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How do we know there is a Core to the Earth? Earth Structure from Seismology - Seismic Ray Paths - Earth Structure Crust Mantle Core Inner Core. Snell’s Law Fermat’s Principle. q 1. Air. Water.
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How do we know there is a Core to the • Earth? • Earth Structure from Seismology • - Seismic Ray Paths • - Earth Structure • Crust • Mantle • Core • Inner Core
Snell’s Law Fermat’s Principle q1 Air Water q2 sin q1 / sin q2 = n21
a1 q1 q2 a2 q2 q3 a3 a1 < a2 <a3
Time 1/a3 1/a2 1/a1 Distance Ray Paths in a Layered Medium a1 a2 a3
Andrija Mohorovicic (1857-1936) Found seismic discontinuity at 30 km depth Kupa Valley (Croatia). Mohorovicic discontinuity ‘Moho’
Forward Branch Backward Branch
Forward Branch Shadow Zone Forward Branch Backward Branch
PcP Forward Branch Shadow Zone 1912 Gutenberg observed shadow zone 105o to 143o 1939 Jeffreys fixed depth of core at 2898 km (using PcP) Forward Branch Backward Branch Backward Branch PKP Forward Branch Shadow Zone PcP P Forward Branch
Crust 6349 ~ 6379 km Mantle 2998 ~ 6349 km Core 0 ~ 2998 km
PKIKP Refractions from the Inner Core Shadow Zone
Backward Branch PKP PKIKP Forward Branch Shadow Zone PcP P Forward Branch Inner Core discovered by Lehman (1935)
Crust 6340 ~ 6370 km Mantle 2998 ~ 6340 km Core 1250 ~ 2998 km Inner Core 0 ~ 1250 km
When velocity increasesrapidly with depth Velocity Depth Triplication Travel time prograde retrograde prograde Epicentral distance
Velocity model for calculation Calculated traces Observed traces
(200 km discontinuity) 440 km discontinuity (550 km discontinuity) 660 km discontinuity D’’ PKP ‘GH’ branch
440 km discontinuity 660 km discontinuity Mantle S P D’’ Outer Core Inner Core IASPEI 91 Model Mantle Outer Core Inner Core
Inner Core Outer Core Lower Mantle Bulk Sound Velocity Upper Mantle Density What is the mantle made of ? Olivine About 60% Also Orthopyroxene Clinopyroxene Garnet
Inner Core Outer Core Lower Mantle Bulk Sound Velocity Upper Mantle Density What is the core made of? Fe plus Light element About 10-15 % Iron-Nickel alloy Light Element Candidates Sulphur S Silicon Si Oxygen O Potassium K Hydrogen H
whole mantle Vs structure (Masters et al., 2000) Data: ・Body waves ・Surface waves ・Free Oscillations ①Large heterogeneity in ranges of about 300km beneath the surface and above the core ②Similarity in spatial pattern of high and low Vs
Plume beneath Africa Vs depth profile Surface CMB 660km Slow Fast
Conclusions Studies of how seismic waves travel through the Earth led to the discoveries of its basic structure. Strong discontinuities in seismic velocity identify the crust, mantle, outer core, and inner core. The traditional 1-D Earth structures are currently being improved into 3-D structures. Information about the Earth’s structure provides insights into the convection and other physical processes that are occurring within the Earth’s interior.