DB34/T 3823-2021 绿色建筑设备节能控制技术标准
DB34/T 3823-2021 Green building energy-saving control technology standards
基本信息
发布历史
-
2021年01月
研制信息
- 起草单位:
- 安徽省建筑设计研究总院股份有限公司、山东金洲科瑞节能科技有限公司、合肥工业大学设计院(集团)有限公司、安徽省建筑科学研究设计院、中铁合肥建筑市政工程设计研究院有限公司、安徽建筑大学设计研究总院有限公司、安徽皖都规划建筑设计研究院有限公司、 安徽建筑大学环境与能源工程学院
- 起草人:
- 出版信息:
- 页数:96页 | 字数:- | 开本: -
内容描述
DB34
安徽省地方标准
J15603-2021DB34/T3823-2021
绿色建筑设备节能控制技术标准
Technicalstandardforenergysavingcontrolofgreen
buildingequipment
2021-01-25发布2021-07-25实施
安徽省市场监督管理局发布
安徽省地方标准
绿色建筑设备节能控制技术标准
Technicalstandardforenergysavingcontrolofgreen
buildingequipment
DB34/T3823-2021
主编部门:安徽省住房和城乡建设厅
批准部门:安徽省市场监督管理局
施行日期:2021年07月25日
2021合肥
安徽省地方标准
绿色建筑设备节能控制技术标准
Technicalstandardforenergysavingcontrolofgreen
buildingequipment
DB34/T3823-2021
*
安徽省工程建设标准设计办公室组织出版发行
(合肥市紫云路996号安徽省城乡规划建设大厦,
邮编:230091)
*
开本:850×1168毫米1/32印张:3字数:77千字
2021年x月第一版2021年x月第一次印刷印数:1-1000册
安徽省市场监督管理局
公告
第1号
安徽省市场监督管理局关于批准发布集贸
市场(大型超市)公平秤设置与管理规范等
121项地方标准的公告
安徽省市场监督管理局依法批准“集贸市场(大型超市)公平
秤设置与管理规范”等121项安徽省地方标准,现予以公布。
安徽省市场监督管理局
2021年1月27日
3
安徽省地方标准清单
序地方标准代替
标准名称批准日期实施日期
号编号标准号
盒式螺栓连接多层全装
DB34/T
1配式混凝土墙—板结构2021-01-252021-07-25
3822-2021
技术规程
DB34/T绿色建筑设备节能控制
22021-01-252021-07-25
3823-2021技术标准
DB34/T园林工程施工组织设计
32021-01-252021-07-25
3824-2021规范
DB34/T城镇燃气用户设施安全
42021-01-252021-07-25
3825-2021检查和配送服务规范
DB34/T保温板外墙外保温工程
52021-01-252021-07-25
3826-2021技术标准
DB34/T叠合板式混凝土剪力墙DB34/T
62021-01-252021-07-25
1468-2021结构施工及验收规程1468-2011
DB34/T复合保温隔声板楼屋面
72021-01-252021-07-25
3827-2021工程技术规程
DB34/T建筑外墙外保温工程修
82021-01-252021-07-25
3828-2021缮技术规程
DB34/T既有住宅适老化改造设
92021-01-252021-07-25
3829-2021计标准
DB34/T装配式建筑评价技术规
102021-01-252021-07-25
3830-2021范
DB34/T城市污水处理厂节能降
112021-01-252021-07-25
3831-2021耗运行技术规范
DB34/T城市污水处理厂污泥处
122021-01-252021-07-25
3832-2021理处置技术规程
DB34/T城镇道路人行道及附属
132021-01-252021-07-25
3833-2021设施施工技术规程
5
续上表
序地方标准代替
标准名称批准日期实施日期
号编号标准号
DB34/T装配式住宅统一模数标
142021-01-252021-07-25
3834-2021准
DB34/T
15机制砂应用技术规程2021-01-252021-07-25
3835-2021
DB34/T城镇综合管廊施工与质
162021-01-252021-07-25
3836-2021量验收规程
DB34/T装配式混凝土住宅设计DB34/T
172021-01-252021-07-25
1874-2021标准1874-2013
6
前言
根据《安徽省市场监督管理局关于下达2018年第三批安徽省
地方标准制修订计划的函》(皖市监函〔2019〕10号)的要求,标准
编制组经广泛调查研究,参考国家、行业及其他省市相关规范、标
准,认真总结实践经验,在充分征求意见的基础上,编制本标准。
本标准共分7章和2个附录,主要技术内容包括:1.总则;2.术
语;3.基本规定;4.功能配置;5.调试和试运行;6.检测和验收;
7.运行维护。
本标准由安徽省住房和城乡建设厅归口管理,安徽省建筑设计
研究总院股份有限公司负责具体技术内容的解释。执行过程中,如
有意见或建议,请寄送安徽省建筑设计研究总院股份有限公司《绿
色建筑设备节能控制技术标准》编制组(地址:合肥市繁华大道
7699号,邮政编码230601)。
主编单位:安徽省建筑设计研究总院股份有限公司
山东金洲科瑞节能科技有限公司
参编单位:合肥工业大学设计院(集团)有限公司
安徽省建筑科学研究设计院
中铁合肥建筑市政工程设计研究院有限公司
安徽建筑大学设计研究总院有限公司
安徽皖都规划建筑设计研究院有限公司
安徽建筑大学环境与能源工程学院
主要编写人员:汪军万力崔慧芳吴常军王浩
李鹏章维扬周芳陈劲松高峰
王海涛查慧勤张健刘结根李金洲
王腾姜珊艾煜章荣兵董福海
柯柳斌
主要审查人员:李平王小向吴燕辉王靖绚胡晶莉
姚翰胡少云
7
目次
1总则·································································································1
2术语·································································································2
3基本规定·····························································································3
