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北京市地方標準

編號:DB11/T689-2025

既有建筑抗震加固技術規(guī)程

Technicalspecificationforseismicstrengthening

ofbuildings

2025-06-25發(fā)布2026-01-01實施

北京市規(guī)劃和自然資源委員會

聯(lián)合發(fā)布

北京市市場監(jiān)督管理局

北京市地方標準

既有建筑抗震加固技術規(guī)程

Technicalspecificationforseismicstrengtheningofbuildings

DB11/T689-2025

主編單位:北京市建筑設計研究院股份有限公司

批準部門:北京市規(guī)劃和自然資源委員會

北京市市場監(jiān)督管理局

實施日期:2026年01月01日

2025北京

DB11/T689-2025

前言

為推動《北京城市總體規(guī)劃(2016年-2025年)》實施,根據(jù)

北京市規(guī)劃和自然資源委員會《關于印發(fā)北京市規(guī)劃和自然資源委

員會2024年規(guī)劃和自然資源標準化工作要點的通知》(京規(guī)自發(fā)

〔2024〕61號)和北京市市場監(jiān)督管理局《關于印發(fā)2023年北京

市地方標準修訂項目計劃(第三批)》的通知(京市監(jiān)函〔2023〕

149號)的文件要求,編制組在廣泛調查研究、認真總結實踐經驗、

參考國內外相關標準,并廣泛征求意見的基礎上,修訂本規(guī)程。

本規(guī)程的主要內容是:1.總則;2.術語和符號;3.基本規(guī)定;

4.地基和基礎;5.砌體房屋;6.鋼筋混凝土房屋;7.內框架和底

層框架砌體房屋;8.單層工業(yè)廠房;9.單層磚柱廠房與空曠房屋;

10.預制裝配式大板房屋;11.內澆外砌、內澆外掛結構房屋;12.鋼

結構房屋;13.消能減震技術加固;14.隔震技術加固;15.外套結

構加固;附錄A~C。

本次修訂的主要內容是:

1.根據(jù)《既有建筑鑒定與加固通用規(guī)范》GB55021和《建筑抗

震鑒定標準》GB/T50023,調整相關內容;

2.調整結構抗震驗算相關內容;

3.新增鋼結構房屋一章;

4.砌體房屋新增玄武巖纖維韌性砂漿面層加固法;

5.新增附錄A-C。

本規(guī)程由北京市規(guī)劃和自然資源委員會和北京市市場監(jiān)督管理

局共同負責管理,北京市規(guī)劃和自然資源委員會歸口、組織實施,

并負責組織編制單位對具體內容進行解釋,北京市規(guī)劃和自然資源

標準化中心負責日常管理。

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DB11/T689-2025

本規(guī)程執(zhí)行過程中如有意見和建議,請寄送至北京市規(guī)劃和自

然資源標準化中心,以供今后修訂時參考(地址:北京市通州區(qū)承

安路1號院;電話:55595000;郵箱:bjbb@)。

本規(guī)程主編單位:北京市建筑設計研究院股份有限公司

本規(guī)程參編單位:清華大學

中國建筑科學研究院有限公司

北京工業(yè)大學

北京市建筑工程研究院有限責任公司

清華大學建筑設計研究院有限公司

北京市建設工程質量第二檢測所有限公司

北規(guī)院弘都規(guī)劃建筑設計研究院有限公司

北京維拓時代建筑設計股份有限公司

中國地震局工程力學研究所

北京玄武永固科技有限公司

北京建筑大學

中國礦業(yè)大學(北京)

