom=
"%"
>
67.41
</waterConcMass>
<waterConcVol
uom=
"ppm"
>
31.52
</waterConcVol>
<atmosphere
uom=
"Pa"
>
81.95
</atmosphere>
<volumeValue>
<volume
uom=
"m3"
>
615.87
</volume><temp
uom=
"degC"
>
15
</temp>
<pres
uom=
"atm"
>
1
</pres>
</volumeValue>
<volume
status=
"bad calibration"
uom=
"m3"
>
31.27
</volume>
<volumeStd
status=
"bad calibration"
uom=
"m3"
>
43.03
</volumeStd>
<flowRate
status=
"bad calibration"
uom=
"m3/s"
>
57.45
</flowRate>
<temp
uom=
"K"
>
41.0
</temp>
<pres
uom=
"Pa"
>
48.88
</pres>
<absoluteMinPres
uom=
"Pa"
>
55.29
</absoluteMinPres>
<mass
uom=
"kg"
>
224.73
</mass>
<work
uom=
"kW.h"
>
491.2
</work>
<efficiency
uom=
"%"
>
15.12
</efficiency>
<rvp
uom=
"kPa"
>
900.96
</rvp>
<tvp
uom=
"bar"
>
827.62
</tvp>
<bsw
uom=
"%"
>
58.3
</bsw>
<bswPrevious
uom=
"m3/m3"
>
51.07
</bswPrevious>
<densityValue>
<density
uom=
"kg/m3"
>
786.94
</density>
<temp
uom=
"degC"
>
15
</temp>
<pres
uom=
"atm"
>
1
</pres>
</densityValue>
<density
uom=
"kg/m3"
>
334.31
</density>
<densityFlowRate
uom=
"Mg/a"
>
290.09
</densityFlowRate>
<densityStd
uom=
"kg/m3"
>
412.8
</densityStd>
<concentration
uom=
"ppm"
>
53.22
</concentration>
<molecularWeight>
50.39
</molecularWeight>
<weightPercent
uom=
"%"
>
12.68
</weightPercent>
<molePercent
uom=
"%"
>
97.96
</molePercent>
<moleAmt
uom=
"kmol"
>
68.2
</moleAmt>
<sg
uom=
"Euc"
>
18.88
</sg>
<hcDewpoint
uom=
"K"
>
339.08
</hcDewpoint>
<waterDewpoint
uom=
"K"
>
722.12
</waterDewpoint>
<wobbeIndex
uom=
"J/m3"
>
108.08
</wobbeIndex>
<grossCalorificValueStd
uom=
"J/m3"
>
230.02
</grossCalorificValueStd>
<rvpStabilizedCrude
uom=
"Pa"
>
322.68
</rvpStabilizedCrude>
<bswStabilizedCrude
uom=
"Euc"
>
84.89
</bswStabilizedCrude>
<densityStabilizedCrude
uom=
"kg/m3"
>
124.95
</densityStabilizedCrude>
</period>
</product>
</flow>
</facility>
</object>
</objects>
\ No newline at end of file
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