ГОСТ 8.586.2—2005
Библиография
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Международный стандарт ИСО 5167-1:2003
(International Standard ISO 5167-1:2003)
Международный стандарт ИСО 5167-2:2003
(International Standard ISO 5167-2:2003)
Измерение расхода среды с помощью устройств пере
менного перепада давления, помещенных в заполненные
трубопроводы круглого сечения. Часть 1. Общие принци
пы и требования
(Measurement of fluid flow by means of pressure differential
devices Inserted in circular cross-section conduits running
full — Part 1: General principles and requirements)
Измерение расхода среды с помощью устройств пере
менного перепада давления, помещенных а заполненные
трубопроводы круглого сечения. Часть 2. Диафрагмы
(Measurement of fluid flow by means of pressure differential
devices inserted in circular cross-section conduits running
full — Part 2: Orifice plates)
Международный стандарт ИСО 5167-3:2003
(International Standard ISO 5167-3:2003)
Международный стандарт ИСО 5167-4:2003
(International Standard ISO 5167-4:2003)
Отчет ИСО 9464:1998
(ISO/TR 9464:1998)
Измерение расхода среды с помощью устройств пере
менного перепада давления, помещенных а заполненные
трубопроводы круглого сечения. Часть 3. Сопла и сопла
Вентури
(Measurement of fluid flow by means of pressure differential
devices inserted in circular cross-section conduits running
full — Part 3: Nozzles and Venturi nozzles)
Измерение расхода среды с помощью устройств пере
менного перепада давления, помещенных а заполненные
трубопроводы круглого сечения. Часть 4. Трубы Вентури
(Measurement of fluid flow by means of pressure differential
devices inserted in circular cross-section conduits running
full — Part 4: Venturi tubes)
Руководство no применению ИСО 5167-1:1991
(Guidelines for the use of ISO 5167-1:1991)
Hobbs. J.M and Humphreys. J.S. The effect of orifice plate geometry upon discharge coefficient.
Flow
Measurement and Instrumentation.
1, Apni 1990. pp. 133—140
Reader-Hams. M.J. and Sattary. J.A. The orifice plate discharge coefficient equation - the equation for ISO 5
167-1. In
Proc. Of 14th North Sea Flow Measurement Workshop. Peebles. Scotland.
East Kilbride. Glasgow.
National Engineering Laboratory. October 1996. p. 24
Reader-Harrls. M.J. The equation for the expansibility factor for orifice plates. In
Proc. Of FLOMEKO 98.
Lund,
Sweden. June 1998. pp. 209—214
Reader-Harris. M.J. Pipe roughness and Reynolds number limits for the orifice plate discharge coefficient
equation. In
Proc. of 2nd Int. Symp. on Fluid Flow Measurement.
Calgary. Canada. Arlington. Virginia: American
Gas Association, June 1990. pp. 29—43
Reader-Harrls. M.J.. Sattary. J.A. and Spearman. E.P. The
orifice plate discharge coefficient equation.
Progress
Report No PR 14. EUEC/17 (EEC005). East Kibride. Glasgow: National Engineering Laboratory Executive
Agency. May 1992
Morrow. T.B. and Morrison. G.L. Effect of meter tube roughness on orifice C4. In
Proc. of 4th Int. Symp. on Fluid
Flow Measurement.
Denver. Colorado. June 1999
[12)
Urner. G. Pressure loss of orifice plates according to ISO 5167.
Flow Measurement and Instrumentation.
8. March
1997. pp. 39—41
[13)
Studzlnski. W.. Karmk, U.. Lanasa. P.. Morrow. T„ Goodson. D., Husain. 2. and Gallagher. J. White paper on
Orifice Meter Installation Configurations with and without Flow Conditiners.
Washington D.C.. American
Petroleum Institute. 1997
[14)
Studzlnski. W., Weiss. M., Attia, J. And Geerligs. J. Effects of reducers, expanders, a gate valve, and two elbows in
perpendicular planes on orifice meter performance. In
Proc. of Flow Measurement2001 InternationalConference.
Peebles, Scotland. May 2001. ppr3.1.
East Kilbride. Glasgow. National Engineering Laboratory
36
Weiss. M „ Studzlnski. W. and Attia. J. Performance evaluation of onfice meter standards for selected T-Junction
and elbow installations. In
Proc. Sth Int. Symp. on Fluid Flow Measurement.
Washington. D.C.. April 2002