damaged wall inside anjar substation control building with

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Damaged wall inside Anjar substation control building with

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Damaged wall inside Anjar substation control building with. Buildings located near steep slopes. Must be away from steep slopes for better resistance to forces. Buildings located on filled – up soil. Buildings located on filled – up soil should be provided. - PowerPoint PPT Presentation

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Page 1: Damaged wall inside Anjar substation control building with

Damaged wall insideAnjar substation control building with

Page 2: Damaged wall inside Anjar substation control building with

Buildings located nearsteep slopes. Must be away from steep slopes for better resistance to forces.

Page 3: Damaged wall inside Anjar substation control building with

Buildingslocated on filled – up soil

Page 4: Damaged wall inside Anjar substation control building with

Buildings located onfilled – up soil should be provided

Page 5: Damaged wall inside Anjar substation control building with

Addition of shear walls to decrease span of diaphragm

Page 6: Damaged wall inside Anjar substation control building with

Shape of Buildings

Page 7: Damaged wall inside Anjar substation control building with

The optimal (regular) seismic configuration

Page 8: Damaged wall inside Anjar substation control building with

Buildings with irregular configuration

Page 9: Damaged wall inside Anjar substation control building with

Buildings with abrupt changes in lateral resistance

Page 10: Damaged wall inside Anjar substation control building with

Buildings with abrupt changes in lateral stiffness

Page 11: Damaged wall inside Anjar substation control building with

Typical analytical diagram of earthquake forces

Page 12: Damaged wall inside Anjar substation control building with

For complicated configuration more than two axes may be used for analysis

Page 13: Damaged wall inside Anjar substation control building with

Earthquake forces on buildings

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Earthquake forces: The reality

Page 15: Damaged wall inside Anjar substation control building with

Earthquake forces acting on a large building

Page 16: Damaged wall inside Anjar substation control building with

Localized strength and stiffness

Page 17: Damaged wall inside Anjar substation control building with

Arrangement of shear walls and braced frames- not recommended.

Page 18: Damaged wall inside Anjar substation control building with

Arrangement of shear walls and braced frames recommended

Page 19: Damaged wall inside Anjar substation control building with

Arrangement of shear walls and braced frames recommended

Page 20: Damaged wall inside Anjar substation control building with

Diaphragm openings

Page 21: Damaged wall inside Anjar substation control building with

Buildings with offsets

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Page 23: Damaged wall inside Anjar substation control building with

Damage to buildings with offsets

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Damage to buildings with offsets

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Re-entrant Corner

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Irregularity in masses

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Elastic and Plastic behavior of mild steel

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Response Spectra

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Beam Reinforcement

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Transverse Reinforcement in Column

Page 31: Damaged wall inside Anjar substation control building with

Column and Joint Detailing

Page 32: Damaged wall inside Anjar substation control building with

Beam Column Intersection

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Examplesof shallow foundations

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Page 35: Damaged wall inside Anjar substation control building with

Common types of cast-in-place concrete piles: (a) Uncased pile; (b) Franki uncased-pedestal pile; (c) Franki cased-pedestal pile;

Page 36: Damaged wall inside Anjar substation control building with

Typical pile configurations

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Common types of earth retaining structures

Page 38: Damaged wall inside Anjar substation control building with

Common types of earth retaining structures