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ISO 3010:2017

Current
Current

The latest, up-to-date edition.

Bases for design of structures — Seismic actions on structures
Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

English

Published date

03-30-2017

ISO 3010:2017 (including both the super structure and foundation) and other structures.

ISO 3010:2017 is not applicable to certain structures, such as bridges, dams, geotechnical works and tunnels, although some of the principles can be referred to for the seismic design of those structures.

ISO 3010:2017 is not applicable to nuclear power plants, since these are dealt with separately in other International Standards.

In regions where the seismic hazard is low, methods of design for structural integrity can be used in lieu of methods based on a consideration of seismic actions.

ISO 3010:2017 is not a legally binding and enforceable code. It can be viewed as a source document that is utilized in the development of codes of practice by the competent authority responsible for issuing structural design regulations.

NOTE 1 This document has been prepared mainly for new engineered structures. The principles are, however, applicable to developing appropriate prescriptive rules for non-engineered structures (see Annex N). The principles could also be applied to evaluating seismic actions on existing structures.

NOTE 2 Other structures include self-supporting structures other than buildings that carry gravity loads and are required to resist seismic actions. These structures include seismic force-resisting systems similar to those in buildings, such as a trussed tower or a pipe rack, or systems very different from those in buildings, such as a liquid storage tank or a chimney. Additional examples include structures found at chemical plants, mines, power plants, harbours, amusement parks and civil infrastructure facilities.

NOTE 3 The level of seismic hazard that would be considered low depends not only on the seismicity of the region but also on other factors, including types of construction, traditional practices, etc. Methods of design for structural integrity include nominal design horizontal forces (such as an equivalent static loading determined from a simplified equivalent static analysis) which provide a measure of protection against seismic actions.

DevelopmentNote
Supersedes ISO/FDIS 3010. (04/2017)
DocumentType
Standard
Pages
60
PublisherName
International Organization for Standardization
Status
Current
Supersedes

Standards Relationship
JIS A 3306:2020 Identical
NBN ISO 3010 : 1993 Identical
DIN 4149-1:1981-04 Corresponds

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CSA C61400-3 : 2011 : R2016 WIND TURBINES - PART 3: DESIGN REQUIREMENTS FOR OFFSHORE WIND TURBINES
CSA C61400-1 : 2014 WIND TURBINES - PART 1: DESIGN REQUIREMENTS
ISO 19208:2016 Framework for specifying performance in buildings
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ISO 18407:2018 Simplified design of prestressed concrete tanks for potable water
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BS 7385-1:1990 Evaluation and measurement for vibration in buildings Guide for measurement of vibrations and evaluation of their effects on buildings
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ISO 14625:2007 Space systems — Ground support equipment for use at launch, landing or retrieval sites — General requirements
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12/30238878 DC : 0 BS ISO 13033 - SEISMIC ACTIONS ON NONSTRUCTURAL COMPONENTS FOR BUILDING APPLICATIONS
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03/314635 DC : DRAFT SEP 2003 ISO 15673 - GUIDELINES FOR THE SIMPLIFIED DESIGN OF STRUCTURAL REINFORCED CONCRETE FOR BUILDINGS
CEI EN 61400-3 : 2009 WIND TURBINES - PART 3: DESIGN REQUIREMENTS FOR OFFSHORE WIND TURBINES
03/109124 DC : DRAFT JUNE 2003 IEC 61400-1 ED.3.0 - WIND TURBINES - PART 1: DESIGN REQUIREMENTS
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ISO 13033:2013 Bases for design of structures — Loads, forces and other actions — Seismic actions on nonstructural components for building applications
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ISO/TR 18267:2013 Timber structures Review of design standards
10/30217479 DC : 0 BS ISO 28841 - GUIDELINES FOR SIMPLIFIED SEISMIC ASSESSMENT AND REHABILITATION OF CONCRETE BUILDINGS
BS ISO 14625:2007 Space systems. Ground support equipment for use at launch, landing or retrieval sites. General requirements
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ISO 15928-1:2015 Houses Description of performance Part 1: Structural safety
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ISO 22111:2007 Bases for design of structures General requirements
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IEC 61400-1:2005+AMD1:2010 CSV Wind turbines - Part 1: Design requirements
IEC 61400-3:2009 Wind turbines - Part 3: Design requirements for offshore wind turbines
UNE-EN 61400-1:2006 Wind turbines - Part 1: Design requirements
08/30190109 DC : DRAFT SEP 2008 BS ISO 4866 - MECHANICAL VIBRATION AND SHOCK - VIBRATION OF FIXED STRUCTURES - GUIDELINES FOR THE MEASUREMENT OF VIBRATIONS AND EVALUATION OF THEIR EFFECTS ON STRUCTURES
BS ISO 13033:2013 Bases for design of structures. Loads, forces and other actions. Seismic actions on nonstructural components for building applications
04/30046221 DC : 0 PREN 13121-3 - GRP TANKS AND VESSELS FOR USE ABOVE GROUND - PART 3: DESIGN AND WORKMANSHIP
BS ISO 16488:2015 Marine finfish farms. Open net cage. Design and operation
CSA C61400-3 : 2011 WIND TURBINES - PART 3: DESIGN REQUIREMENTS FOR OFFSHORE WIND TURBINES
I.S. EN 61400-3:2009 WIND TURBINES - PART 3: DESIGN REQUIREMENTS FOR OFFSHORE WIND TURBINES
ISO 28842:2013 Guidelines for simplified design of reinforced concrete bridges
IEC 62840-2:2016 Electric vehicle battery swap system - Part 2: Safety requirements
ISO 4866:2010 Mechanical vibration and shock Vibration of fixed structures Guidelines for the measurement of vibrations and evaluation of their effects on structures

ISO 13033:2013 Bases for design of structures — Loads, forces and other actions — Seismic actions on nonstructural components for building applications
ISO 2394:2015 General principles on reliability for structures
ISO 23469:2005 Bases for design of structures Seismic actions for designing geotechnical works

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