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SH 3038-2000 in English

SH 3038-2000 in English

SUPERSEDED

Code for Electric Power Design in Petrochemical Plants

  • Issued on:2000-10-26
  • Implemented on:2001-03-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $710.00
$689.00
Standard No: SH 3038-2000
Document status: SUPERSEDED
Superseded by: SH/T 3038-2017 Code for Electric Power Design in Petrochemical Plants
Superseded on: 2017-10-01
Title in English: Code for Electric Power Design in Petrochemical Plants
Title in Chinese: 石油化工企业生产装置电力设计技术规范
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2000-10-26
Implemented on: 2001-03-01
Superseding: SHJ 38-1991 Power Design Specification For Petrochemical Enterprise Units
Chinese Classification: P72-Petrochemical and chemical industry engineering
Professional Classification: SH-Petrochemical
Related Keywords: electric power design
power design
power equipment
power distribution
power supply
Related Topics: Petrochemical
Chemical companies
Power supply system design for petrochemical enterprises
sh 3038-2000
sh3038
Power design of petrochemical plant
sh 3038
"Technical Specifications for Power Design of Production Plants in Petrochemical Enterprises"
Power design of production equipment in petrochemical enterprises
sh3038 2000
sh3038---2000
sh3038+2000
"Code for Design of Power Supply System for Petrochemical Enterprises"
sh 3038 2000
sh3038-2000
PetroChina
petrochemical technology
petrochemical enterprises
Enterprise production technical regulations
Power design of petrochemical production equipment
Production device
sh+3038
Chemical companies
Device Industrial Design
Analytical device industrial design
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petrochemical enterprises
Lightning protection design for petrochemical plant
Configuration of Production Safety Facilities in Thermal Power Enterprises
Power design technology for production equipment in petrochemical enterprises
Safety design of calcium carbide device
High-altitude working technology in petrochemical engineering
Petrochemical dcs design
Safety Design Code for Calcium Carbide Devices
Petrochemical Enterprise Design Specifications Co., Ltd.
Petrochemical plant telecommunications design
Petrochemical enterprise equipment
Production enterprise cofferdam design
Guide enterprises to standardize production
Thermal power generation enterprise production safety facilities configuration industry
Design of emergency isolation control valve for fire in petrochemical plant
Analysis of technical standards of petroleum enterprises
Illumination design for petrochemical enterprises
What are the technical specifications for petrochemical construction?
Technical Specifications for Chemical Metrology
Measurement Enterprise Configuration
Garment industry enterprise process design technology
Power supply design for petrochemical enterprises
Design specifications for breathing valves for petrochemical enterprises
Civil engineering design for petrochemical industry
Chemical production unit capacity design
Electrical engineering design for petrochemical enterprises
Petrochemical oil blending facility technology


1 General Principles
1.0.1 This specification is applicable to the power design of newly built, reformed or expanded plants in petrochemical enterprises (including oil refining, chemical and chemical fiber plants, hereinafter referred to as “the plant”).
1.0.2 The following principles shall be met for the electric power design of the plants.
(1) The technical and economic policies of the state shall be earnestly implemented, so as to provide cost effective and rational designs that use sophisticated technology and ensure personal and equipment safety and reliable power supply;
(2) In line with the features, scales and development plans of the projects, the short term construction and long term development shall be well combined, with the short term construction to be given the first place and proper development port to be reserved, but without any land reserved for future expansion;
(3) Reasonable arrangement and design plans shall be worked out through overall planning and all-around consideration based on the load nature, capacity and environmental conditions, etc.;
(4) Different energy saving measures shall be actively taken in the electric power design, in an effort to reduce the consumption of power;
(5) Any relevant new theory, new technology, new equipment or new material that proves effective through practice shall be adopted, in an effort create good economic, social and environmental benefits.
1.0.3 In implementation of this Code, the provisions under relevant current state and sector standards and codes shall also be conformed to.

Contents
Code for Electric Power Design in Petrochemical Plants
1 General Principles
2 Terms
3 Power Supply & Distribution System
3.1 Load Classification
3.2 Power Supply Requirements
3.3 Power supply and distribution system
3.4 Selection of voltage and quality of electric energy
3.5 Inactive power compensation
4 Explosion & Fire Hazard Environments
4.1 General rules
4.2 Division of hazardous zones in explosive gas environment
4.3 Ranges of hazardous zones in an explosive gas environment
4.4 Electrical equipment in explosive gas environment
4.5 Division of hazardous zones in explosive dust environment
4.6 Ranges of hazardous zones in an explosive dust environment
4.7 Electrical equipment in an explosive dust environment
4.8 Zoning of fire hazardous environment
4.9 Electrical equipment in the fire hazardous environment
5. Transformer and Switchgear Substations
5.1 Site Selection of Substations
5.2 Selection of 6 ~35kV Major Electrical Equipment
5.2.1 Principles for selection of major electrical equipment shall be as follows:
5.2.3 Principles for selection of circuit breakers
5.2.4 Principles for selection of current transformers
5.2.5 Principles for selection of voltage transformer:
5.2.6 Principles for selection of isolating breakers
5.2.7 Principles for selection and installation of arc-extinguishing coils
5.2.8 Principles for selection of emergency diesel generator set
5.2.9 Principles for selection of lightning arresters
5.3 Selection of Low Voltage Equipment
5.4 Arrangement of Transformer and Switchgear Units
5.5 Requirement for Buildings
5.6 Fire Protection Requirements
6. Automatic Devises and Microprocessor-based Automation System
6.1 Automatic Switching-over of Power Supply
6.2 Automatic Restart-up of Motors
6.3 Microprocessor-based Integrated Automation System
7. Selection and Laying of Cables
7.1 Selection of cables
7.2 General Requirement for Cable Laying
7.3 Cable Laying Method
8 Power Distribution
8.1 General provisions
8.2 Protection of motor and LV distribution line
8.3 Set up of motor control devices
9 Lighting
9.1 lighting modes and categories
9.2 Lighting power distribution and control
9.3 Light source selection
9.4 Selection and arrangement of illuminators
10 Lightning protection and ground
10.1 Categories and measures of lightning protection areas
10.2 Lightning protection of power equipment
10.3 Ground methods and basic requirements
10.4 Grounding of electrical equipment
11 Electrical energy saving
Appendix A Classification of Protection Classes for Enclosures of Electrical Equipment
Appendix B Classification of Zones of Explosion Hazardous Locations for Petrochemical Production Plant
Appendix C Illustrations for Classification of Explosion Hazardous Zones and Tables of Classification Conditions for Hazardous Locations
Appendix D Examples of Classes and Groups of Gas/Vapor Explosion Hazardous Mixtures
Appendix E Table of Characteristics of Explosion Hazardous Dusts
Wording Explanation

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