4功能配置·····························································································5
4.1一般规定·································································································5
4.2系统架构·································································································5
4.3供暖通风与空气调节·············································································7
4.4给水排水·······························································································12
4.5供配电···································································································14
4.6电梯与自动扶梯···················································································15
4.7照明···································································································16
4.8能源管理·······························································································17
4.9环境监控·······························································································18
4.10可再生能源利用·················································································19
4.11管理功能·····························································································21
5调试和试运行···················································································26
5.1调试···································································································26
5.2综合效能调适·······················································································27
5.3试运行···································································································28
6检测和验收·······················································································29
6.1检测···································································································29
6.2验收···································································································30
7运行维护···························································································33
7.1一般规定·······························································································33
7.2系统运行·······························································································33
7.3设备设施维护·······················································································34
7.4综合节能评估·······················································································35
9
附录A调试记录··················································································37
附录B检测记录··················································································42
本标准用词说明·····················································································44
引用标准名录·························································································45
条文说明·································································································46
10
Contents
1CeneralProvisions···············································································1
2Terms···································································································2
3BasicRequirements·············································································3
4FunctionalConfiguration·····································································5
4.1GeneralRequirements·············································································5
4.2SystemArhitecture··················································································5
4.3Heating,VentilationandAir-ConditioningSystem··································7
4.4WaterSupplyandDrainageSystems·····················································12
4.5ElectricPowerSupplySystems·····························································14
4.6ElevatorsandEscalators········································································15
4.7LightingSystems···················································································16
4.8EnergyManagement··············································································17
4.9EnvironmentalMonitoring····································································18
4.10ComprehensiveUtilizationofSolarEnergy········································19
4.11ManagementFunction·········································································21
5CommissioningandTrialRun···························································26
5.1CommissioningoftheSystems·····························································26
5.2ComprehensiveEnergyEfficiencyAdjustmentoftheSystems············27
5.3TrialRun································································································28
6SystemTestandAcceptance······························································29
6.1SystemTest····························································································29
6.2Acceptance·····························································································30
7OperationsManagement····································································33
7.1GeneralRequirements···········································································33
7.2SystemOperation··················································································33
7.3MaintenanceofEquipmentandFacilities·············································34
7.4ComprehensiveEnergyConservationAssessment································35
11
AppendixADebugRecords·································································37
AppendixBTestRecords·····································································42
WordExplanationofThisProcedure······················································44
ListofQuotedStandards·········································································45