遠洋建筑設計院有限公司

中建一局集團總承包建設有限公司

北京羿射旭科技有限公司

本規(guī)程主要起草人員:苗啟松、李文峰、孫宏偉、劉航、

邱倉虎、趙作周、高向宇、潘鵬

甄偉、萬金國、蘇宇坤、左健

陳曦、史鐵花、李洪求、姜峰

王濤、尹保江、閤東東、方云飛

徐建偉、李卓東、陳蓓、段世昌

劉翔、郝建兵、王嘯霆、葉斌斌

王海深、李興旺、韓龍勇、賈自立

李瑞雪、張立成、趙鵬、劉天宇

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DB11/T689-2025

展興鵬、丁宜涵、曹澤、馬培培

本規(guī)程主要審查人員:任慶英、陳彬磊、程紹革、薛彥濤

徐斌、曾德民、劉彥生

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DB11/T689-2025

目次

1總則···········································································1

2術語和符號··································································2

2.1術語···································································2

2.2主要符號·····························································5

3基本規(guī)定·····································································7

4地基和基礎································································13

4.1一般規(guī)定···························································13

4.2承載力驗算及變形計算········································13

4.3地基處理與加固··················································15

4.4基礎加固···························································15

5砌體房屋···································································17

5.1一般規(guī)定···························································17

5.2抗震加固方案·····················································19

5.3抗震加固設計與施工············································22

6鋼筋混凝土房屋··························································49

6.1一般規(guī)定···························································49

6.2抗震加固方案·····················································50

6.3抗震加固設計與施工············································52

7內框架和底層框架砌體房屋···········································73

7.1一般規(guī)定···························································73

7.2抗震加固方案·····················································74

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7.3抗震加固設計及施工············································75

8單層工業(yè)廠房·····························································79

8.1一般規(guī)定···························································79

8.2抗震加固方案·····················································79

8.3單層鋼筋混凝土柱廠房抗震加固設計與施工·············80

8.4單層鋼結構廠房抗震加固設計與施工······················83

9單層磚柱廠房與空曠房屋··············································85

9.1一般規(guī)定···························································85

9.2抗震加固方案·····················································85

9.3單層磚柱廠房抗震加固設計與施工·························86

9.4空曠房屋抗震加固設計與施工·······························91

10預制裝配式大板房屋··················································92

10.1一般規(guī)定·························································92

10.2抗震加固方案···················································92

10.3抗震加固設計與施工··········································93

11內澆外砌、內澆外掛結構房屋······································97

11.1一般規(guī)定·························································97

11.2抗震加固方案···················································97

11.3抗震加固設計···················································97

12鋼結構房屋······························································99

12.1一般規(guī)定·························································99

12.2抗震加固方案··················································100

12.3抗震加固設計與施工·········································101

13消能減震技術加固····················································103

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13.1一般規(guī)定························································103

13.2減震加固方案··················································103

13.3減震加固設計··················································105

13.4減震加固施工、驗收和維護································110

14隔震技術加固··························································112

14.1一般規(guī)定························································112

14.2隔震加固設計··················································112

14.3隔震加固施工、驗收和維護································118

15外套結構加固··························································127

15.1一般規(guī)定························································127

15.2抗震加固設計··················································128

15.3加固施工和驗收···············································133

附錄A荷載取值···························································135

附錄B混凝土房屋樓層抗震綜合承載力法·························138

附錄C鋼筋混凝土構件損傷評價·····································141

本規(guī)程用詞說明·····························································146

引用標準名錄································································147

條文說明······································································149

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Contents

1Generalprinciples···························································1

2Termsandsymbols··························································2

2.1Terms·································································2

2.2Symbols······························································5

3Basicrequirements··························································7

4Soilandfoundation·······················································13

4.1Generalrequirements·············································13

4.2Bearingcapacitycalculationanddeformation

calculation································································13

4.3Groundtreatmentandstrengthening···························15

4.4Seismicstrengtheningofsoilandfoundation·················15

5Masonrybuildings························································17

5.1Generalrequirements·············································17

5.2Seismicstrengtheningschemes·································19

5.3Designandconstructionofseismicstrengthening···········22

6Reinforcedconcretebuildings···········································49

6.1Generalrequirements·············································49

6.2Seismicstrengtheningschemes·································50

6.3Designandconstructionofseismicstrengthening···········52

7Masonrybuildingswithinner-frameorbottom-frame···············73

7.1Generalrequirements·············································73

7.2Seismicstrengtheningschemes·································74

7.3Designandconstructionofseismicstrengthening···········75

8Single-storyfactorybuildings···········································79

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8.1Generalrequirements·············································79

