Soil liquefaction: when shaken, saturated, granular soil acts like a liquid
One-line orientation
During an earthquake, loose saturated granular soil can lose shear strength—its resistance to sliding—and behave like a liquid. The key is recognizing the soil, water, and shaking conditions that create the risk.
Key points
Mechanism:seismic shaking (earthquake) raises pore-water pressure in saturated soil
until the grains lose contact; the soil loses shear strength and behaves like a liquid,
no longer supporting structures.
The three ingredients (all required):
Loose / uncompacted soil,
Saturated — below the water table,
Granular — sand or non-plastic silt.
Trigger = seismic shaking.
Most susceptible: loose, uncompacted granular soils (sands, non-plastic silts).
Clay-rich cohesive soils resist it: cohesive particles stay bound together, so they are much
less susceptible than loose, saturated, cohesionless sands.
Liquefaction: shaken, saturated, loose sand acts like a liquid
SCHEMATIC
The same loose, saturated, granular soil before, during and after seismic shaking — watch the water between the grains.
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Key
grains of sand or non-plastic silt, in pore water
water table — soil below it is saturated
load path through touching grains
pore water pushed upward — it rises, then escapes
Clay (cohesive, low void ratio) resists · dry or dense sand does not liquefy.
Shear strength is what stops soil grains sliding past one another — it is what holds a footing up. Pore water carries the grains apart, so nothing is left to resist, and the soil behaves like a liquid until the water escapes.
Confusions / comparison
Factor
Liquefies
Resists liquefaction
Soil type
Granular: loose sand, non-plastic silt
Clay-rich cohesive soil; dense gravel
Density
Loose / uncompacted
Dense / well-compacted
Moisture
Saturated (below water table)
Dry / unsaturated
Particle behavior
Cohesionless, high void ratio
Cohesive, low void ratio
Trigger
Seismic shaking
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Related
→ Soil types (this module): cohesive vs cohesionless soils · Soil properties (this module): shear
strength is what liquefaction destroys · Water table (this module): saturation is the precondition
for liquefaction.