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    • Seismic science and site influences
      • Overview
      • Seismicity in New Zealand
      • Faults
        • Types of fault
        • Faults in New Zealand
        • Earthquake risk zones
      • Measuring earthquakes
      • Earthquake energy
        • Body waves
        • Surface waves
      • Earthquake hazards
        • Surface rupture
        • Ground shaking
        • Ground settlement
        • Liquefaction
        • Lateral ground displacement
        • Landslides and rock falls
        • Ground performance
    • Resilient design
      • Overview
      • Earthquake engineering
        • Limit state design
        • Capacity design
      • Codified seismic design
        • The Building Act
        • The Building Code
        • Building control mechanisms
        • Compliance with the Building Code
        • Verification Method B1/VM1
        • Acceptable Solution B1/AS1
        • Level of importance
        • Building upgrades
    • Superstructure
      • Overview
      • Seismic design concepts
        • Moment frames
        • Braced frames
        • Shear panels
        • Horizontal diaphragms
      • Low-damage design
      • Commercial buildings
        • Concrete structures
        • Steel structures
        • Timber structures
    • Foundations
      • Overview
      • Foundation performance
      • Residential foundations
        • NZS 3604-type foundations
        • Engineered foundations
        • Shallow foundations - residential
        • Deep foundations - residential
      • Commercial foundations
        • Site characteristics
        • Deep foundations - commercial
        • Shallow foundations - commercial
    • Building envelope
      • Overview
      • Envelope performance
      • Residential buildings
        • Roof claddings
        • Wall claddings - residential
      • Commercial buildings
        • Effect of inter-storey drift on cladding
        • Wall claddings - commercial
    • Strengthening strategies
      • Overview
      • Ground remediation
        • Replacement techniques
        • Densification techniques
        • Solidification techniques
        • Reinforcement techniques
        • Drainage techniques
      • Strengthening residential buildings
        • NZS 3604-type pile foundations
        • Bracing foundations
      • Strengthening commercial buildings
        • Unreinforced masonry
      • Retaining walls
    • Non-structural systems
      • Overview
      • Performance of non-structural systems
      • Building Code compliance
        • Standards for engineering systems
        • Standards for suspended ceilings
      • Design of engineering systems
        • Design pathways for engineering systems
        • Design criteria for engineering systems
        • Earthquake demand
      • Restraining engineering systems
        • Anchors, fixings and fasteners
        • Braces and supports
        • Piping systems
        • Ducting
        • Electrical services
        • Tanks
        • Clearances
        • Flexibility
      • Special considerations for suspended ceilings
        • Design pathways for suspended ceilings
        • Design criteria for suspended ceilings
        • Restraining suspended ceilings
  • Resources

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Welcome to Seismic Resilience

BRANZ's Seismic Resilience is an online resource that aims to raise the seismic performance of Aotearoa New Zealand’s building stock. Read more...

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  • Home seismic science

    Seismic science and site influences

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    • Overview
    • Seismicity in New Zealand
    • Faults
    • Measuring earthquakes
    • Earthquake energy
    • Earthquake hazards
  • Home planning

    Resilient design

    View contents
    • Overview
    • Earthquake engineering
    • Codified seismic design
  • Home superstructure

    Superstructure

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    • Overview
    • Seismic design concepts
    • Low-damage design
    • Commercial buildings
  • Home foundations

    Foundations

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    • Overview
    • Foundation performance
    • Residential foundations
    • Commercial foundations
  • Home building envelope

    Building envelope

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    • Overview
    • Envelope performance
    • Residential buildings
    • Commercial buildings
  • Home strengthening

    Strengthening strategies

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    • Overview
    • Ground remediation
    • Strengthening residential buildings
    • Strengthening commercial buildings
    • Retaining walls
  • Home non-structural systems

    Non-structural systems

    View contents
    • Overview
    • Performance of non-structural systems
    • Building Code compliance
    • Design of engineering systems
    • Restraining engineering systems
    • Special considerations for suspended ceilings
Topics
  • Seismic science and site influences
  • Resilient design
  • Superstructure
  • Foundations
  • Building envelope
  • Strengthening strategies
  • Non-structural systems
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  • Seismic science and site influences
  • Resilient design
  • Superstructure
  • Foundations
  • Building envelope
  • Strengthening strategies
  • Non-structural systems
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