Arid
DOI10.1111/j.1365-246X.2005.02526.x
Crustal shear velocity structure across the Dead Sea Transform from two-dimensional modelling of DESERT project explosion seismic data
Mechie, J; Abu-Ayyash, K; Ben-Avraham, Z; El-Kelani, R; Mohsen, A; Rumpker, G; Saul, J; Weber, M
通讯作者Mechie, J
来源期刊GEOPHYSICAL JOURNAL INTERNATIONAL
ISSN0956-540X
EISSN1365-246X
出版年2005
卷号160期号:3页码:910-924
英文摘要

An analysis of the shear (S) waves recorded during the wide-angle reflection/refraction (WRR) experiment as part of the DESERT project crossing the Dead Sea Transform (DST) reveals average crustal S-wave velocities of 3.3-3.5 km s(-1) beneath the WRR profile. Together with average crustal P-wave velocities of 5.8-6.1 km s(-1) from an already published study this provides average crustal Poisson’s ratios of 0.26-0.27 (V-p/V-s = 1.76-1.78) below the profile. The top two layers consisting predominantly of sedimentary rocks have S- wave velocities of 1.8-2.7kms(-1) and Poisson’s ratios of 0.25-0.31 (V-p/V-s = 1.73-1.91). Beneath these two layers the seismic basement has average S-wave velocities of around 3.6 km s(-1) east of the DST and about 3.7 km s(-1) west of the DST and Poisson’s ratios of 0.24-0.25 (V-p/V-s = 1.71-1.73). The lower crust has an average S-wave velocity of about 3.75 km s(-1) and an average Poisson’s ratio of around 0.27 (V-p/V-s = 1.78). No Sn phase refracted through the uppermost mantle was observed. The results provide for the first time information from controlled source data on the crustal S-wave velocity structure for the region west of the DST in Israel and Palestine and agree with earlier results for the region east of the DST in the Jordanian highlands. A shear wave splitting study using SKS waves has found evidence for crustal anisotropy beneath the WRR profile while a receiver function study has found evidence for a lower crustal, high S-wave velocity layer east of the DST below the profile. Although no evidence was found in the S-wave data for either feature, the S-wave data are not incompatible with crustal anisotropy being present as the WRR profile only lies 30 degrees off the proposed symmetry axis of the anisotropy where the difference in the two S-wave velocities is still very small. In the case of the lower crustal, high S-wave velocity layer, if the velocity change at the top of this layer comprises a small first-order discontinuity underlain by a 2 km thick transition zone, instead of just a large first-order discontinuity, then both the receiver function data and the WRR data presented here can be satisfied. Finally, the S-wave velocities and Poisson’s ratios which have been derived in this study are typical of continental crust and do not require extensional processes to explain them.


英文关键词anisotropy crustal structure Dead Sea Middle East S waves transform faults 2-D modelling
类型Article
语种英语
国家Germany ; Jordan ; Israel
收录类别SCI-E
WOS记录号WOS:000227592700012
WOS关键词INHOMOGENEOUS ANISOTROPIC MEDIA ; REFLECTIVITY METHOD ; TRAVEL-TIMES ; UPPER MANTLE ; RIFT ; COMPUTATION ; JORDAN ; BASIN
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/149123
作者单位(1)Geoforschungszentrum Potsdam, Dept 2, D-14473 Potsdam, Germany;(2)Nat Resources Author, Amman, Jordan;(3)Tel Aviv Univ, IL-69978 Tel Aviv, Israel;(4)An Najah Natl Univ, Nablus, Palestine, Israel;(5)Univ Potsdam, Inst Geowissensch, Potsdam, Germany
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GB/T 7714
Mechie, J,Abu-Ayyash, K,Ben-Avraham, Z,et al. Crustal shear velocity structure across the Dead Sea Transform from two-dimensional modelling of DESERT project explosion seismic data[J],2005,160(3):910-924.
APA Mechie, J.,Abu-Ayyash, K.,Ben-Avraham, Z.,El-Kelani, R.,Mohsen, A.,...&Weber, M.(2005).Crustal shear velocity structure across the Dead Sea Transform from two-dimensional modelling of DESERT project explosion seismic data.GEOPHYSICAL JOURNAL INTERNATIONAL,160(3),910-924.
MLA Mechie, J,et al."Crustal shear velocity structure across the Dead Sea Transform from two-dimensional modelling of DESERT project explosion seismic data".GEOPHYSICAL JOURNAL INTERNATIONAL 160.3(2005):910-924.
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