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Position: Chinese Standard in English/GB 50014-2006(2014)
GB 50014-2006(2014)   Code for Design of Outdoor Wastewater Engineering (English Version)
Standard No.: GB 50014-2006(2014) Status:superseded remind me the status change

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Target Language:English File Format:PDF
Word Count: 36000 words Translation Price(USD):180.0 remind me the price change

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Implemented on:2006-6-1 Delivery: via email in 1 business day

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,2021-10-1,2006-6-1,4714E87BC863A87F1419329786553
Standard No.: GB 50014-2006(2014)
English Name: Code for Design of Outdoor Wastewater Engineering
Chinese Name: 室外排水设计规范
Professional Classification: GB    National Standard
Source Content Issued by: MOC
Issued on: 2006-01-18
Implemented on: 2006-6-1
Status: superseded
Superseded by:GB 50014-2021 Standard for design of outdoor wastewater engineering
GB 50014-2006(2016) Code for Design of Outdoor Wastewater Engineering
Superseded on:2021-10-1
Superseding:GB 50014-2006 Code for Design of Outdoor Wastewater
GB 50014-2006(2011) Code for Design of Outdoor Wastewater
Target Language: English
File Format: PDF
Word Count: 36000 words
Translation Price(USD): 180.0
Delivery: via email in 1 business day
Code for Design of Outdoor Wastewater Engineering 室外排水设计规范 (2014 Edition) 1 General Provisions 1.0.1 This code was formulated with a view to making the wastewater engineering design in China implement the scientific outlook on development and comply with the national laws and regulations, and achieving the goals of prevention and control water pollution, enhancing and protecting environment, improving the health level of the people and ensuring the safety. 1.0.2 This code is applicable to the design of permanent outdoor wastewater engineering in the constructed, extended and renovated cities and towns, industrial areas and residential areas. 1.0.3 The design of wastewater engineering shall be mainly in accordance with the approved urban overall planning and wastewater engineering professional planning, shall be proceeded from the overall situation, and correctly handle the relation between industry and agriculture, urbanized areas and nonurbanized areas, short-term and long-term, concentration and dispersion, and discharge and utilization according to the planning age limit, engineering scale, economic benefit, social benefit and environmental benefit. Upon comprehensive verification, the design of wastewater engineering shall be able to accomplish environmental protection, economization of lands, advanced technology, economy and rationality, safety and reliability, and being suitable for local actual conditions. ...... ...... 2 Terms and Symbols 2.1 Terms 2.1.1 Wastewater engineering, sewerage Engineering of collecting, transporting, treating, recycling and disposing the wastewater and storm water. 2.1.2 Waste water engineering system An entirety composed the wastewater and storm water collecting, transporting, treating, recycling and disposing facilities in a certain way. 2.1.3 Sewerage system Way that collects and transports the urban wastewater and storm water in one district, including two basic ways: combined system and separate system. 2.1.4 Wastewater facilities The general term of the pipes, structures, equipment and the like in the wastewater engineering. 2.1.5 Combined system The sewerage way to collect and transport the urban wastewater and storm water by using the same pipe ditch system. 2.1.5A Combined sewer overflow The condition that the water exceeding the interception capacity of combined waste water engineering system drains into the water body at the time of raining. 2.1.6 Separate system The sewerage way to collect and transport the urban wastewater and storm water by separately using different pipe ditch systems.
