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GB/T 39599-2020 English PDF

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GB/T 39599-2020: Low impact development stormwater management and harvest - Basic terminology
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Basic data

Standard ID GB/T 39599-2020 (GB/T39599-2020)
Description (Translated English) Low impact development stormwater management and harvest - Basic terminology
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard A22
Classification of International Standard 01.040.01
Word Count Estimation 20,279
Date of Issue 2020-12-14
Date of Implementation 2020-12-14
Regulation (derived from) National Standard Announcement No. 28 of 2020
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration
Summary This standard specifies the basic terms, facility terms and technical terms in the practice of low-impact development rainwater control and utilization. This standard applies to the design, planning, construction, maintenance, management and evaluation of low-impact development rainwater control and utilization systems.

GB/T 39599-2020: Low impact development stormwater management and harvest - Basic terminology

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(Low-impact development rainwater control and utilization basic terms) ICS 01:040:01 A22 National Standards of People's Republic of China Basic terminology for low-impact development rainwater control and utilization 2020-12-14 release 2020-12-14 implementation State Administration for Market Regulation Issued by the National Standardization Management Committee

Table of contents

Preface Ⅲ 1 Scope 1 2 Basic terminology 1 3 Facilities term 3 4 Technical terms 7 Reference 11 Index 12

Foreword

This standard was drafted in accordance with the rules given in GB/T 1:1-2009: This standard was proposed and managed by the China National Institute of Standardization: Drafting organizations of this standard: Qingdao Institute of Standardization, China National Institute of Standardization, Beijing Jianzhu University, Qingdao International Economic Cooperation Zone (Sino-German Ecological Park) Management Committee, Fuzhou Leyi Ecological Technology Co:, Ltd:, Qingdao Technological University, Qingdao Technology Standard Scientific Research Institute, Shenzhen Batian Ecological Engineering Co:, Ltd: The main drafters of this standard: Xu Jing, Yun Zhenyu, Li Junqi, Sheng Tiantian, Hu Liangbing, Zhang Wei, Tan Qiqi, Wang Weiqun, Qiao Yinhuan, Cui Qinghui, Li Mengjie, Zhao Dan, Han Zhe, Wu Meiqiang, Zhou Jianbin, Bi Xuejun, Zhao Fei, Huang Peizhao, Jin Xiaoshi, You Shenghua: Basic terminology for low-impact development rainwater control and utilization

1 Scope

This standard defines the basic terms, facility terms and technical terms in the practice of low-impact development rainwater control and utilization: This standard applies to the design, planning, construction, maintenance, management and evaluation of low-impact development rainwater control and utilization systems:

2 Basic terminology

2:1 Low impact development; LID Emphasizing that urban development should reduce the impact on the environment, its core is based on the concept of source control and reducing impact However, appropriate drainage projects, rational use of space and corresponding measures to control storm runoff, reduce urban runoff pollution (2:5): Note: Rewrite GB 50014-2006 (2016 edition) and define 2:1:8B: 2:2 Spongecity Through the management and control of urban planning and construction, starting from "source emission reduction, process control, system governance", comprehensively adopting "infiltration, retention, storage, net, utilization, Technical measures such as “drainage”, coordinate water quantity and water quality, ecology and safety, distribution and concentration, green and gray, landscape and function, onshore and offshore, The relationship between the ground and the underground can effectively control urban rainfall and runoff (4:2:1), and minimize the impact of urban development and construction on the original natural water: The cultural characteristics and the destruction caused by the water ecological environment enable cities to be like "sponges" in adapting to environmental changes and resisting natural disasters: It has good “flexibility” to realize the urban development mode of natural accumulation, natural penetration and natural purification, which is conducive to the restoration of urban water ecology and conservation: The multiple goals of raising urban water resources, improving urban water environment, ensuring urban water safety, and reviving urban water culture: [GB/T 51345-2018, definition 2:1:1] 2:3 Spongeeffect The natural hydrological feature maintenance and restoration effect realized by the construction of sponge city (2:2): [GB/T 51345-2018, definition 2:1:3] 2:4 Urbanwaterbody Natural or artificial water bodies such as rivers, lakes, wetlands, ponds and ponds in the urban planning area: [GB/T 51345-2018, definition 2:1:9] 2:5 Runoffpolution Through rainfall and surface runoff, pollutants in the atmosphere and the surface are brought into the receiving water body, and the receiving water body is polluted: It is the main source of urban non-point source pollution: 2:6 Runoffsourcecontrolsystem Before rainwater is discharged into the municipal drainage pipe system, in order to achieve control of rainwater runoff generation, reduce rainwater runoff pollution (2:5), collect and use A control system adopted for the purpose of rainwater and peak flow reduction:

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