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(Energy performance measurement and verification guidelines)
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GB/T 39532-2020
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Basic data | Standard ID | GB/T 39532-2020 (GB/T39532-2020) | | Description (Translated English) | (Energy performance measurement and verification guidelines) | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | F01 | | Word Count Estimation | 19,143 | | Date of Issue | 2020-11-19 | | Date of Implementation | 2021-06-01 | | Regulation (derived from) | National Standard Announcement No. 26 of 2020 | | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GB/T 39532-2020: (Energy performance measurement and verification guidelines)---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
(Energy performance measurement and verification guidelines)
ICS 27.010
F01
National Standards of People's Republic of China
Energy performance measurement and verification guidelines
2020-11-19 released
2021-06-01 implementation
State Administration for Market Regulation
Issued by the National Standardization Management Committee
Table of contents
Preface Ⅲ
Introduction Ⅳ
1 Scope 1
2 Normative references 1
3 Terms and definitions 1
4 Principles of measurement and verification 2
4.1 General 2
4.2 Appropriate accuracy and uncertainty management 2
4.3 Transparency and reproducibility of the measurement and verification process 2
4.4 Data management and measurement planning 2
4.5 Measuring and verifying the competence of personnel 2
4.6 Fairness 2
4.7 Confidentiality 3
4.8 Use appropriate methods 3
5 Measurement and verification plan 3
5.1 General 3
5.2 Scope and purpose 3
5.3 Energy performance improvement measures 4
5.4 Measuring and verifying boundaries 4
5.5 Preliminary evaluation of measurement and verification plan 5
5.6 Characteristic description and selection of energy performance indicators (including energy performance parameters EnPI) 5
5.6.1 General 5
5.6.2 Characterization of energy performance indicators 5
5.6.3 Selection of energy performance indicators 5
5.7 Characterization and selection of related variables and static factors 6
5.8 Selection of measurement and verification methods and calculation methods 6
5.9 Data collection planning 6
5.10 Establishment and adjustment of energy benchmarks 7
5.10.1 Establishment of energy benchmarks 7
5.10.2 Adjustment of energy benchmark 8
5.11 Required resources 8
5.12 Functions and responsibilities 8
5.13 Documented measurement and verification plan 8
6 Implementation of the measurement and verification program 8
6.1 Data collection 8
6.2 Verify the implementation of energy performance improvement measures 8
6.3 Monitoring expected and unpredictable changes 9
6.4 Analysis of measurement and verification 9
6.5 Measurement and verification report 9
6.6 Assess the need to repeat related processes 10
7 Uncertainty 10
8 Documentation of measurement and verification 10
Appendix A (informative appendix) Structural changes of this standard compared with ISO 50015.2014 12
Appendix B (informative appendix) Measurement and verification flow chart 14
Foreword
This standard was drafted in accordance with the rules given in GB/T 1.1-2009.
This standard uses the redrafting method to amend and adopt ISO 50015.2014 "Energy Management System Organization Energy Performance Measurement and Verification Base"
These Principles and Guidelines.
Compared with ISO 50015.2014, this standard has many adjustments in structure. Appendix A lists this standard and ISO 50015.2014
A list of changes in chapter numbers.
The main technical differences between this standard and ISO 50015.2014 and the reasons are as follows.
--- Regarding normative reference documents, this standard has made adjustments with technical differences to adapt to my country's technical conditions and adjustments.
The situation is collectively reflected in Chapter 2 "Normative Reference Documents", and the specific adjustments are as follows.
● Added reference to GB/T 13234 that is not equivalent to international standards, and GB/T 23331 that is equivalent to international standards and amendments
Adopt international standard GB/T 36713.
---The benchmark period (3.1), energy performance improvement measures (3.5), energy (3.6), energy benchmark (3.7),
Energy consumption (3.8), energy performance (3.9), energy performance improvement (3.10), energy performance parameters (3.11), energy use (3.12),
Unconventional adjustments (3.16), organization (3.17), related variables (3.18), reporting period (3.19), main energy use (3.21) and static
The terms and definitions of factors (3.22), which have been mentioned in GB/T 13234, GB/T 23331 and GB/T 36713
And, only the important terms and definitions that are directly related to this standard and have not been defined or adjusted are retained.
This standard has made the following editorial changes.
---Change the standard name to "Guidelines for Energy Performance Measurement and Verification";
---Delete the example of measurement uncertainty in informative Appendix B;
---Adjust the sequence of the measurement and verification flowchart of Appendix A to Appendix B;
---References are deleted.
This standard was proposed and managed by the National Standardization Technical Committee on Energy Foundation and Management (SAC/TC20).
