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P-wave velocity structure under the Changbaishan volcanic region, NE China, from wide-angle reflection and refraction data
Authors:Jianli Song   Eric A. Hetland   Francis T. Wu   Xiankang Zhang   Guodong Liu  Zhuoxin Yang
Affiliation:aInstitute of Geology, China Earthquake Administration, Beijing 100029, China;bGeophysical Exploration Center, China Earthquake Administration, Zhengzhou 450002, China;cDepartment of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, MA 02139, USA;dDepartment of Geological Sciences and Environmental Studies, State University of New York at Binghamton, Binghamton, NY 13902, USA
Abstract:We present velocity models determined by inverting refracted and reflected arrivals along two active source lines in the Changbaishan volcanic region, NE China. We resolve a prominent low-velocity zone (LVZ) in the crust, with velocities as low as 5.4 km/s. Away from the LVZ, the velocity gradients in the crust are relatively smooth, with average P-wave velocities of about 6.0–6.5 km/s. The Moho is at about 35 km depth, thickening to about 40 km under the Tianchi volcano, and thinning to about 30 km under the LVZ. The LVZ is located about 30–60 km to the north of the summit of the Tianchi volcano (the most recently active volcano in the region), is about 30–75 km in north–south extent, is at most 35 km in east–west extent, and is in the depth range of about 10–25 km below the surface. We use these results to constrain receiver function inversions, and show that the receiver functions in the region are compatible with our findings. With these data alone, the significance of the LVZ in non-unique, although we do not see any evidence to support the presence of partial melt in the crust, and favor the interpretation that the LVZ indicates a residual crustal magma chamber.
Keywords:Changbaishan   Tianchi volcano   Crustal structure   Wide-angle refraction, reflection   Receiver functions
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