Event YT2 was identified in Trench T2 at Ghor Khabed, a pull-apart system on the Jordan Valley Fault. The trench was excavated across the western fault section of the Ghor Khabed depression, where late Pleistocene Lisan deposits, Damya formation sediments, and Holocene pull-apart deposits are affected by faulting within a broad shear zone approximately 2.5 m wide.
Event YT2 is interpreted as the penultimate faulting event recognized in Trench T2. The rupture produced a complex zone of deformation characterized by brecciation, fracturing, and sediment infilling and includes a flower structure approximately 1.5 m wide that is filled with breccia (unit b1) and stratified silty clay (unit b2).
The chronology of Event YT2 is constrained by unit b1, which has been radiocarbon dated using a charcoal sample ( Ka-T2-1N) to a calibrated date of 560–660 CE. If unit b1 is interpreted as a fissure fill emplaced shortly after rupture, then Event YT2 occurred shortly before 560–660 CE. If, however, unit b1 represents pre-existing sediment subsequently deformed by faulting, then Event YT2 must be younger than 560–660 CE. Ferry et al. (2011) regarded the more likely interpretation as one in which Event YT2 postdates unit b1 and therefore corresponds an earthquake affecting the Jordan Valley after 560–660 CE. In that scenario, Event YT2 may correlate with the 659/660 CE Jordan Valley earthquake(s), one of the mid-8th century CE earthquakes, or the 1033/4 CE Palestine earthquake(s).
- Fig. 3C Location Map of the
Ghor Khabed Site from Ferry et al. (2011)![]()
Figure 3C
Geomorphology of the Ghor Kabed site from a high-resolution total station topographic survey. The eastern fault strand shows a linear and continuous geometry with a gentle slope (the steep slope visible to the north is artificial), while the western strand displays a steeper slope and a left-step geometry. Two trenches were excavated at that site: T1 on the central strand north of the depression, and T2 on the eastern strand southeast of the depression (see logs in Fig. 5). Height curve spacing is 0.25 m.
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Ferry et al. (2011)- Fig. 5E Stratigraphic Correlation
between Ghor Khabed and Tell Saidiyeh Trenches from Ferry et al. (2011)![]()
Figure 5E
Correlations of stratigraphic sections of trenches. The geological formations of Lisan and Damya are common basement-bottom units for trenches. Erosion processes (tilde lines) have major effects on soft sediments, and Trench T3 shows a significant hiatus of the Damya formation. The correlation between alluvial and lacustrine deposits and the related radiocarbon dating (see also Table 1 and Fig. 7) illustrate the different recent depositional environments at trench sites.
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Ferry et al. (2011)- Table 1 Radiocarbon Table
from Ferry et al. (2011)- Fig. 4D Main Shear Zone in
Trench T2, Ghor Kabed from Ferry et al. (2011)Fig. 5b
Trench T2 displays a main fault zone filled with breccia that have been ruptured afterward and documents the most recent event, radiocarbon dated after A.D. 560-660. Combined, these observations suggest two surface-rupturing events occurred at Ghor Kabed between A.D. 560 and A.D. 1800, which may be related to the A.D. 749 and A.D. 1033 events.
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Ferry et al (2011)
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