8.2Seismicstrengtheningschemes·································79

8.3Designandconstructionofseismicstrengtheningof

single-storyfactorybuildingswithreinforcedconcrete

columns···································································80

8.4Designandconstructionofsingle-storysteelfactory

Buildings··································································83

9Single-storyfactorybuildingswithbrickcolumnsand

single-storyspaciousbuildings········································85

9.1Generalrequirements·············································85

9.2Seismicstrengtheningschemes·································85

9.3Designandconstructionofsingle-storyfactory

Buildingswithbrickcolumns··········································86

9.4Designandconstructionofsingle-storyspacious

buildings··································································91

10Prefabricatedlargepanelbuilding·····································92

10.1Generalrequirements···········································92

10.2Seismicstrengtheningschemes·······························92

10.3Designandconstructionofseismicstrengthening··········93

11Buildingwithinternalcast-in-situconcretewallandmasonry

externalwallandwithinternalcast-in-situconcretewalland

out-hungpanel·································································97

11.1Generalrequirements···········································97

11.2Seismicstrengtheningschemes································97

11.3Designofseismicstrengthening······························97

12Steelstructurebuildings················································99

12.1Generalrequirements···········································99

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12.2Seismicstrengtheningschemes······························100

12.3Designandconstructionofseismicstrengthening·········101

13Seismicstrengtheningusingenergydissipationscheme··········103

13.1Generalrequirements··········································103

13.2Energydissipationandseismicmitigationdesignof

strengtheningschemes·················································103

13.3Energydissipationandseismicmitigationdesignof

seismicstrengthening··················································105

13.4Construction,acceptanceandmaintenanceofseismic

mitigationstrengthening···············································110

14Seismicstrengtheningusingisolationdevices·····················112

14.1Generalrequirements··········································112

14.2Isolationdesignofseismicstrengthening···················112

14.3Seismicisolationstrengtheningconstruction,

acceptanceandmaintenance··········································118

15Seismicstrengtheningusingouterconcretestructure·············127

15.1Generalrequirements··········································127

15.2Designofseismicstrengthening·····························128

15.3Constructionandacceptanceofseismicstrengthening···133

AppendixALoadvalue······················································135

AppendixBSeismiccomprehensivebearingcapacity

methodofconcretebuildingfloors·········································138

AppendixCDamageevaluationofreinforcedconcrete

components····································································141