1 General Provisions 2 Terms and Symbols 2.1 Terms 2.2 Symbols 3 Designed Flow Amount and Water Quality 3.1 Domestic Sewerage Amount and Industrial Wastewater Amount 3.2 Storm Water Amount 3.3 Combined Water Amount 3.4 Designed Water Quality 4 Sewerage Pipe Ditch and Ancillary Structures 4.1 General Requirements 4.2 Hydraulic Calculation 4.3 Pipe 4.4 Inspection Well 4.5 Drop Well 4.6 Water Seal Well 4.7 Storm Water Inlet 4.8 Intercepting Well 4.9 Water Outlet 4.10 Drainage of Interchange 4.11 Inverted Siphon 4.12 Ditch 4.13 Pipe Integration 4.14 Strom Water Storage Tank 4.15 Storm Water Infiltration Facilities 4.16 Comprehensive Utilization of Storm Water 4.17 Local Flooding Prevention and Control Facilities 5 Pumping Stations 5.1 General Requirements 5.2 Designed Flow Amount and Designed Head 5.3 Collecting Tank 5.4 Design of Pump House 5.5 Outlet Water Facilities 6 Wastewater Treatment 6.1 Site Selection and General Layout 6.2 General Requirements 6.3 Bar Screen 6.4 Grit Chamber 6.5 Settling tank 6.6 Activated Sludge Process 6.7 Chemical Phosphorus Removal 6.8 Oxygen Supply Facilities 6.9 Biofilm Process 6.10 Returned Sludge and Excess Activated Sludge 6.11 Natural Treatment of Wastewater 6.12 Advanced Wastewater Treatment and Recycling 6.13 Sterilization 7 Sludge Treatment and Disposal 7.1 General Requirements 7.2 Sludge Thickening 7.3 Sludge Digestion 7.4 Mechanical Sludge Dewatering 7.5 Sludge Delivery 7.6 Sludge Drying and Incineration 7.7 Sludge Integrated Application 8 Inspection and Control 8.1 General Requirements 8.2 Inspection 8.3 Control 8.4 Computer Control and Management System Appendix A Method of Establishing Rainfall Intensity Formula Appendix B Minimum Clearance of Sewerage Pipes and Other Underground Pipelines (Structures) Explanation of Wording in This Code
Referred in GB 50014-2006(2014):
*GB/T 95-2002 Plain washers - Product grade C
*GB/T 2664-2009 Mens suits and coats
*GB 4706.1-2005 Household and Similar Electrical Appliances – Safety - Part 1: General Requirements
*GB 17625.1-2022 Electromagnetic compatibility—Limits—Part 1: Limits for harmonic current emissions (equipment input current ≤ 16A per phase)
*GB/T 14048.5-2017 Low-voltage switchgear and controlgear-Part 5-1:Control circuit devices and switching element-Electromechanical control circuit devices
*GB 17625.1-2022 Electromagnetic compatibility—Limits—Part 1: Limits for harmonic current emissions (equipment input current ≤ 16A per phase)
*QB/T 1333-2018 Handbag and Knapsack
*GB 2762-2022 National Food Safety Standard - Maximum Levels of Contaminants in Foods
*GB/T 22849-2014 Knitted T-shirt
*GB 5749-2022 Standards for drinking water quality
*GB 14748-2006 Safety Requirements for Wheeled Child Conveyances
*GB/T 1591-2018 High strength low alloy structural steels
*GB 4943.1-2011 Information technology equipment -Safety - Part 1: General requirements
*GB 2763-2021 National Food Safety Standard-Maximum Residue Limits for Pesticides in Food
GB 50014-2006(2014) is referred in:
* HJ 2019-2012 Technical specification for waste water treatment and reuse of iron and steel industry
* GB 50157-2013 Code for Design of Metro
* CJJ 37-2012 Code for design of urban road engineering
* GB 50187-2012 Code for Design of General Layout of Industrial Enterprises
*GB 50015-2019 Standard for design of building water supply and drainage
Code of China
Standard
GB 50014-2006(2014)  Code for Design of Outdoor Wastewater Engineering (English Version)
Standard No.GB 50014-2006(2014)
Statussuperseded
LanguageEnglish
File FormatPDF
Word Count36000 words
Price(USD)180.0
Implemented on2006-6-1
Deliveryvia email in 1 business day
Detail of GB 50014-2006(2014)
Standard No.
