27.140 水力工程 标准查询与下载



共找到 1808 条与 水力工程 相关的标准,共 121

Hydropower and water conservancy capital construction project unit project quality grade assessment standard part 13: masonry dam project

ICS
27.140
CCS
P59
发布
2019-06-04
实施
2019-10-01

Technical specification for advanced geological prediction of hydropower and water conservancy underground engineering

ICS
27.140
CCS
P59
发布
2019-06-04
实施
2019-10-01

Pelton turbine operation and maintenance rules

ICS
27.140
CCS
K55
发布
2019-06-04
实施
2019-10-01

Test procedures for chemical grouting materials in hydropower and water conservancy projects

ICS
27.140
CCS
P59
发布
2019-06-04
实施
2019-10-01

Construction specification for temperature control of hydraulic concrete

ICS
27.140
CCS
P59
发布
2019-06-04
实施
2019-10-01

Basic Technical Conditions of Automation Components for Hydropower Plants

ICS
27.140
CCS
P59
发布
2019-06-04
实施
2019-10-01

Unified Power Flow Controllers Part 1: Functional Specifications

ICS
27.140
CCS
F20
发布
2019-06-04
实施
2019-10-01

Reliability Evaluation Regulations for Power Generation Equipment Part 3: Hydropower Units

ICS
27.140
CCS
F23
发布
2019-06-04
实施
2019-10-01

Oil Maintenance Regulations for Turbine Regulating System

ICS
27.140
CCS
K55
发布
2019-06-04
实施
2019-10-01

Guidelines for configuration of hydraulic machinery protection in hydropower plants

ICS
27.140
CCS
F20
发布
2019-06-04
实施
2019-10-01

Guidelines for the Supervision of Equipment for Pumped Storage Units

ICS
27.140
CCS
P59
发布
2019-06-04
实施
2019-10-01

Regulations for operation and maintenance of power system of pumped storage power station

ICS
27.140
CCS
P59
发布
2019-06-04
实施
2019-10-01

Reliability Evaluation Regulations for Power Generation Equipment Part 4: Pumped Storage Units

ICS
27.140
CCS
F23
发布
2019-06-04
实施
2019-10-01

Test procedures for operation, maintenance and overhaul of online monitoring system for status of hydroelectric generating units

ICS
27.140
CCS
F20
发布
2019-06-04
实施
2019-10-01

What is BS EN IEC 62097- Hydraulic machines about? BS EN IEC 62097 is an International Standard that establishes the prototype hydraulic machine efficiency from model test results, with consideration of scale effect including the effect of surface roughness. BS EN IEC 62097 is intended to be used for the assessment of the results of the contractual model tests of hydraulic machines. BS EN IEC 62097 forms an element of a series of standards that deals with model testing of hydraulic machines. The series has two groups describing Hydraulic turbines, storage pumps, and pump-turbines – Model acceptance tests (IEC 60193) Hydraulic machines, radial and axial – Performance conversion method from model to prototype (IEC 62097) Who is BS EN IEC 62097- Hydraulic machines for? BS EN IEC 62097 on hydraulic machines, radial and axial is useful for: Hydraulic turbines manufacturers Storage pumps and pump-turbines manufacturers Research institutes Hydroelectric power plants Why should you use BS EN IEC 62097-

Hydraulic machines, radial and axial. Methodology for performance transposition from model to prototype

ICS
27.140
CCS
发布
2019-05-31
实施
2019-05-31

IEC 62097:2019 establishes the prototype hydraulic machine efficiency from model test results, with consideration of scale effect including the effect of surface roughness. This document is intended to be used for the assessment of the results of contractual model tests of hydraulic machines. This second edition cancels and replaces the first edition published in 2009. This edition constitutes an editorial and technical revision. This edition includes the following significant technical changes with respect to the previous edition: a) In introduction, clarifications have been brought such as addition of a sentence which declares the precedence of IEC 62097 over IEC 60193 if any mismatch is found between them b) In Clauses 3 and 4, corrections of the typographical errors c) In Clause 3: changes to be in accordance with presentation of the terms and structure of IEC 60193 (except for the water temperature) d) In Clause 4: – Deletion of the clause providing the direct step-up procedures for a whole turbine – Introduction of a global view by using turbine A and turbine B instead of model turbine, reference model turbine and prototype turbine – Move of section dealing with “surface roughness of model and prototype” in a new Clause 5 e) In Clause 5: – Introduction of additional chapters to answer comments raised at the CDV stage and to clarify the subject of surface roughness of model and prototype – Introduction of new tables for minimum recommended prototype roughness for new radial or diagonal machines and for new axial turbines – Addition of the explanation about roughness measurement of heavily rusted surface f) In Clause 7 (former Clause 6): – Introduction of a new subclause for clarifications about the assumed maximum hydraulic efficiency, hhAmax – Deletion of the requirement of mutual agreement for the application of the step-up formula for very high efficiency machines exceeding hhAmax – Clarifications of the equations from 22 to 33 by doubling the equations for suiting the “two step method g) In Clauses 6 and 7, correction of typographical errors h) In Clause 8 (former Clause 7), introduction of new figures for clarifying the “2 step” method and the alternative method i) In Annex A, modification of the flux diagram to be in compliance with IEC 60193 j) In Annex B: – Correction of the equation to obtain ΔECO – Deletion of the clause which describes the direct step-up procedures for radial flow machines k) In Annex C, deletion of the clause which describes the direct step-up procedures for axial flow machines l) In Annex D: – notes become main text – change of variable names in Subclause D.1 for clarifications m) Addition of Annex E, about comparison of IEC standards dealing with models: 60193 and 62097 n) In Annex F, clarifications of equations by adding more subscripts o) The Excel sheets attached to the standard are revised as itemized below – Deletion of the routine regarding the direct step-up procedures for a whole turbine – Deletion of the notice which requires mutual agreement when the step-up is applied to high efficiency machines exceeding hhAmax – Addition of the routine to process the normalization of test data ob

Hydraulic machines, radial and axial - Methodology for performance transposition from model to prototype

ICS
27.140
CCS
发布
2019-05-03
实施
2019-05-12 (7)

Hydraulic turbines, storage pumps and pump-turbines - Model acceptance tests

ICS
27.140
CCS
发布
2019-04-25
实施

本标准规定了抽水蓄能电站设计质量控制管理的基本要求。 本标准适用于抽水蓄能电站项目建设单位的设计管理。

Design Quality Control Management Guidelines for Pumped Storage Power Stations

ICS
27.140
CCS
D441
发布
2019-04-24
实施
2022-05-30

1.0.1 本标准规定了抽水蓄能电站计算机监控系统架构与功能、硬件配置与选择、软件的技术要求,以及二次接线等设计中应遵循的原则。 1.0.2 本标准适用于抽水蓄能电站计算机监控系统设计。

Code for design of computer monitoring system for pumped storage power station

ICS
27.140
CCS
D441
发布
2019-04-24
实施
2022-05-30

1.0.1本导则规定了抽水蓄能电站水力过渡过程的计算与分析和调节保证设计值的选取等应遵循的一般原则。 1.0.2本导则适用于新建、改建和扩建的抽水蓄能电站。

Guidelines for Calculation and Analysis of Hydraulic Transition Process of Pumped Storage Power Station

ICS
27.140
CCS
D441
发布
2019-04-24
实施
2022-05-30



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