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2016-01-25 Energy Conservation Program - Test Procedure for Pumps - Final Rule (Us Energy Efficiency and Renewable Energy Office Regulation) (Eere) (2018 Edition)

Author : The Law The Law Library
Publisher : Createspace Independent Publishing Platform
Page : 148 pages
File Size : 20,33 MB
Release : 2018-07-17
Category :
ISBN : 9781723260438

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2016-01-25 Energy Conservation Program - Test Procedure for Pumps - Final rule (US Energy Efficiency and Renewable Energy Office Regulation) (EERE) (2018 Edition) The Law Library presents the complete text of the 2016-01-25 Energy Conservation Program - Test Procedure for Pumps - Final rule (US Energy Efficiency and Renewable Energy Office Regulation) (EERE) (2018 Edition). Updated as of May 29, 2018 On April 1, 2015, the U.S. Department of Energy (DOE) issued a notice of proposed rulemaking (NOPR) to establish new definitions and a new test procedure for pumps. That proposed rulemaking serves as the basis for this final rule. This final rule establishes a new test procedure for pumps, as well as associated definitions and parameters that establish the scope of applicability of the test procedure. Specifically, the pumps test procedure adopted in this final rule incorporates by reference the test procedure from the Hydraulic Institute (HI)-standard 40.6-2014, "Methods for Rotodynamic Pump Efficiency Testing"-with several clarifications and modifications, related to measuring the hydraulic power, shaft power, and electric input power of pumps, inclusive of electric motors and any continuous or non-continuous controls. The new pumps test procedure will be used to determine the constant load pump energy index (PEI CL) for pumps sold without continuous or non-continuous controls and the variable load pump energy index (PEI VL) for pumps sold with continuous or non-continuous controls. The final rule incorporates certain recommendations made by the commercial and industrial pumps (CIP) Working Group, which was established under the Appliance Standards Rulemaking Federal Advisory Committee (ASRAC), as well as comments submitted by interested parties in response to the April 2015 pumps test procedure NOPR. This book contains: - The complete text of the 2016-01-25 Energy Conservation Program - Test Procedure for Pumps - Final rule (US Energy Efficiency and Renewable Energy Office Regulation) (EERE) (2018 Edition) - A table of contents with the page number of each section

2017-08-07 Energy Conservation Program - Test Procedure for Dedicated-Purpose Pool Pumps - Final Rule (Us Energy Efficiency and Renewable Energy Office Regulation) (Eere) (2018 Edition)

Author : The Law The Law Library
Publisher : Createspace Independent Publishing Platform
Page : 146 pages
File Size : 45,43 MB
Release : 2018-07-17
Category :
ISBN : 9781723288142

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2017-08-07 Energy Conservation Program - Test Procedure for Dedicated-Purpose Pool Pumps - Final rule (US Energy Efficiency and Renewable Energy Office Regulation) (EERE) (2018 Edition) The Law Library presents the complete text of the 2017-08-07 Energy Conservation Program - Test Procedure for Dedicated-Purpose Pool Pumps - Final rule (US Energy Efficiency and Renewable Energy Office Regulation) (EERE) (2018 Edition). Updated as of May 29, 2018 On September 20, 2016, the U.S. Department of Energy (DOE) issued a notice of proposed rulemaking (NOPR) to establish a new metric, as well as new definitions, test procedures, certification requirements, enforcement testing procedures, and labeling provisions for dedicated-purpose pool pumps (DPPPs). That proposed rulemaking serves as the basis for the final rule. Specifically, DOE is adopting a test procedure for measuring the weighted energy factor (WEF) for certain varieties of dedicated-purpose pool pumps. This final rule incorporates by reference certain sections of the industry test standard Hydraulic Institute (HI) 40.6-2014, "Methods for Rotodynamic Pump Efficiency Testing" as the basis of the adopted test procedure. The definitions, test procedures, certification requirements, enforcement testing procedures, and labeling provisions are based on the recommendations of the DPPP Working Group, which was established under the Appliance Standards Rulemaking Federal Advisory Committee (ASRAC). This book contains: - The complete text of the 2017-08-07 Energy Conservation Program - Test Procedure for Dedicated-Purpose Pool Pumps - Final rule (US Energy Efficiency and Renewable Energy Office Regulation) (EERE) (2018 Edition) - A table of contents with the page number of each section

Rotodynamic Pump

Author : Rotodynamic pump : hydraulic performance acceptance tests : grades 1 and 2
Publisher :
Page : 62 pages
File Size : 21,41 MB
Release : 2001
Category :
ISBN : 9780733737602

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Positive Displacement Pumps

Author : American Institute of Chemical Engineers (AIChE)
Publisher : John Wiley & Sons
Page : 96 pages
File Size : 24,13 MB
Release : 2010-08-05
Category : Technology & Engineering
ISBN : 0470924748

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Positive Displacement Pumps is a current reference guide for positive displacement pumps for both traditional and state-of-the-art testing methods, and serves as a bridge between textbooks and manufacturer's literature by providing equipment testing practices based on technical know-how, practical experience, and academic theory. With its simple, practical focus, this book not only is a resource guide to any engineer's task, but also adds important information to the overall literature of pump fundamentals and operating reliability: Written for field users, and terminology concisely defined. A mentoring guide highlighting areas for troubleshooting problem-solving when performance criteria are not met. Produced with industry consensus and gone through the same rigorous technical review process as other ETPC procedures.

Rotodynamic Pump Design

Author : R. K. Turton
Publisher : Cambridge University Press
Page : 212 pages
File Size : 17,68 MB
Release : 1994-01-13
Category : Technology & Engineering
ISBN : 0521305020

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This book provides a brief but thorough account of the basic principles of good pump design. It presents the basic hydraulic equations, including cavitation, and discusses the principles that underlie the correct performance of centrifugal pumps and axial machines, giving two design examples. It then outlines analytical methods for flow calculations, including special techniques used in computer aided design. Shafts, bearings, seals and drives, design for difficult fluids, and codes and practices are treated in the last three chapters.