BS EN 12838:2000
Current
The latest, up-to-date edition.
Installations and equipment for liquefied natural gas. Suitability testing of LNG sampling systems
Hardcopy , PDF
English
15-05-2000
Foreword
1 Scope
2 Normative references
3 Terms and definitions
4 Description of a continuous LNG sampling system
5 Description of a discontinuous LNG sampling system
6 Characteristics of the test rig
6.1 Description of the test rig
6.2 Measurement required
7 Suitability tests
7.1 General requirements of test performance
7.2 Operating procedure
7.3 Calculation of suitability criteria for the
tested sampling system
8 Suitability criteria for the LNG sampling system
9 Test report
Annex A (informative) Continuous LNG sampling system
Annex B (informative) Discontinuous LNG sampling system
Annex C (informative) Thermodynamic conditions for the
transformation of LNG into natural
gas
C.1 - General remarks
C.2 - Example of characteristic points
Annex D (normative) Test rig
Annex E (normative) Means required to evaluate the test rig
E.1 - General remarks
E.2 - Measuring devices
E.3 - Layout of measuring devices in test rig
Annex F (normative) Means required to evaluate a continuous
LNG sampling system
F.1 - General remarks
F.2 - Measuring devices
F.3 - Layout of measuring devices in the tested
sampling system
Annex G (normative) Means required to evaluate a
discontinuous LNG sampling system
G.1 - General remarks
G.2 - Measuring devices
G.3 - Layout of measuring devices in the tested
sampling system
Annex H (normative) Method of calculation of the accuracy
of the test rig
H.1 - Mean values of physical properties derived from
the analysis of the reference gas
H.2 - Calculation of the relationship of the physical
property with time of the reference gas
H.3 - Mean value of a physical property of the
reference gas
H.4 - Random error on a value of the reference gas
H.5 - Random error on all values of the reference gas
H.6 - Example of calculation
Annex J (normative) Method of calculation of the accuracy of
a continuous LNG sampling system
J.1 - Deviation in relation to reference gas, of the
physical property X derived from gas analyses
obtained with the tested sampling system
J.2 - Random error of the tested sampling system
J.3 - Systematic error of the tested sampling system
J.4 - Statistical test on systematic error
J.5 - Example of calculation
Annex K (normative) Method of calculation of the accuracy of
a discontinuous LNG sampling system
K.1 - Calculation of the regression equation of the
reference gas
K.2 - Deviation of physical property X from regression
equation
K.3 - Random error of the tested sampling system
K.4 - Systematic error of the tested sampling system
K.5 - Statistical test on systematic error
K.6 - Example of calculation
Establishes tests to be carried out for assessing suitability of LNG sampling systems used to determine the composition of Liquefied Natural Gas, combined with an analytical device such as a chromatograph.
Committee |
GSE/38
|
DevelopmentNote |
Supersedes 97/708458 DC (05/2005)
|
DocumentType |
Standard
|
Pages |
36
|
PublisherName |
British Standards Institution
|
Status |
Current
|
Supersedes |
Standards | Relationship |
EN 12838:2000 | Identical |
DIN EN 12838:2000-07 | Identical |
NBN EN 12838 : 2000 | Identical |
UNI EN 12838 : 2003 | Identical |
NS EN 12838 : 1ED 2000 | Identical |
NF EN 12838 : 2000 | Identical |
UNE-EN 12838:2001 | Identical |
NEN EN 12838 : 2000 | Identical |
I.S. EN 12838:2000 | Identical |
SN EN 12838 : 2000 | Identical |
ISO 6976:2016 | Natural gas — Calculation of calorific values, density, relative density and Wobbe indices from composition |
ISO 8943:2007 | Refrigerated light hydrocarbon fluids Sampling of liquefied natural gas Continuous and intermittent methods |
ISO 2854:1976 | Statistical interpretation of data — Techniques of estimation and tests relating to means and variances |
EN 1160:1996 | Installations and equipment for liquefied natural gas - General characteristics of liquefied natural gas |
ISO 6568:1981 | Natural gas — Simple analysis by gas chromatography |
ISO 6578:2017 | Refrigerated hydrocarbon liquids — Static measurement — Calculation procedure |
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