Event YT4 in Tell Saidiyeh Trench 4 Open this page in a new tab

Event YT4 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 YT4 consists of a series of small displacements, generally only a few centimeters in magnitude, affecting multiple sedimentary units along fault zone FZ2. According to Ferry et al. (2011:54), units m through e in the central part of the trench all display minor offsets along this fault strand. The rupture terminates beneath unit d, which seals the deformation and therefore marks the event horizon.

The chronology of Event YT4 is constrained by its occurrence after deposition of unit e and before deposition of unit d. Ferry et al. (2011:54) date the event to between approximately 5060 BCE and 1410 BCE using the calibrated ages of radiocarbon samples Tbc-23 and Tbc-26, while ignoring sample Tbc-24.

  • Fig. 3b Location Map of the Tell Saidiyeh Site from Ferry et al. (2011)
  • Fig. 5E Stratigraphic Correlation between Ghor Khabed and Tell Saidiyeh Trenches from 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)


By Jefferson Williams