Explanationofwordinginthisstandard···································146

Listofquotedstandards·····················································147

Explanationofprovisions···················································149

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1總則

1.0.1為貫徹執(zhí)行《中華人民共和國建筑法》和《中華人民共和國

防震減災法》,實行以預防為主的方針,減輕地震破壞,減少損失,

使既有建筑的抗震加固做到抗震安全、經濟、合理、有效、實用,

制定本規(guī)程。

1.0.2本規(guī)程適用于北京市行政區(qū)域內既有建筑的抗震加固設計、

施工及驗收。古建筑和有行業(yè)特殊要求的建筑,其抗震加固應遵循

專門的規(guī)定進行。

1.0.3既有建筑的抗震加固設計、施工及驗收,除應符合本規(guī)程的

規(guī)定外,尚應符合國家及北京市現(xiàn)行有關標準、規(guī)范的規(guī)定。

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2術語和符號

2.1術語

2.1.1既有建筑抗震加固seismicstrengtheningofbuildings

使既有建筑滿足抗震要求所進行的設計及施工。

2.1.2綜合抗震能力comprehensiveseismiccapability

整個建筑結構綜合考慮其構造和承載力等因素所具有的抵抗地

震作用的能力。

2.1.3面層加固法masonrystrengtheningwithmortarsplint

在砌體墻側面增抹一定厚度的無筋或有鋼筋網(wǎng)的水泥砂漿,形

成組合墻體的加固方法。

2.1.4板墻加固法strengtheningwithconcretesplint

砌體或低配筋混凝土墻側面設置鋼筋網(wǎng)并澆注或噴射一定厚度

的混凝土,形成抗震墻的加固方法。

2.1.5外加柱加固法masonrystrengtheningwithtie-columns

在砌體墻縱橫墻交接處等位置增設鋼筋混凝土構造柱,形成約

束砌體墻的加固方法。

2.1.6壁柱加固法brickcolumnstrengtheningwithconcretecolu

mns

在砌體墻垛、墻柱或柱側面增設鋼筋混凝土柱,形成組合構件

的加固方法。

2.1.7增大截面加固法structuralmemberstrengtheningwithenlar

gedsection

增大原構件截面面積并增配鋼筋,提高其承載力和剛度的加固

方法。

2.1.8外包型鋼加固法structuralmemberstrengtheningwithextern

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allywrappedshapedsteel

對鋼筋混凝土梁、柱外包角鋼、扁鋼及鋼綴板焊接形成鋼構架

并灌注結構膠粘結劑,實現(xiàn)整體受力,共同約束原構件的加固方法。

2.1.9碳纖維布加固法structuralmemberstrengtheningwith

carbonicfibrereinforcedpolymer

對原有的鋼筋混凝土梁柱表面用膠粘材料粘貼碳纖維片材等的

加固方法。

2.1.10鋼絲繩網(wǎng)片聚合物砂漿面層加固structuralmember

strengtheningwithstrandsteelwireweb-polymermortar

在原有的砌體墻面或鋼筋混凝土梁柱表面外抹一定厚度的鋼絲

繩網(wǎng)片聚合物砂漿層的加固方法。

2.1.11消能減震加固法seismicstrengtheningusingenergy

dissipationdevices

通過在既有建筑中增設可有效耗散地震能量的消能器和配套的

構件,減小既有結構地震響應,使其達到規(guī)定的抗震設防目標的加

固方法。

2.1.12隔震加固法seismicstrengtheningusingisolationdevices

通過在既有建筑基礎、底部或者下部結構與上部結構之間設置

由隔震裝置等組成的隔震層,減小既有結構所承受的地震作用,提

高既有結構的抗震性能的加固方法。

2.1.13內澆外砌結構structurewithinternalcast-in-situconcretewall

andexternalmasonrywall

外墻采用實心磚砌體嵌砌,內墻采用現(xiàn)澆混凝土墻的結構,也

稱為內模外磚結構。

2.1.14內澆外掛結構structurewithinternalcast-in-situconcretewall

andout-hungpanel

外墻采用外掛預制混凝土墻板,內墻采用現(xiàn)澆混凝土墻的結構。

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2.1.15內板外磚結構structurewithinternalfabricatedconcretewall

andmasonryexternalwall

內墻采用預制混凝土墻板,外墻采用實心磚砌體墻的結構。

2.1.16低配筋混凝土墻reinforcedconcretewallwithfew

reinforcement

按墻體全截面面積計算,水平或豎向配筋率為0.10%~0.15%的

配筋混凝土墻。

2.1.17裝配式大板結構fabricatedlargepanelstructure

墻體、樓面、屋蓋承重構件采用裝配式板材的結構,包括全裝

配大板結構、部分墻體現(xiàn)砌的內板外磚結構、振動磚板結構、局部

現(xiàn)澆混凝土與裝配式大板相結合的結構。

2.1.18裝配式少筋大板結構fabricatedstructurewithlow

reinforcementpanel

按墻體全截面面積(包括豎縫)計算,水平或豎向配筋率為

0.10%~0.15%的裝配式大板結構。

2.1.19砌體墻后張預應力加固法masonrywallstrengtheningwith

post-tensioningtendons

在砌體墻兩側對稱布置豎向預應力筋并施加預應力的加固方

法。

2.1.20外套結構加固法seismicstrengtheningofmasonrystructure

usingouterconcretestructure

在砌體結構外部增設外套鋼筋混凝土結構,并使之與原砌體結

構連成整體,達到約束原結構、提高結構整體抗震性能的加固方法。

2.1.21玄武巖纖維韌性砂漿basaltfibertoughnessmortar

一種由水泥基膠凝材料、礦物摻和料、骨料、外加劑和短切玄

武巖纖維等原材料組成,按一定比例加水攪拌硬化后具有一定的抗

壓強度、抗拉強度及抗拉延伸率的纖維增強水泥基復合材料。

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2.1.22混凝土房屋樓層抗震綜合承載力法seismiccomprehensive

bearingcapacitymethodofconcretebuildingfloors

加固后鋼筋混凝土房屋抗震驗算時,考慮地震作用下抗側力構

件抗彎剛度折減的抗震驗算方法。

2.2主要符號

2.2.1作用和作用效應

σ0——對應于重力荷載代表值的砌體截面平均壓應力;

