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SAC - GB/T 13007-91 - EFFICIENCIES FOR CENTRIFUGAL PUMPS Organization: SAC
Date: 1991-04-23
ASME PTC 8.2 - CENTRIFUGAL PUMPS Organization: ASME
Date: 1990-01-01
Description: Prepared in accordance with ASME PTC 1 on General Instructions, this Code provides standard directions for conducting; and reporting performance tests of centrifugal pumps, including those of the mixed flow and axial flow types; hereinafter inclusively covered by the term "pumps."
CSA C820 - ENERGY EFFICIENCY TEST METHODS FOR SMALL PUMPS - FIRST EDITION; UPDATE NO. 1: FEBRUARY 2003 Organization: CSA
Date: 2002-04-01
Description: This Standard specifies the method for testing centrifugal pumps to determine the following characteristics: (a) the total head produced by the pump versus the pump rate of flow; (b) input power versus pump rate of flow; and (c) efficiency versus pump rate of flow. This Standard does not apply to centrifugal pumps for the following services: (a) decorative fountain pumps; (b) fire pumps as defined in NFPA Standard 20; (c) hydromassage pumps as defined and installed in accordance with CSA Standard C22.2 No. 218.2; (d) jet pumps; (e) multi-stage pumps; (f) recreational vehicle pumps; (g) seal-less pumps; (h) solids-handling pumps; (i) sprinkler pumps for residential lawn watering applications; (j) deep well submersible pumps; (k) submersible-type effluent pumps up to and including 1.49 kW (2 hp); (l) submersible- and column-type sump pumps for residential applications; and (m) utility or contractor pumps.
DSF/EN ISO 14414/PRA1 - PUMP SYSTEM ENERGY ASSESSMENT (ISO 14414:2015/DAM 1:2015) Organization: DS
Description: This International Standard deals with evaluation of systems where a significant component of the energy consumed is by pumps on water applications (centrifugal, mixed flow and axial pumps). It may be applied to pumps of any size and to any pumped liquids that behave as clean cold water.
NBN - EN ISO 14414 - PUMP SYSTEM ENERGY ASSESSMENT (ISO/ASME 14414:2015) Organization: NBN
Date: 2015-05-22
Description: This International Standard deals with evaluation of systems where a significant component of the energy consumed is by pumps on water applications (centrifugal, mixed flow and axial pumps). It may be applied to pumps of any size and to any pumped liquids that behave as clean cold water.
BSI - BS EN ISO 5198 - CORR.1 CENTRIFUGAL, MIXED FLOW AND AXIAL PUMPS - CODE FOR HYDRAULIC PERFORMANCE TESTS - PRECISION CLASS - CORR 10668: AUGUST 1999 Organization: BSI
Date: 1999-04-15
Description: General recommendations, measurements of rate of flow, head, speed of rotation, power input and pump efficiency by the thermodynamic method. Also, cavitation tests, estimating of and analysis of uncertainties and comparison of tests results with specified duty.
NBN - EN ISO 14414 - EVALUATION ÉNERGÉTIQUE DES SYSTÈMES DE POMPAGE (ISO/ASME 14414:2015) Organization: NBN
Date: 2015-05-22
Description: This International Standard deals with evaluation of systems where a significant component of the energy consumed is by pumps on water applications (centrifugal, mixed flow and axial pumps). It may be applied to pumps of any size and to any pumped liquids that behave as clean cold water.
ASTM F1013 - STANDARD PRACTICE FOR DETERMINING THE PERFORMANCE OF A LIQUID/LIQUID SEPARATOR SYSTEM EMPLOYING A SINGLE-PASS, CONSTANT-RATE, NON-SOLIDS TEST Organization: ASTM
Date: 1992-01-15
Description: The globe valve is throttled to produce a dispersion similar to a centrifugal pump-produced dispersion. 1.4 This practice addresses only separation efficiency.
ASHRAE SYSTEMS & EQUIP IP - 2016 ASHRAE HANDBOOK HVAC SYSTEMS AND EQUIPMENT I-P EDITION Organization: ASHRAE
Date: 2016-01-01
Description: • Chapter 44, Centrifugal Pumps, has new content on vertical, inline, split-coupled pumps; hydronic system pump selection; and differential pressure control.
ASHRAE SYSTEMS & EQUIP SI - 2016 ASHRAE HANDBOOK HVAC SYSTEMS AND EQUIPMENT SI EDITION Organization: ASHRAE
Date: 2016-01-01
Description: • Chapter 44, Centrifugal Pumps, has new content on vertical, inline, split-coupled pumps; hydronic system pump selection; and differential pressure control.

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