Knowledge of the elastic properties of partially molten rocks is crucial for understanding low-velocity regions in the interior of the Earth. Models of fluid and solid mixtures have demonstrated that significant decreases in seismic velocity are possible with small amounts of melt, but there is very little available data for testing these models, particularly with both P and S waves for mantle compositions. We report ultrasonic measurements of P and S velocities on a partially molten KLB-1 sample at mantle conditions using a multi-anvil device at a synchrotron facility. The P, S, and bulk sound velocities decrease as melting occurs. We find that the quantity, ∂lnVS/∂lnVB (where VB is the bulk sound velocity) is lower than mechanical models estimate. Instead, our data, as well as previous data in the literature, are consistent with a dynamic melting model in which melting and solidification interact with the stress field of the acoustic wave.
CITATION STYLE
Weidner, D. J., Li, L., Whitaker, M. L., & Triplett, R. (2018). Ultrasonic Acoustic Velocities During Partial Melting of a Mantle Peridotite KLB-1. Journal of Geophysical Research: Solid Earth, 123(2), 1252–1261. https://doi.org/10.1002/2017JB014753
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