σp——對應于后張預應力的砌體截面平均壓應力;

V——墻段的剪力設計值;

VR——墻段加固后的受剪承載力設計值;

2.2.2材料性能和抗力

fsE——調整后的地基抗震承載力;

fa——深寬修正后的地基承載力標準值;

fac——長期壓縮-固結作用地基承載力標準值;

fay——扁鋼、角鋼的抗拉屈服強度;

Δupy——消能器及連接消能器部件在水平方向的屈服位移

或起滑位移;

2.2.3幾何參數(shù)

A——墻體橫截面面積;

Ap——加固預應力筋橫截面面積;

tv——黏彈性消能器的黏彈性材料總厚度;

s——扁鋼綴板的間距;

?——鋼筋直徑(mm);

2.2.4計算系數(shù)

ψ1——體系影響系數(shù);

ψ2——局部影響系數(shù);

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ζc——地基承載力壓縮-固結作用提高系數(shù);

ζa——地基抗震承載力調整系數(shù);

Rs——抗震加固的承載力調整系數(shù)。

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3基本規(guī)定

3.0.1既有建筑抗震加固的設計原則應滿足下列要求:

1加固方案應根據(jù)抗震鑒定結果經綜合分析后確定,分別采用

房屋整體加固、區(qū)段加固或構件加固,加強整體性、改善構件的受

力狀況、提高綜合抗震能力,滿足結構整體抗震要求;

2加固或新增構件的布置,應消除或減少不利因素,防止局部

加強導致結構平面不規(guī)則或豎向不規(guī)則;

3新增構件與原有構件之間應有可靠連接;新增的抗震墻、柱

等豎向構件應有可靠的基礎;

4加固所用材料類型與既有結構相同時,其強度等級不應低于

既有結構材料的實際強度等級;

5對于鑒定結果不符合抗震要求的女兒墻、出屋頂煙囪等易倒

塌傷人的非結構構件,應拆除或降低高度,需要保持原高度時應加

固。

3.0.2抗震加固的方案、結構布置和連接構造,尚應滿足下列要求:

1加固后結構的質量和剛度分布宜均勻、對稱;

2對抗震薄弱部位、易損部位和不同類型結構的連接部位,其

承載力或變形能力宜采取比一般部位增強的措施;

3宜采取提高上部結構抵抗不均勻沉降能力的措施,減少地基

基礎的加固工程量;并應計及不利場地的影響;

4消能減震或隔震加固方案應注重提高結構整體抗震性能,同

時應注意加固后既有結構構件受力的變化;

5加固方法應保證可操作性、有效性和施工便捷性,改善使用

功能,并應減少對生產、生活的影響及注意美觀。

3.0.3既有建筑抗震加固前,應依據(jù)其設防烈度、抗震設防類別、

后續(xù)工作年限和結構類型,按現(xiàn)行國家標準《建筑抗震鑒定標準》

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GB/T50023和北京市地方標準《房屋結構綜合安全性鑒定標準》DB

11/T637的相應規(guī)定進行抗震鑒定。

3.0.4既有建筑抗震加固時,應按現(xiàn)行國家標準《建筑工程抗震設

防分類標準》GB50223分為四類,其抗震措施及抗震驗算應滿足下

列要求:

1特殊設防類(簡稱甲類),抗震措施應經專門研究并應滿足

不低于重點設防類的要求,抗震驗算應按高于本地區(qū)設防烈度的要

求采用;

2重點設防類(簡稱乙類),抗震措施應滿足比本地區(qū)設防烈

度提高一度的要求;抗震驗算應按不低于本地區(qū)設防烈度的要求采

用;

3標準設防類(簡稱丙類),抗震措施和抗震驗算應滿足本地

區(qū)設防烈度的要求;