ExplanationofProvisions········································································46
12
1总则
1.0.1为贯彻执行绿色建筑发展政策,提高绿色建筑设备能源利
用效率,节约资源,保护环境,制定本标准。
1.0.2本标准适用于新建、扩建和改建的民用建筑中建筑设备节
能控制工程的设计、调试、检测、验收和运行维护。
1.0.3绿色建筑设备节能控制应具有可靠性、可维护性、可扩展
性和开放性。
1.0.4绿色建筑设备的节能控制,除应符合本标准外,尚应符合
国家、行业和安徽省现行有关规范、标准的规定。
1
2术语
2.0.1建筑设备一体化监控系统integratedconstructionequipment
monitoringsystem
将建筑设备通过网络进行相互连接,形成综合一体化的供
电、监测和控制系统。
2.0.2一体化智能控制箱(柜)integratedintelligentcontrolbox
(cabinet)
位于末端用电侧,集配电、控制、保护、设备环境监控、节
能、计量、安全报警、通信为一体的智能化成套控制设备。
2.0.3智能控制器intelligentcontroller
采用计算机控制技术,具有现场监测和智能控制功能,且能
实现信息通信的设备智能管理模块。
2.0.4复合功能总线compositefunctionbus
能为总线上的受控设备(如灯具、阀门、盘管等)和控制设
备供电,并能双向传输数据的总线。
2.0.5人机界面humanmachineinterface(HMI)
人和计算机之间传递和交换信息的媒介。
2.0.6综合效能调适commissioning
通过对建筑设备系统的调试验证、性能测试验证、季节性工
况验证和综合效果验收,使系统满足不同负荷工况和用户使用的
需求。
2.0.7建筑再调适retro-commissioning
根据建筑实际使用情况,再次对相关设备系统进行诊断、调
整和完善;在确保建筑舒适性的基础上,提高系统能效,减少能
源消耗的调适活动。
2
3基本规定
3.0.1绿色建筑设备节能控制应能满足建筑物的功能、使用环
境、运营管理和能效等级等要求,并应实现设备运行安全、可靠、
节能和经济。
3.0.2绿色建筑设备节能控制宜采用建筑设备一体化监控方
式。当采用建筑设备一体化监控方式时,应按表3.0.2进行配置:
表3.0.2建筑设备一体化监控系统配置要求
等级
监控内容
基本级一星级二星级三星级
冷热源○⊙●●
输配系统○⊙●●
供暖通风与新风机组○⊙●●
空气调节空调机组○⊙●●
新风热回收式○⊙●●
风机盘管○⊙●●
给水排水○○⊙⊙
供配电○○⊙⊙
电梯和自动扶梯○○⊙⊙
照明○⊙●●
能源管理○○⊙⊙
环境监控○○⊙⊙
可再生能源利用○○⊙⊙
注:1●-应配置;⊙-宜配置;○-可配置;
2建筑物中无该监控内容,则不需配置。
3.0.3绿色建筑设备节能控制宜用一套软件实现建筑设备监
控、电力监控、照明控制、用能计量、建筑环境检测、能效管理、
3
可再生能源利用监控等功能,并实现实时、历史数据互联互通和
界面整合。
3.0.4绿色建筑设备节能控制的实施应由功能配置、调试和试
运行、检测和验收、运行维护等阶段组成,各阶段应做好技术配
合及交接。
3.0.5绿色建筑设备节能控制验收交付运行后,应定期进行维
护,以使系统在实际工况下的运行满足功能设计及节能要求。
3.0.6绿色建筑设备节能控制宜具有接入智慧城市(城区、社
区)的功能。
3.0.7绿色建筑设备节能控制的设计、建设、运维等全寿命期
过程宜采用建筑信息模型(BIM)技术。
3.0.8绿色建筑设备节能控制的调试和试运行、检测和验收应
满足现行国家标准《智能建筑工程施工规范》GB50606和《智
能建筑工程质量验收规范》GB50339的规定。
4
4功能配置
4.1一般规定
4.1.1绿色建筑设备节能控制对象应根据工程建设目标确定,
宜包含供暖通风与空气调节、给水排水、供配电、电梯和自动扶
梯、照明、能源管理、环境监控、可再生能源利用等设备。
4.1.2绿色建筑的设备节能控制应满足计量和绿色建筑综合能
效管理的要求:
1系统设备宜包含电能的分配、变换、保护、控制、计量、
安全和所控制设备的监测、计量、控制、保护功能以及人机控制
操作、信息、状态的显示和网络通信功能;
2系统应充分考虑施工和维护的可操作性。
4.1.3绿色建筑设备节能控制应具备与火灾自动报警系统(FAS)
及安全技术防范系统(SAS)的通信接口。
4.1.4绿色建筑设备节能控制的供电应符合下列规定:
1现场数据服务器和软件平台应配置不间断电源装置,其
容量不应小于用电容量的1.3倍,其后备时间不宜少于30分钟;
2控制器和传感器宜配置不间断电源装置;采用无线通讯
的传感器和控制器的供电方式应满足使用要求;
3执行器宜采用复合功能总线供电或现场供电的方式。
4.1.5绿色建筑设备节能控制的防雷与接地应符合现行国家标
准《建筑物防雷设计规范》GB50057及《建筑物电子信息系统
防雷技术规范》GB50343的相关规定。
4.2系统架构
4.2.1绿色建筑的设备节能控制系统(以下简称系统)架构一
般由服务层、管理层、设备层构成。各层应符合下列规定:
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1服务层主要完成系统的运行优化、数据统计、智能存储、
用户管理、专家评价、智能维护、远程托管等服务功能;
2管理层应完成系统集中监控和各子系统的功能集成;
3设备层应完成建筑设备的节能控制和现场仪表的信息采
集和处理。
4.2.2服务层应根据系统运维管控模式确定系统各层级的配
置,管理层可采用本地部署或云部署方式。
4.2.3管理层应符合下列规定:
1管理层可由系统硬件和系统管理平台组成,系统硬件包
含服务器、管理计算机、维护工作站等。系统管理平台包含人机
界面、数据库、软件平台、通信网络和安全接口等;
2应采用开放的操作系统、可互换用的即插即用的硬件结
构体系;
3宜采用TCP/IP通信协议;
4服务器应为操作站提供数据库访问,并宜采集设备控制
器、末端设备控制器、传感器、执行器、阀门、风阀、变频器数
据,采集过程历史数据,提供服务器配置数据,存储用户定义数
据的应用信息结构,生成报警和事件记录、趋势图、报表,提供
系统状态信息;
5管理层应具有与互联网联网的能力,提供互联网用户通
信接口技术;用户可通过Web浏览器,远程查看系统的各种数
据或进行远程操作;
6当管理层的服务器和操作站发生故障或停止工作时,不
应影响设备控制器、末端设备控制器和现场仪表运行,设备层通
信不应因此中断。
4.2.4设备层应符合下列规定:
1设备层由现场的被控设备、传感器、执行器、一体化智
能控制箱(柜)或现场智能控制器组成。根据各子系统的工艺特
