Abstract:
Seismic design recommendations for substations, including qualification of different equipment types are discussed. Design recommendations consist of seismic criteria, qu...Show MoreScope:The recommended practice contains recommendations for the seismic design of substation buildings and structures, and the seismic design and qualification of substation eq...Show More
Purpose:This recommended practice is for new substations and planned additions or improvements to existing substations. It is not intended that existing substations must be retro...Show More
Metadata
Abstract:
Seismic design recommendations for substations, including qualification of different equipment types are discussed. Design recommendations consist of seismic criteria, qualification methods and levels, structural capacities, performance requirements for equipment operation, installation methods, and documentation.
Scope:
The recommended practice contains recommendations for the seismic design of substation buildings and structures, and the seismic design and qualification of substation equipment.
Purpose:
This recommended practice is for new substations and planned additions or improvements to existing substations. It is not intended that existing substations must be retrofitted to these recommended practices. Instructions on how to include this recommended practice in specifications are provided. IEEE Std 693(TM) is designed as an integrated set of requirements for the seismic qualification of electrical power equipment. Users should use IEEE Std 693 without modification or removal of any requirement, except as allowed herein.
Date of Publication: 10 April 2019
Electronic ISBN:978-1-5044-5486-5
Persistent Link: https://ieeexplore.ieee.org/servlet/opac?punumber=8686440
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Seismic Performance ,
- Types Of Equipment ,
- Seismic Methods ,
- Level Of Performance ,
- Dynamic Analysis ,
- Cause Of Failure ,
- Time History ,
- Primary Structure ,
- Acceptance Criteria ,
- Static Analysis ,
- Response Spectrum ,
- Electrical Equipment ,
- Level Of Qualification ,
- Higher Qualifications ,
- Piece Of Equipment ,
- Ground Motion ,
- Building Codes ,
- IEEE Standard ,
- Peak Ground Acceleration ,
- Lower Qualifications ,
- Time History Analysis ,
- Seismic Loading ,
- Equipment Items ,
- Approach In Conjunction ,
- Relay Protection ,
- Service Stations ,
- American National Standards Institute ,
- Wind Load ,
- Circuit Breaker
- Author Keywords
- anchorage ,
- conductor ,
- electrical equipment ,
- damping ,
- dynamic analysis ,
- IEEE 693(TM) ,
- loads ,
- projected performance ,
- required response spectrum ,
- seismic protective devices ,
- seismic qualification ,
- shake table ,
- static coefficient analysis ,
- support structure ,
- suspended equipment ,
- time history
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Seismic Performance ,
- Types Of Equipment ,
- Seismic Methods ,
- Level Of Performance ,
- Dynamic Analysis ,
- Cause Of Failure ,
- Time History ,
- Primary Structure ,
- Acceptance Criteria ,
- Static Analysis ,
- Response Spectrum ,
- Electrical Equipment ,
- Level Of Qualification ,
- Higher Qualifications ,
- Piece Of Equipment ,
- Ground Motion ,
- Building Codes ,
- IEEE Standard ,
- Peak Ground Acceleration ,
- Lower Qualifications ,
- Time History Analysis ,
- Seismic Loading ,
- Equipment Items ,
- Approach In Conjunction ,
- Relay Protection ,
- Service Stations ,
- American National Standards Institute ,
- Wind Load ,
- Circuit Breaker
- Author Keywords
- anchorage ,
- conductor ,
- electrical equipment ,
- damping ,
- dynamic analysis ,
- IEEE 693(TM) ,
- loads ,
- projected performance ,
- required response spectrum ,
- seismic protective devices ,
- seismic qualification ,
- shake table ,
- static coefficient analysis ,
- support structure ,
- suspended equipment ,
- time history