4適度設防類(簡稱丁類),抗震措施應滿足比本地區(qū)設防烈

度降低一度的要求。

3.0.5既有建筑應根據(jù)其建造年代、原設計標準及剩余工作年限,

按下列規(guī)定確定抗震加固設計相應的建筑類別:

120世紀90年代以前建造的可繼續(xù)正常使用的既有建筑,

后續(xù)工作年限不得少于30年,本規(guī)程稱A類建筑;當后續(xù)工作

年限采用40年時,本規(guī)程稱B類建筑;

2在20世紀90年代(按當時施行的抗震設計規(guī)范系列設

計)建造的既有建筑,后續(xù)工作年限宜為40年,本規(guī)程稱B類建

筑;當需達到本條第3款的更高抗震性能時,本規(guī)程稱C類建筑;

3在本世紀(按當時施行的抗震設計規(guī)范系列設計)建造的既

有建筑,本規(guī)程稱C類建筑,其后續(xù)工作年限不得少于原設計剩

余工作年限,且應符合下列規(guī)定:

1)剩余工作年限40年以內(含40年)的既有建筑,其后續(xù)

工作年限宜為40年;

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2)剩余工作年限40年以上的既有建筑,后續(xù)工作年限可為剩

余工作年限或50年。

3.0.6抗震加固時應對既有建筑結構存在的耐久性、靜力作用下的

結構安全性等問題一并進行處理;荷載及組合應符合下列規(guī)定:

1后續(xù)工作年限為50年時,應按現(xiàn)行國家標準的規(guī)定取值;

2后續(xù)工作年限少于50年時,原結構構件的驗算,不宜低于

本規(guī)程附錄A規(guī)定的數(shù)值;

3新增結構構件和加固后結構構件的驗算應滿足現(xiàn)行國家標

準《工程結構通用規(guī)范》GB55001、《建筑結構可靠性設計統(tǒng)一標

準》GB50068等的要求。

3.0.7后續(xù)工作年限少于50年時,原結構及構件在正常使用條件下

的驗算,豎向靜力荷載取值可按本規(guī)程附錄A確定;后續(xù)工作年限

為50年時,原結構及構件驗算應符合現(xiàn)行國家標準《工程結構通用

規(guī)范》GB55001的規(guī)定。

3.0.8既有建筑抗震驗算時,材料性能設計指標、荷載及組合、重

力荷載代表值、地震作用及組合、地震作用效應調整、結構構件承

載力抗震調整系數(shù)等參數(shù)的取值,應符合下列規(guī)定:

1后續(xù)工作年限50年的結構,均應按《建筑抗震設計標準》

GB/T50011等國家現(xiàn)行標準的有關規(guī)定執(zhí)行;

2后續(xù)工作年限少于50年的結構,可按國家標準《建筑抗震

鑒定標準》GB/T50023的規(guī)定進行抗震驗算,抗震設防烈度應符合

現(xiàn)行國家標準《建筑抗震設計標準》GB/T50011的規(guī)定,建筑抗震

設防類別應按加固改造后的建筑功能確定,特征周期值可按建造時

施行的設計標準取值,水平地震影響系數(shù)最大值不應折減;

3后續(xù)工作年限少于50年的結構,不應低于表3.0.8相應標準。

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表3.0.8后續(xù)工作年限少于50年的既有建筑抗震驗算標準

本規(guī)

原建造時后續(xù)工結構抗震措施判定及加固后

建造年代程簡

施行的標準作年限結構抗震驗算所采用的標準和方法

《房屋結構綜合安全性鑒定標準》

30A類

20世紀9078規(guī)范或之前的DB11/T637

年代之前標準《建筑抗震鑒定標準》GB/T50023

40B類

的B類

20世紀90《建筑抗震鑒定標準》GB/T50023

89規(guī)范40B類

年代的B類

01規(guī)范40C類

《房屋結構綜合安全性鑒定標準》

21世紀及之后施行的標

DB11/T637

準41~49C類

3.0.9既有建筑抗震加固設計時,地震作用和結構抗震驗算尚應符

合下列規(guī)定:

