HR: 1340h
AN: H33C-1396 [Abstracts]
TI: Wet Tectonics: A New Planetary Synthesis
AU: * Grimm, K A
EM: kgrimm@eos.ubc.ca
AF: UBC Earth & Ocean Sciences, 6339 Stores Rd., Vancouver, BC V6T 1Z4
Canada
AB:
Most geoscientists (and geoscience textbooks) describe plate tectonics as a `solid-Earth' phenomenon, with fluids playing an
important role in discrete geodynamic processes. As a community of diverse research specialists, the critical role of water
is being widely elucidated, however these diverse studies do not address the fundamental origin and operation of the global
plate tectonic phenomenon, and its expressions in planetary geodynamics and geomorphology. The Wet Tectonics hypothesis
extends well beyond the plate tectonics paradigm, to constitute a new synthesis of diverse geoscience specializations and
self-organizing complexity into a simple, internally consistent and explicitly testable model. The Wet Tectonics hypothesis
asserts that Earth's plate tectonic system arose from and is the explicit and dynamic result of water interacting with the
hot silicate mantle. The tectosphere is defined as an interactive functional (rather than structural, compositional or
rheological) entity, a planetary-scale dynamic system of plate formation, plate motion, and rock/volatile recycling. Earth's
tectosphere extends from the base of the asthenosphere to the top of the crust, arising and evolving as a dynamic pattern of
organization that creates, orders and perpetuates itself. Earth's tectosphere is energetically-open, materially ajar
(steady-state operation may not require sub-asthenospheric inputs; shifts between distinct tectonic modes may result from
changes in coupling between the tectosphere and subasthenospheric reservoirs) and chemically-closed (i.e. the tectosphere
recycles its own wastes). Water is a fundamental requirement in all of the constituent processes of Earth's tectosphere,
including seafloor spreading, slab cooling/subsidence, plate motion, asthenosphere rheology, and subduction (where crustal
and volatile recycling occur). As a working hypothesis, we suggest that the dynamic and persistent hydrosphere and
tectosphere on planet Earth are fully interdependent and co-evolving phenomena. The concept of autocatalytic hypercycles has
been adapted from molecular biology to resolve the apparent paradox of circular causality amongst the coupled phenomena of
liquid water oceans and `plate tectonics'. This new planetary synthesis presents fundamental implications for geological,
geophysical, Earth system and planetary sciences, as well as novel hypotheses concerning plate drive (gravity sliding ±
slab pull), origin of plate tectonics (Hadean, >=4.4Ga), biogeochemical cycling (balanced global fluxes of water into and
out of the tectosphere; is the asthenosphere continuously rehydrated via lateral advection) and planetary geomorphology
(simple contrasts between Mars, Earth and Venus).
DE: 0845 Instructional tools
DE: 1223 Ocean/Earth/atmosphere/hydrosphere/cryosphere interactions (0762, 1218, 3319, 4550)
DE: 3040 Plate tectonics (8150, 8155, 8157, 8158)
DE: 8100 TECTONOPHYSICS
DE: 8149 Planetary tectonics (5475)
SC: Hydrology [H]
MN: Fall Meeting 2005