• There are no items in your cart

ISO 5198:1987

Current

Current

The latest, up-to-date edition.

Centrifugal, mixed flow and axial pumps Code for hydraulic performance tests Precision grade

Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

English, French

Published date

09-07-1987

€206.00
Excluding VAT

Forms the first of a set dealing with tests of pumps and specifies precision class tests (former class A). Engineering class I and class II tests (former classes B and C) will be the subject of a further standard. Defines the terms and quantities that are used and specifies general requirements for tests. Does not specify constructional tolerances.

DocumentType
Standard
Pages
82
ProductNote
THIS STANDARD ALSO REFERS TO ISO 31
PublisherName
International Organization for Standardization
Status
Current

15/30310182 DC : 0 BS EN ISO 24490 - CRYOGENIC VESSELS - PUMPS FOR CRYOGENIC SERVICE
I.S. EN 16480:2016 PUMPS - MINIMUM REQUIRED EFFICIENCY OF ROTODYNAMIC WATER PUMPS
CEI UNI EN 45510-6-4 : 2000 GUIDE FOR PROCUREMENT OF POWER STATION EQUIPMENT - PART 6-4: TURBINE AUXILIARIES - PUMPS
UNE-EN 16480:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
EN 16480:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
EN 45510-6-4 : 1999 GUIDE FOR PROCUREMENT OF POWER STATION EQUIPMENT - PART 6-4: TURBINE AUXILIARIES - PUMPS
03/115349 DC : DRAFT OCT 2003 ISO 24490 - CRYOGENIC VESSELS - PUMPS FOR CRYOGENIC VESSELS
BS EN 45510-6-4:2000 Guide for the procurement of power station equipment. Turbine auxiliaries Pumps - Pumps
14/30298580 DC : 0 BS EN 16480 - PUMPS - MINIMUM REQUIRED EFFICIENCY OF ROTODYNAMIC WATER PUMPS
PREN 16480 : DRAFT 2017 PUMPS - ROTODYNAMIC PUMPS - MINIMUM REQUIRED EFFICIENCY OF WATER PUMPS AND METHODS OF QUALIFICATION AND VERIFICATION
DIN EN 16480:2017-07 Pumps - Minimum required efficiency of rotodynamic water pumps
I.S. EN ISO 9906:2012 ROTODYNAMIC PUMPS - HYDRAULIC PERFORMANCE ACCEPTANCE TESTS - GRADES 1, 2 AND 3 (ISO 9906:2012)
DIN EN ISO 24490:2016-08 CRYOGENIC VESSELS - PUMPS FOR CRYOGENIC SERVICE (ISO 24490:2016)
AAMI ISO 14708-5 : 2010 IMPLANTS FOR SURGERY - ACTIVE IMPLANTABLE MEDICAL DEVICES - PART 5: CIRCULATORY SUPPORT DEVICES
BS EN ISO 9906:2012 Rotodynamic pumps. Hydraulic performance acceptance tests. Grades 1, 2 and 3
DIN EN ISO 9906:2013-03 ROTODYNAMIC PUMPS - HYDRAULIC PERFORMANCE ACCEPTANCE TESTS - GRADES 1, 2 AND 3 (ISO 9906:2012)
UNI EN ISO 9906 : 2012 ROTODYNAMIC PUMPS - HYDRAULIC PERFORMANCE ACCEPTANCE TESTS - GRADES 1, 2 AND 3
EN 45510-6-4:1999 Guide for procurement of power station equipment - Part 6-4: Turbine auxiliaries - Pumps
BS EN 16480:2016 Pumps. Minimum required efficiency of rotodynamic water pumps
08/30192448 DC : DRAFT DEC 2008 BS ISO 14708-5 - IMPLANTS FOR SURGERY - ACTIVE IMPLANTABLE MEDICAL DEVICES - PART 5: CIRCULATORY SUPPORT DEVICES
12/30258979 DC : 0 BS ISO 10790 - MEASUREMENT OF FLUID FLOW IN CLOSED CONDUITS - GUIDANCE TO THE SELECTION, INSTALLATION AND USE OF CORIOLIS METERS (MASS FLOW, DENSITY AND VOLUME FLOW MEASUREMENTS)
HI 14.6 : 2016 ROTODYNAMIC PUMPS FOR HYDRAULIC PERFORMANCE ACCEPTANCE TESTS
BS ISO 21630:2007 Pumps. Testing. Submersible mixers for wastewater and similar applications
05/30113382 DC : DRAFT AUG 2005 BS ISO 21630 - PUMPS - TESTING - SUBMERSIBLE MIXERS FOR WASTEWATER AND SIMILAR APPLICATIONS
12/30227451 DC : DRAFT AUG 2012 BS EN 16480 - PUMPS - MINIMUM REQUIRED EFFICIENCY OF ROTODYNAMIC WATER PUMPS
BS EN ISO 24490:2016 Cryogenic vessels. Pumps for cryogenic service
ISO 9906:2012 Rotodynamic pumps — Hydraulic performance acceptance tests — Grades 1, 2 and 3
ISO 24490:2016 Cryogenic vessels Pumps for cryogenic service
BS EN 12483:1999 Liquid pumps. Pump units with frequency inverters. Guarantee and compatibility tests
EN ISO 9906:2012 Rotodynamic pumps - Hydraulic performance acceptance tests - Grades 1, 2 and 3 (ISO 9906:2012)
I.S. EN ISO 24490:2016 CRYOGENIC VESSELS - PUMPS FOR CRYOGENIC SERVICE (ISO 24490:2016)
UNE-EN ISO 24490:2016 Cryogenic vessels - Pumps for cryogenic service (ISO 24490:2016)
DIN EN 16480:2014-06 (Draft) PUMPS - MINIMUM REQUIRED EFFICIENCY OF ROTODYNAMIC WATER PUMPS
ISO 21630:2007 Pumps Testing Submersible mixers for wastewater and similar applications
I.S. EN 45510-6-4:2000 GUIDE FOR PROCUREMENT OF POWER STATION EQUIPMENT - PART 6-4: TURBINE AUXILIARIES - PUMPS
17/30367211 DC : 0 BS EN 16480 - PUMPS - ROTODYNAMIC PUMPS - MINIMUM REQUIRED EFFICIENCY OF WATER PUMPS AND METHODS OF QUALIFICATION AND VERIFICATION
ISO 14708-5:2010 Implants for surgery Active implantable medical devices Part 5: Circulatory support devices
EN ISO 24490:2016 Cryogenic vessels - Pumps for cryogenic service (ISO 24490:2016)
EN 12483:1999 Liquid pumps - Pump units with frequency inverters - Guarantee and compatibility tests