点,采用不同智能控制设备,内置不同的软件能效算法,根据不
同的应用场景生成不同的节能控制策略,动态调整各子系统设备
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的系统能效比。将采集的各子系统数据通过网络传输至管理层平
台;
2设备层网络可采用以太组网方式,使用建筑物的综合布
线系统组网,也可采用设备层自行布线的控制总线拓扑结构。
4.2.5绿色建筑的设备节能控制采用建筑设备一体化监控控制
方式时,设备层应满足下列要求:
1一体化智能控制箱(柜)内置智能控制器,智能控制器
应满足下列规定:
1)应具备实时监控功能;
2)应具备运行安全保护、自动启停和自动调节的功能;
3)应具备断电记忆、自动恢复工作的功能;
4)应提供标准的通讯接口;
5)中央处理器中的随机存取存储器应具备满足要求时长的
断电保护功能;
6)具备独立运行控制算法,和自学习、自优化、预判断的
功能。
2一体化智能控制箱(柜)与现场的传感器、执行器宜采
用复合功能总线方式进行连接,传感器和执行器的电源可由复合
功能总线提供。
3一体化智能控制箱(柜)内的控制设备应采取有效的抗
干扰措施。
4.3供暖通风与空气调节
4.3.1供暖空调设备的节能控制应满足下列要求:
1应能实现水力平衡调节及系统分时分区的控制;
2应根据用户对冷(热)负荷的需求,对冷水机组/热泵、
锅炉进行群控管理,并对输配系统、空调机组进行变频节能控制。
4.3.2冷热源及输配系统的监控功能应符合下列规定:
1应能监测下列参数:
1)冷热源的冷热量;
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2)冷水机组/热泵的蒸发器/冷凝器进、出口温度、压力及机
组的运行电压、电流、功率、功率因数及COP;
3)冷热源、水泵、冷却塔风机等设备的运行状态、手自动
状态、频率反馈状态;
4)热水锅炉的进、出口温度;蒸汽锅炉的压力;
5)水泵、风机等设备的运行电压、电流、功率、功率因数
及能耗;
6)水泵进、出口压力;
7)热交换器一二次侧进、出口温度和压力;
8)冷却水、冷冻水、热水等供回水温度、压力和供水流量;
9)水箱的高、低液位开关状态;
10)用户端供回水温度、压力及流量;
11)各电动阀的开关状态、开关到位状态。
2应实现下列安全保护功能:
1)根据设备故障或断水信号自动关闭冷水机组/热泵、水泵
等设备;
2)根据水泵和冷却塔风机的故障信号发出报警提示并联控
对应设备;
3)根据膨胀水箱高、低液位的报警信号进行排水或补水;
4)冰蓄冷系统换热器的防冻报警和自动保护。
3应实现下列远程控制功能:
1)冷水机组/热泵、锅炉、水泵和风机等设备的启停、频率
控制状态;
2)远程调节冷水机组/热泵、锅炉系统的运行参数;
3)调整水阀的开度,并监测阀位的反馈;
4)可进行运行数据的保持和数据汇总,远程维护;
5)具备气候补偿和调节功能;
6)应通过设备自带控制单元实现冷水机组/热泵、锅炉的
启停。
4应能实现下列自动启停功能:
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1)按顺序启停冷水机组/热泵、锅炉及相关水泵、阀门、
冷却塔风机等设备;
2)按时间表启停冷水机组/热泵、水泵、阀门和冷却塔风机
等设备。
5应实现下列自动调节功能:
1)当空调水系统总供、回水管之间设置旁通调节阀时,可
自动调节旁通阀的开度,且保证冷水机组允许的最低冷
水流量;
2)当冷却塔供、回水总管之间设置旁通调节阀时,可自动
调节旁通阀的开度,且保证冷水机组允许的最低冷却水
温度;
3)设定和修改供冷/供热/过渡季工况;
4)设定和修改供水温度/压力/流量的设定值;
5)自动阀门的开关/开度调节;
6)自动调节风机运行台数和转速;
7)自动调节主机的运行台数和供水温度;
8)按累计运行时间进行被监控设备的轮换。
4.3.3空调机组的监测功能应符合下列规定:
1应监测下列参数
1)室内温湿度及空气品质;
2)空调机组设备的运行电压、电流、功率、功率因数及能耗;
3)空调机组的送、回风温度及回风系统的二氧化碳浓度;
4)空气过滤器进出口的压差参数;
5)风机、水阀、风阀等设备的启停状态和运行参数;
6)冬季有冻结可能性的地区,还应监测防冻开关状态。
2应实现下列安全保护功能:
1)风机的故障报警;
2)空气过滤器压差超限时的堵塞报警;
3)风机压差过低报警、保护功能;
4)冬季有冻结可能性的地区,还应具有防冻报警和自保护
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的功能。
3应实现下列远程控制功能:
1)风机的启停;
2)调整水、风阀的开度,并宜监测阀位的反馈。
4应实现下列自动启停功能:
1)风机停止时,新/送风阀和水阀连锁关闭;
2)按时间表启停风机。
5应实现下列自动调节功能:
1)自动调节水、风阀的开度;
2)修定供冷/供热/过渡季工况;
3)修定服务区域空气温度的设定值。
4.3.4新风机组的监控功能应符合下列规定:
1应监测下列参数:
1)室内、外温湿度及空气品质;
2)新风机组设备的运行电压、电流、功率、功率因数及能
耗;
3)新风机组的送风温湿度;
4)空气过滤器进出口的压差参数;
5)风机、水阀、风阀等设备的启停状态和运行参数;
6)冬季有冻结可能性的地区,还应监测防冻开关状态。
2应实现下列安全保护功能:
1)风机的故障报警;
2)空气过滤器压差超限时的堵塞报警;
3)冬季有冻结可能性的地区,还应具有防冻报警和自动保
护的功能。
3新风机组的监控应实现下列远程控制功能:
1)风机的启停;
2)调整水、风阀的开度,并宜监测阀位的反馈。
4应实现下列自动启停功能:
1)风机停止时,新风阀和水阀连锁关闭;
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2)按时间表启停风机。
5新风机组的监控应实现下列自动调节功能:
1)自动调节水阀的开度;
2)修定供冷/供热/过渡季工况;
3)修定送风温度的设定值。
4.3.5新风机组的监控宜根据服务区域空气品质情况,控制新
风机组的启停或风机转速。
4.3.6空调末端系统的实现监测与控制应符合下列规定:
1应能监测下列参数:
1)室内空气的实时温湿度和设定值;
2)供冷、供热工况转换开关的状态;
3)当采用干式风机盘管时,还应监测室内的露点温度或相
对湿度。
2应实现下列安全保护功能:
1)风机的故障报警;
2)当采用干式风机盘管时,还应具有结露报警和关闭相应
水阀的保护功能。
3系统对风机盘管的监控应实现风机启停的远程控制和设
定。
4应实现下列自动启停功能:
1)风盘停止时,水阀连锁关闭;
2)按时间表启停风盘。
5应实现下列自
定制服务
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