Drafting organizations of this standard. China National Institute of Standardization, Beijing Guojin Hengxin Certification Co., Ltd., Beijing Guojian Lianxin Certification Center Co., Ltd.
Company, China Classification Society Quality Certification Corporation, China National Accreditation Center for Conformity Assessment, Zhejiang Caidie Industrial Co., Ltd., Huazhong Science and Technology University
School, Xiamen Hongyishun Energy Conservation and Environmental Protection Energy Service Co., Ltd., China University of Petroleum (Beijing), New Century Inspection and Certification Co., Ltd., China
Certification Center Co., Ltd., Hebei Institute of Standardization, Shenzhen Huatest International Certification Co., Ltd., Fangyuan Mark Certification Group Co., Ltd., Shanxi
Dongzhengxiang International Low Carbon Technology Co., Ltd., Shenzhen Institute of Standards and Technology, Beijing United Intelligence Certification Co., Ltd., Zhongguancun Modern Energy
Environmental Service Industry Alliance, Beijing Lichuang Wisdom Technology Co., Ltd., Guangzhou Wisdom Energy Co., Ltd.
The main drafters of this standard. Zhang Lan, Li Pengcheng, Ding Qing, Bai Yan, Han Guanghui, Gong Xiaoqiu, Lin Ling, Zhang Yu, Yin Xiaomin, Guo Junling, Jin Shiping,
Cheng Shuiran, Yu Haiyang, Long Yan, Li Yan, Hou Shan, Chen Lili, Dong Xuli, Li Meng, Zhang Huandi, Jia Yingxin, Zhou Lu, Liu Bin, Wang Shiyan, Xu Lijie,
Liu Qingyi, Jin Yuhui, Wang Shuanghua, Shi Xinhua, Meng Yongge, Li Qingju, An Shuo, Chen Yajun.
Introduction
The purpose of this standard is to measure and verify the organization's energy performance and energy performance improvement (M
The significance of verification is to improve the credibility of energy performance and energy performance improvement results. Reliable results help promote energy performance
Improve.
This standard applies to any type of energy use.
This standard applies to the following organizational levels.
---All kinds of organizations, regardless of whether they have established an energy management system (such as ISO 50001);
---Used for measurement and verification of energy performance and energy performance improvement;
---The whole organization or part of the organization.
This standard applies to organizations of any size, measurement and verification personnel, and other related parties that report energy performance results through measurement and verification.
Guan Fang. The principles and guidelines given in this standard can be used alone or in combination with other standards or regulations. The principle proposed by this standard
The rules and guidelines are not required by ISO 50001, but can be used for organizations that are using ISO 50001.
This standard does not specify calculation methods, but establishes relevant measurement and verification and the application of different calculation methods in measurement and verification.
Universal concept. Relevant principles and guidelines apply to various measurement and verification methods.
Appendix B outlines the measurement and verification process in this standard.
Energy performance measurement and verification guidelines
1 Scope
This standard establishes general guidelines for energy performance measurement and verification.
This standard applies to any organization.
2 Normative references
The following documents are indispensable for the application of this document. For dated reference documents, only the dated version applies to this document.
For undated references, the latest version (including all amendments) applies to this document.
GB/T 13234 Calculation method of energy saving per unit of energy consumption (GB/T 13234-2018, ISO 50047.2016, NEQ)
GB/T 23331 Energy Management System Requirements and Guidelines (GB/T 23331-2020, ISO 50001.2018, IDT)
GB/T 36713 Energy Management System Energy Benchmarks and Energy Performance Parameters (GB/T 36713-2018, ISO 50006.2014, MOD)
3 Terms and definitions
The following terms and definitions defined in GB/T 13234, GB/T 23331 and GB/T 36713 apply to this document.
3.1
Indirect effects
Indirect energy impact or non-energy impact.
3.2
Indirect energy impact
Energy performance improvement measures have an impact on the organization’s energy performance beyond the direct impact.
Example. As the efficiency of the lighting system is improved, the load on the refrigeration system is reduced.
3.3
Non-energy impact
After the implementation of energy performance improvement measures, other impacts besides energy impact.
Example. The installation of an energy-efficient washing machine not only saves energy but also saves water, which has a non-energy impact of water saving.
3.4
Measurement and verification
Within the given measurement and verification boundary (3.5), the process of planning, measuring, collecting data, analyzing, verifying and reporting energy performance or energy performance improvement.
3.5
Measurement and verification boundary
Energy performance or energy performance improvement measures and verifies the boundaries of the organization, physics, location, facility, equipment, system, process, or activity related to it.
3.6
Measurement and verification personnel
Individuals and teams who perform measurement and verification (3.4).
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