GB/T 44883-2024 流程生产能效管控系统 设计要求

GB/T 44883-2024 Energy efficiency control system in process production—Design requirements

国家标准 中文简体 现行 页数:20页 | 格式:PDF

基本信息

标准号
GB/T 44883-2024
相关服务
标准类型
国家标准
标准状态
现行
中国标准分类号(CCS)
国际标准分类号(ICS)
发布日期
2024-11-28
实施日期
2025-06-01
发布单位/组织
国家市场监督管理总局、国家标准化管理委员会
归口单位
全国工业过程测量控制和自动化标准化技术委员会(SAC/TC 124)
适用范围
本文件规定了流程生产能效管控系统的架构、网络设计要求、功能设计要求和接口设计要求,给出了流程生产能效管控系统的功能分类与信息流、能效模型应涉及的因素。
本文件适用于冶金、石化等流程生产企业能效管控系统的设计。

发布历史

文前页预览

研制信息

起草单位:
机械工业仪器仪表综合技术经济研究所、冶金自动化研究设计院有限公司、中冶赛迪信息技术(重庆)有限公司、河南平原智能装备股份有限公司、西门子(中国)有限公司、重庆工业智能技术研究院、北京仪综测业科技发展有限公司、浙江中控技术股份有限公司、特变电工科技投资有限公司
起草人:
牛鹏飞、孙彦广、盛刚、唐春娥、李志、王靖、史春燕、郑二磊、程广奇、田元超、冯尚科、王洲、郭志喜、郭峻源、师露宁、来晓、姚华、刘利辉
出版信息:
页数:20页 | 字数:23 千字 | 开本: 大16开

内容描述

ICS

25.040

CCS

N10

中华人民共和国国家标准

GB/T44883—2024

流程生产能效管控系统设计要求

Energyefficiencycontrolsysteminprocessproduction—Designrequirements

2024-11-28发布2025-06-01实施

国家市场监督管理总局发布

国家标准化管理委员会

GB/T44883—2024

目次

前言

·····································································································

1

范围

··································································································

1

2

规范性引用文件

······················································································

1

3

术语和定义

···························································································

1

4

缩略语

································································································

2

5

流程生产能效管控系统架构

··········································································

2

5.1

流程生产能效管控系统定位

·····································································

2

5.2

流程生产能效管控系统总体架构

································································

3

6

网络设计要求

·························································································

4

7

功能分类与信息流

····················································································

4

7.1

功能分类

·························································································

4

7.2

信息流

···························································································

5

8

能效模型应涉及的因素

···············································································

6

8.1

能源预测模型应涉及的因素

·····································································

6

8.2

能源优化模型应涉及的因素

·····································································

6

9

功能设计要求

·························································································

7

9.1

计划

······························································································

7

9.1.1能效预测

····················································································

7

9.1.2能源计划

····················································································

7

9.2

执行

······························································································

7

9.2.1能效实绩管理

···············································································

7

9.2.2能效报表管理

···············································································

8

9.2.3能效综合监视

···············································································

8

9.2.4异常报警

····················································································

8

9.3

分析

······························································································

8

9.3.1能效指标管理

···············································································

8

9.3.2能效诊断分析

···············································································

8

9.3.3能效对标管理

···············································································

9

9.4

优化

······························································································

9

9.4.1用能优化

····················································································

9

9.4.2产能优化

····················································································

9

9.4.3调配优化

····················································································

9

10

接口设计要求

·······················································································

9

参考文献

································································································

11

GB/T44883—2024

图1流程生产能效管控系统在企业功能层级中的定位

·················································

3

图2流程生产能效管控系统总体架构

··································································

3

图3流程生产能效管控系统网络拓扑图

································································

4

图4功能分类

···························································································

5

图5信息流图

···························································································

5

表1流程生产能效管控系统各功能间的信息流

·························································

6

GB/T44883—2024

前言

本文件按照GB/T1.1—2020《标准化工作导则第1部分:标准化文件的结构和起草规则》的规

定起草。

请注意本文件的某些内容可能涉及专利。本文件的发布机构不承担识别专利的责任。

本文件由中国机械工业联合会提出。

本文件由全国工业过程测量控制和自动化标准化技术委员会(SAC/TC124)归口。

本文件起草单位:机械工业仪器仪表综合技术经济研究所、冶金自动化研究设计院有限公司、中冶

赛迪信息技术(重庆)有限公司、河南平原智能装备股份有限公司、西门子(中国)有限公司、重庆工

业智能技术研究院、北京仪综测业科技发展有限公司、浙江中控技术股份有限公司、特变电工科技投资

有限公司。

本文件主要起草人:牛鹏飞、孙彦广、盛刚、唐春娥、李志、王靖、史春燕、郑二磊、程广奇、

田元超、冯尚科、王洲、郭志喜、郭峻源、师露宁、来晓、姚华、刘利辉。

GB/T44883—2024

流程生产能效管控系统设计要求

1范围

本文件规定了流程生产能效管控系统的架构、网络设计要求、功能设计要求和接口设计要求,给出

了流程生产能效管控系统的功能分类与信息流、能效模型应涉及的因素。

本文件适用于冶金、石化等流程生产企业能效管控系统的设计。

2规范性引用文件

本文件没有规范性引用文件。

3术语和定义

下列术语和定义适用于本文件。

3.1

能源energy

电、燃料、蒸汽、热力、压缩空气以及其他类似介质。

注1:在本文件中,能源包括可再生能源在内的各种形式,可被购买、贮存、处置,在设备或过程中使用以及被回

收利用。

注2:能源也被定义为一个系统产生外部活动或开展工作的动力。

[来源:GB/T23331—2020,3.5.1]

3.2

能耗energyconsumption

使用能源的量。

[来源:GB/T23331—2020,3.5.2,有修改]

3.3

能效energyefficiency

输出的能源、产品、服务或绩效与输入的能源之比或其他数量关系。

示例:转换效率,能源需求/能源实际使用,输出/输入,理论运行的能源量/实际运行的能源量。

注:输入和输出需要在数量及质量方面进行详细说明,并且能测量。

[来源:GB/T23331—2020,3.5.3,有修改]

3.4

能效因子energyefficiencyfactor

流程生产中影响节能目标、能源利用效率的因素或因子。

3.5

对标管理benchmarking

management

组织将产品、服务和实践与最强大的竞争对手或是行业领导者相比较,改进自身的持续过程。

注:对标管理是一个不断寻找和研究一流公司的最佳实践,以此为基础与本企业进行比较、分析、判断,从而使本

企业得到不断改进,进入赶超一流公司、创造优秀业绩的良性循环过程。

企业能效对标管理涉及两个基本要素:

─最佳节能实践,是指国际、国内同行业节能先进企业在生产、经营等活动中所推行的最有效的措施和

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