1加固后結構的分析和構件承載力計算,應滿足下列要求:

1)結構的計算簡圖,應根據(jù)加固后的荷載、地震作用和實際受

力狀況確定;

2)結構構件的計算截面面積,應采用實際有效的截面面積;

3)結構構件承載力驗算時,應計入實際荷載偏心、結構構件變

形等造成的附加內力;并應計入加固后的實際受力程度、新增部分

的應變滯后和新舊部分協(xié)同工作的程度對承載力的影響。

2當采用樓層綜合抗震能力指數(shù)進行結構抗震驗算時,體系影

響系數(shù)和局部影響系數(shù)應根據(jù)房屋加固后的狀態(tài)取值,加固后樓層

綜合抗震能力指數(shù)應大于1.0;

3采用時程分析法進行補充驗算時,應按建筑場地類別和設計

地震分組選用實際強震記錄和人工模擬的加速度時程曲線,其中實

際強震記錄的數(shù)量不應少于總數(shù)的2/3,加速度時程的最大值可按表

3.0.9采用,基底剪力要求應按現(xiàn)行國家標準《建筑抗震設計標準》

GB/T50011的規(guī)定執(zhí)行:

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1)多組時程曲線的平均地震影響系數(shù)曲線應與振型分解反應譜

法所采用的地震影響系數(shù)曲線在統(tǒng)計意義上相符;

2)罕遇地震下承載力及變形能力復核,應滿足現(xiàn)行北京市地方

標準《建筑工程減隔震技術規(guī)程》DB11/2075附錄E的要求;也可

采用7條時程波,其中應包含現(xiàn)行北京市地方標準《建筑工程減隔

震技術規(guī)程》DB11/2075列出的校核地震動時程曲線,驗算結果可

取采用各時程分析結果的平均值。

表3.0.9時程分析所用地震加速度時程的最大值(cm/s2)

地震影響8度(0.2g)8度(0.3g)

多遇地震70110

設防地震200300

罕遇地震400510

3.0.10減隔震加固工程設計應包括下列內容:

1結構的抗震性能化目標;

2減隔震方案及相關計算分析;

3減隔震裝置的規(guī)格、型號、性能、使用年限等技術指標;

4減隔震裝置檢驗檢測、施工安裝和使用維護要求;

5減隔震建筑構造要求,包括建筑做法、幕墻、機電及其他非

結構構件連接構造、減隔震裝置檢查、更換的可靠途徑等。

3.0.11加固所用材料的性能指標應滿足國家現(xiàn)行《工程結構加固

材料安全性鑒定技術規(guī)范》GB50728等標準的要求,其耐久性尚

應滿足建筑后續(xù)工作年限的要求。

3.0.12抗震加固的施工應滿足下列要求:

1應采取措施避免或減少損傷原結構構件;

2發(fā)現(xiàn)原結構或相關工程隱蔽部位的構造有嚴重缺陷時,應會

同檢測鑒定、加固設計等單位采取有效處理措施后方可繼續(xù)施工;

3應編制專項加固施工方案,必要時應對施工過程的結構安全

性進行分析,并應采取可靠措施,避免出現(xiàn)結構失穩(wěn)等施工安全問

11

DB11/T689-2025

題;對可能出現(xiàn)的傾斜、開裂或局部倒塌等情況,應預先采取安全

措施。

3.0.13抗震加固工程的驗收應符合《建筑結構加固工程施工質

量驗收規(guī)范》GB50550等現(xiàn)行標準的相關規(guī)定。

3.0.14抗震加固方案采用新技術、新材料、新工藝、新設備時,應

結合既有結構具體特點進行技術論證和經濟分析。

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DB11/T689-2025

4地基和基礎

4.1一般規(guī)定

4.1.1既有建筑地基和基礎的抗震加固,應根據(jù)地基和基礎鑒定結

果及上部結構抗震加固方案的需要,結合搜集的已有資料和調查的

情況進行綜合分析,確定地基和基礎抗震加固方案。

4.1.2因抗震加固而增加荷載時,應進行地基承載能力和基礎承載

力核算,必要時應進行地基沉降變形計算。核算結果不滿足要求時,

應采取適宜的處理方案。

4.1.3地基基礎鑒定結果不滿足要求時,應采取以下措施:

