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geodynamics 地球动力学与板块运动
Plate dynamics
• Kinematics = description of motion (rigid
rotation or deformation)
• Dynamics = forces (stresses) responsible for
these motions
• Rheology = mechanical properties of
Earth’s material, determine their response to
stress
⇒“dynamics = kinematics + rheology”
Heat and its transport in the Earth
• The fundamental energy source within the Earth is heat, primarily provided by
radioactive decay (U, Th).
• Radiation
– Evacuation of heat by electromagnetic radiation
– Ex. Lava flow looses heat by radiating ⇒red color
– Inside the Earth: pressure prevents radiation
• Conduction
– Propagation of vibrations (= heat) inside crystals without radiation and without
displacement of matter
– Conduction is more efficient in some materials than others ⇒conductivity
(silver=418W.m-1.K-1W.m-1.K-1, wood 0.1 W.m-1.K-1, granite 27 W.m-1.K-1)
– More efficient than conduction (function of conductivity), but less than convection
• Convection: if conduction not sufficient to evacuate heat:
⇒ Temperature increases
⇒ Mechanical properties change
⇒ Motion of the material itself towards colder region
⇒ Transport of heat by motion of matter
Convection
• 2 plates separated by distance ∆L, with
constant temperature difference ∆T
• Temperature increase at the bottom ⇒
density decrease ⇒buoyancy force
• Consequence: upward motion, but resisted
by viscous drag, proportional to upward
velocity
• “Intensity” of convection depends on
Rayleigh number = ratio of buoyancy
forces to viscous resistance
• Large Ra ⇒faster convection ⇒more
efficient heat dissipation
Mantle convection
• 2 models:
– Layered model: strong convection in
upper mantle is decoupled from slow
convection in
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