Event WT4 was identified in Trench T4 at Tell Saidiyeh, a site situated along the Jordan Valley Fault. Unlike the purpose-excavated Trench T3, Trench T4 originated as a cut made during agricultural leveling works and trends northwest–southeast, oblique to the fault trace. The exposure was subsequently widened and cleaned by Ferry et al. (2011). The trench exposes a well-developed fault zone affecting both late Pleistocene and Holocene deposits. Because the trench is oriented approximately 45° to the fault, the deformation zone appears wider than in a perpendicular exposure and provides an unusually detailed record of repeated surface ruptures.
The evidence for Event WT4 consists of a fault splay located approximately 1 m northwest of fault zone FZ3. According to Ferry et al. (2011:54), this splay affects all deposits up to unit h but is sealed by unit g, which forms the event horizon.
The chronology of Event WT4 is constrained by radiocarbon samples that bracket the event horizon. According to Ferry et al. (2011:54), the rupture is bounded by calibrated ages from radiocarbon samples, Tbc-23/Tbc-24 above and sample Tbc-18 below, yielding a nominal age window between approximately 7500 BCE and 5080 BCE, placing the event within the early Holocene. Ferry et al. note, however, that the most likely age of the earthquake is not evenly distributed within this bracket. The stratigraphic position of Event WT4 relative to the dated units suggests that the rupture occurred closer in time to sample Tbc-18 than to the younger samples Tbc-23 and Tbc-24. As a result, they argue that the actual age of Event WT4 is probably more restricted, falling between approximately 7500 BCE and 5500 BCE.
- Fig. 3b Location Map of the
Tell Saidiyeh Site from Ferry et al. (2011)![]()
Figure 3b
Geomorphology of the Tell Saidiyeh site from a high-resolution total station topographic survey (contour spacing 0.5 m). South of the archaeological tell (located ~100 m to the north; see inset in Fig. 8b), the morphology displays a recent terrace strath (Qto) affected and left-laterally displaced by the fault. The southern edges (dashed lines) of streams serve as piercing points because they are less likely to be eroded than the northern ones in a left-lateral setting. Stream El flows westward along the southern edge of Qto and is displaced by 7 ± 0.5 m across the fault. Stream W2 is a beheaded remnant of El and displays 114 ± 5 m of offset. A minimum emplacement age of 22 ka for W2 yields an average slip rate of 4.9 mm/yr for that period. Solid rectangles represent trenches T3 and T4, which display faulting evidence for the last 17 ka. Blanked areas could not be surveyed because of the presence of agricultural and military facilities.
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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. 4a Oblique view of trench
T4 showing Lisan units affected by faulting and liquefaction from Ferry et al. (2011)- Fig. 4b Main Shear Zone of trench
T4 from Ferry et al. (2011)Fig. 5d
Trench T4 is originally a road cut that was noticeably extended and cleaned. It is oriented 45° to the fault, which widens the deformation zone. This exposure provides the bulk of the paleoseismic dataset. See text for details.
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Ferry et al (2011)
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