GB 50014-2006(2014)
English Name
Code for Design of Outdoor Wastewater Engineering
Chinese Name
室外排水设计规范
Chinese Classification
Professional Classification
GB
ICS Classification
Issued by
MOC
Issued on
2006-01-18
Implemented on
2006-6-1
Status
superseded
Superseded by
GB 50014-2021 Standard for design of outdoor wastewater engineering
GB 50014-2006(2016) Code for Design of Outdoor Wastewater Engineering
Superseded on
2021-10-1
Abolished on
Superseding
GB 50014-2006 Code for Design of Outdoor Wastewater
GB 50014-2006(2011) Code for Design of Outdoor Wastewater
Language
English
File Format
PDF
Word Count
36000 words
Price(USD)
180.0
Keywords
GB 50014-2006(2014), GB/T 50014-2006(2014), GBT 50014-2006(2014), GB50014-2006(2014), GB 50014, GB50014, GB/T50014-2006(2014), GB/T 50014, GB/T50014, GBT50014-2006(2014), GBT 50014, GBT50014
Introduction of GB 50014-2006(2014)
Code for Design of Outdoor Wastewater Engineering 室外排水设计规范 (2014 Edition) 1 General Provisions 1.0.1 This code was formulated with a view to making the wastewater engineering design in China implement the scientific outlook on development and comply with the national laws and regulations, and achieving the goals of prevention and control water pollution, enhancing and protecting environment, improving the health level of the people and ensuring the safety. 1.0.2 This code is applicable to the design of permanent outdoor wastewater engineering in the constructed, extended and renovated cities and towns, industrial areas and residential areas. 1.0.3 The design of wastewater engineering shall be mainly in accordance with the approved urban overall planning and wastewater engineering professional planning, shall be proceeded from the overall situation, and correctly handle the relation between industry and agriculture, urbanized areas and nonurbanized areas, short-term and long-term, concentration and dispersion, and discharge and utilization according to the planning age limit, engineering scale, economic benefit, social benefit and environmental benefit. Upon comprehensive verification, the design of wastewater engineering shall be able to accomplish environmental protection, economization of lands, advanced technology, economy and rationality, safety and reliability, and being suitable for local actual conditions. ...... ...... 2 Terms and Symbols 2.1 Terms 2.1.1 Wastewater engineering, sewerage Engineering of collecting, transporting, treating, recycling and disposing the wastewater and storm water. 2.1.2 Waste water engineering system An entirety composed the wastewater and storm water collecting, transporting, treating, recycling and disposing facilities in a certain way. 2.1.3 Sewerage system Way that collects and transports the urban wastewater and storm water in one district, including two basic ways: combined system and separate system. 2.1.4 Wastewater facilities The general term of the pipes, structures, equipment and the like in the wastewater engineering. 2.1.5 Combined system The sewerage way to collect and transport the urban wastewater and storm water by using the same pipe ditch system. 2.1.5A Combined sewer overflow The condition that the water exceeding the interception capacity of combined waste water engineering system drains into the water body at the time of raining. 2.1.6 Separate system The sewerage way to collect and transport the urban wastewater and storm water by separately using different pipe ditch systems.
Contents of GB 50014-2006(2014)
1 General Provisions 2 Terms and Symbols 2.1 Terms 2.2 Symbols 3 Designed Flow Amount and Water Quality 3.1 Domestic Sewerage Amount and Industrial Wastewater Amount 3.2 Storm Water Amount 3.3 Combined Water Amount 3.4 Designed Water Quality 4 Sewerage Pipe Ditch and Ancillary Structures 4.1 General Requirements 4.2 Hydraulic Calculation 4.3 Pipe 4.4 Inspection Well 4.5 Drop Well 4.6 Water Seal Well 4.7 Storm Water Inlet 4.8 Intercepting Well 4.9 Water Outlet 4.10 Drainage of Interchange 4.11 Inverted Siphon 4.12 Ditch 4.13 Pipe Integration 4.14 Strom Water Storage Tank 4.15 Storm Water Infiltration Facilities 4.16 Comprehensive Utilization of Storm Water 4.17 Local Flooding Prevention and Control Facilities 5 Pumping Stations 5.1 General Requirements 5.2 Designed Flow Amount and Designed Head 5.3 Collecting Tank 5.4 Design of Pump House 5.5 Outlet Water Facilities 6 Wastewater Treatment 6.1 Site Selection and General Layout 6.2 General Requirements 6.3 Bar Screen 6.4 Grit Chamber 6.5 Settling tank 6.6 Activated Sludge Process 6.7 Chemical Phosphorus Removal 6.8 Oxygen Supply Facilities 6.9 Biofilm Process 6.10 Returned Sludge and Excess Activated Sludge 6.11 Natural Treatment of Wastewater 6.12 Advanced Wastewater Treatment and Recycling 6.13 Sterilization 7 Sludge Treatment and Disposal 7.1 General Requirements 7.2 Sludge Thickening 7.3 Sludge Digestion 7.4 Mechanical Sludge Dewatering 7.5 Sludge Delivery 7.6 Sludge Drying and Incineration 7.7 Sludge Integrated Application 8 Inspection and Control 8.1 General Requirements 8.2 Inspection 8.3 Control 8.4 Computer Control and Management System Appendix A Method of Establishing Rainfall Intensity Formula Appendix B Minimum Clearance of Sewerage Pipes and Other Underground Pipelines (Structures) Explanation of Wording in This Code
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Keywords:
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