ISO 3534:1977 Statistics — Vocabulary and symbols
ISO 2548:1973 Centrifugal, mixed flow and axial pumps Code for acceptance tests Class C
ISO 5168:2005 Measurement of fluid flow — Procedures for the evaluation of uncertainties
ISO 4373:2008 Hydrometry Water level measuring devices
ISO 2975-3:1976 Measurement of water flow in closed conduits — Tracer methods — Part 3: Constant rate injection method using radioactive tracers
ISO 555-3:1982 Liquid flow measurement in open channels Dilution methods for measurement of steady flow Part 3: Constant rate injection method and integration method using radioactive tracers
ISO 555-2:1987 Liquid flow measurement in open channels Dilution methods for the measurement of steady flow Part 2: Integration method
ISO 3354:2008 Measurement of clean water flow in closed conduits — Velocity-area method using current-meters in full conduits and under regular flow conditions
ISO 2975-7:1977 Measurement of water flow in closed conduits — Tracer methods — Part 7: Transit time method using radioactive tracers
ISO 2975-1:1974 Measurement of water flow in closed conduits — Tracer methods — Part 1: General
IEC 60193:1999 Hydraulic turbines, storage pumps and pump-turbines - Model acceptance tests
ISO 2975-6:1977 Measurement of water flow in closed conduits — Tracer methods — Part 6: Transit time method using non-radioactive tracers
IEC 60041:1991 Field acceptance tests to determine the hydraulic performance of hydraulic turbines, storage pumps and pump-turbines
ISO 5167:1980 Measurement of fluid flow by means of orifice plates, nozzles and Venturi tubes inserted in circular cross-section conduits running full
ISO 4359:2013 Flow measurement structures — Rectangular, trapezoidal and U-shaped flumes
ISO 8316:1987 Measurement of liquid flow in closed conduits — Method by collection of the liquid in a volumetric tank
IEC 60497:1976 International code for model acceptance tests of storage pumps
ISO 3555:1977 Centrifugal, mixed flow and axial pumps — Code for acceptance tests — Class B
ISO 3846:2008 Hydrometry Open channel flow measurement using rectangular broad-crested weirs
IEC 60034-2:1972 Rotating electrical machines. Part 2: Methods for determining losses and efficiency of rotating electrical machinery from tests (excluding machines for traction vehicles)
ISO 7194:2008 Measurement of fluid flow in closed conduits — Velocity-area methods of flow measurement in swirling or asymmetric flow conditions in circular ducts by means of current-meters or Pitot static tubes
ISO 2186:2007 Fluid flow in closed conduits — Connections for pressure signal transmissions between primary and secondary elements
ISO 3966:2008 Measurement of fluid flow in closed conduits Velocity area method using Pitot static tubes
ISO 4360:2008 Hydrometry Open channel flow measurement using triangular profile weirs
ISO 1438:2017 Hydrometry — Open channel flow measurement using thin-plate weirs
ISO 2975-2:1975 Measurement of water flow in closed conduits — Tracer methods — Part 2: Constant rate injection method using non-radioactive tracers

Access your standards online with a subscription

Features

  • Simple online access to standards, technical information and regulations.

  • Critical updates of standards and customisable alerts and notifications.

  • Multi-user online standards collection: secure, flexible and cost effective.