标准解读
《GB/T 44625-2024 动态响应同步调相机技术要求》是一项国家标准,旨在规定用于电力系统中改善电能质量、增强系统稳定性的动态响应同步调相机的技术条件。该标准适用于设计、制造、安装及运行维护过程中对同步调相机性能提出的要求。
标准首先明确了术语和定义,包括但不限于动态响应时间、无功功率调节范围等关键参数,确保行业内对于相关概念有一致的理解。接着,从电气特性方面提出了具体指标,如额定容量下的输出能力、过载能力以及效率等级等,这些都直接关系到设备在实际电网中的表现与效能。
此外,《GB/T 44625-2024》还详细描述了机械结构设计要求,比如冷却方式的选择、绝缘材料的应用等,以保证调相机能够长期稳定运行而不易发生故障。同时,针对环境适应性也做了相应规定,考虑到不同地区可能存在的温湿度差异等因素,确保产品能够在各种条件下正常工作。
对于控制系统而言,标准强调了自动化程度的重要性,要求具备快速准确地响应电网变化的能力,并且能够与其他电力设施良好兼容。这不仅提高了整个电力系统的灵活性,也有利于实现更加高效节能的运行模式。
如需获取更多详尽信息,请直接参考下方经官方授权发布的权威标准文档。
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- 2024-09-29 颁布
- 2025-04-01 实施
文档简介
ICS29.240
CCSF21
中华人民共和国国家标准
GB/T44625—2024
动态响应同步调相机技术要求
Technicalrequirementsfordynamicresponsesynchronouscondenser
2024⁃09⁃29发布2025⁃04⁃01实施
国家市场监督管理总局
国家标准化管理委员会发布
GB/T44625—2024
目次
前言··························································································································Ⅲ
1范围·······················································································································1
2规范性引用文件········································································································1
3术语和定义··············································································································1
4调相机运行环境········································································································1
5推荐容量等级及无功调节范围······················································································2
6主要技术性能参数要求·······························································································2
6.1调相机本体········································································································2
6.2调相机升压变压器·······························································································3
6.3励磁系统···········································································································3
6.4静止变频器(SFC)·······························································································4
6.5电机拖动起动系统·······························································································4
6.6冷却系统···········································································································5
6.7润滑油系统········································································································5
6.8盘车系统···········································································································6
6.9在线监测···········································································································6
7铭牌、装箱、运输及保管·······························································································6
附录A(资料性)调相机励磁控制····················································································8
参考文献·····················································································································9
Ⅰ
GB/T44625—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。
本文件由中国电器工业协会提出。
本文件由全国大型发电机标准化技术委员会(SAC/TC511)归口。
本文件起草单位:中国电力科学研究院有限公司、哈尔滨大电机研究所有限公司、国家电网有限公
司、国网经济技术研究院有限公司、哈尔滨电机厂有限责任公司、东方电气集团东方电机有限公司、上
海电气电站设备有限公司上海发电机厂、南京南瑞继保电气有限公司、国电南瑞科技股份有限公司、国
网山东省电力公司电力科学研究院、国家电网有限公司华北分部、广东省能源集团有限公司、国网湖北
省电力有限公司电力科学研究院、湘潭电机股份有限公司、南方电网调峰调频发电有限公司储能科研
院、山东科技大学、广东阿尔派电力科技股份有限公司、内蒙古电力(集团)有限责任公司内蒙古电力科
学研究院分公司。
本文件主要起草人:李志强、孙玉田、蒋维勇、郭强、王庆、黄浩、王勇、咸哲龙、杨鹏程、霍乾涛、
石祥建、曹志伟、李文锋、郭艳霞、何凤军、阮绵照、朱志佳、李朝科、周煜、肖洋、王东阳、周成、李积霞、
施俊俊、祁明禄、叶国华、崔一铂、郭晓玲、李贻凯、刘强、张超、陈海、王磊。
Ⅲ
GB/T44625—2024
动态响应同步调相机技术要求
1范围
本文件规定了动态响应同步调相机主要技术性能及其参数要求。
本文件适用于300MVA及以下动态响应同步调相机,其他容量等级参照执行。
2规范性引用文件
下列文件中的内容通过文中的规范性引用而构成本文件必不可少的条款。其中,注日期的引用文
件,仅该日期对应的版本适用于本文件;不注日期的引用文件,其最新版本(包括所有的修改单)适用于
本文件。
GB/T755旋转电机定额和性能
GB/T7064隐极同步发电机技术要求
GB/T7409.3同步电机励磁系统大、中型同步发电机励磁系统技术要求
GB/T7894水轮发电机基本技术要求
GB/T10068轴中心高为56mm及以上电机的机械振动振动的测量、评定及限值
GB/T10069.1旋转电机噪声测定方法及限值第1部分:旋转电机噪声测定方法
GB/T20140隐极同步发电机定子绕组端部动态特性和振动测量方法及评定
DL/T793.1发电设备可靠性评价规程第1部分:通则
DL/T801大型发电机内冷却水质及系统技术要求
DL/T861电力可靠性基本名词术语
JB/T10392透平型发电机定子机座、铁心动态特性和振动试验方法及评定
3术语和定义
DL/T861和DL/T793.1界定的以及下列术语和定义适用于本文件。
3.1
动态响应同步调相机dynamicresponsesynchronouscondenser
具有快速动态无功调节和短时过载能力,主要用于向系统提供动态电压支撑,同时兼具稳态无功
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