1對于液化地基,根據(jù)液化地基的液化等級及建筑物類別等參

數(shù),結合上部結構,綜合分析確定液化地基應對方案;

2對軟弱土地基或明顯不均勻地基,可采取提高上部結構抵抗

不均勻沉降能力的措施。

4.1.4存在嚴重不均勻地基的建筑物、對不均勻沉降敏感的或重點

的建筑物,在抗震加固施工期間及使用期間應進行基礎沉降變形觀

測,直至沉降達到穩(wěn)定為止。

4.1.5既有建筑地基基礎加固設計,應遵循新、舊基礎,新增樁和

原有樁變形協(xié)調原則。新、舊基礎的連接應采用可靠的技術措施。

4.2承載力驗算及變形計算

4.2.1地基基礎驗算時,應按式4.2.1-1和式4.2.1-2進行天然地基

在靜載和地震作用下的承載力驗算;地基承載力應按下列公式計算:

ffsEaac(4.2.1-1)

ffacca(4.2.1-2)

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DB11/T689-2025

式中:

fsE——調整后的地基抗震承載力(kPa);

a——地基抗震承載力調整系數(shù),應按現(xiàn)行國家標準《建

筑抗震設計標準》GB/T50011確定取值;

fac——長期壓縮-固結作用地基承載力標準值(kPa);

c——地基承載力壓縮-固結作用提高系數(shù),可參照表4.2.1;

fa——深寬修正后的地基承載力標準值(kPa)。

表4.2.1地基承載力壓縮-固結作用提高系數(shù)

pa/fa

年限與土類適用條件

1.00.80.4<0.4

對不均勻沉降敏感

2年以上的砂土地基1.051.0的建筑或地基土質

5年以上的粉土和粉質粘土

1.21.0不均勻的建筑

8年以上地基承載力標準值大

地基土質均勻的一

于130kPa的粘性土1.11.05

般建筑

注:①Pa指基礎底面實際平均壓力。

②對于年限不夠或碎石土、軟弱土,地基承載力壓縮-固結作用提高系數(shù)可取1.0。

4.2.2建筑樁基的抗震承載力驗算,可按現(xiàn)行國家標準《建筑抗震

設計標準》GB/T50011規(guī)定的方法和要求進行。

4.2.3同一建筑單元存在不同類型基礎或基礎埋深不同時,宜根據(jù)

地震時可能產生的不利影響,考慮軟土震陷、地基液化導致不同部

位地基的差異沉降,并檢查基礎抵抗差異沉降的能力及上部結構相

應部位的構造抵抗附加地震作用和差異沉降的能力。

4.2.4建筑物的地基最終沉降變形計算值,不應大于地基沉降變形

允許值。當大于地基沉降變形允許值時,應進行地基處理、基礎加

固或采取其他有效措施。

4.2.5建筑地基最終沉降變形量可按下式確定:

ss0s1s2(4.2.4)

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DB11/T689-2025

式中:

s——地基最終沉降變形量(mm);

s0——地基基礎加固前或增加荷載前,已完成的地基沉降變

形量(mm),可由沉降觀測資料確定或根據(jù)工程經驗估算;

s1——地基基礎加固或增加荷載后產生的地基變形量

(mm);

s2——原建筑物尚未完成的地基變形量(mm),可由沉降

觀測結果推算,或根據(jù)地方經驗估算;當原建筑物基礎沉降已穩(wěn)定

時,此值可取零。

4.3地基處理與加固

4.3.1為消除或減小地基液化沉陷進行地基處理時,可采取加密地

基土、增加液化地基上覆壓力和改善周邊的排水條件等方法。

4.3.2當?shù)鼗休d力或沉降變形不滿足設計要求時,地基處理可采

取注漿法、灰土擠密樁法、深層攪拌法和旋噴樁法等方法。

4.3.3采取加密地基土的處理方法,處理后樁間土的標準貫入錘擊

數(shù)不宜小于現(xiàn)行國家標準《建筑抗震設計標準》GB/T50011

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