Alperen Doğan, Çağdaş Kaygusuz, İbrahim Tiryakioğlu, Cemal Ozer Yigit, Hasan Sözbilir, Çağlar Özkaymak, Bayram Turgut
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引用次数: 3
摘要
最近在安纳托利亚西部伸展省的几个地方观测到与许多快滑活动断层有关的地震倾滑正断层位移。尽管如此,位移的特征以及单个断层段的行为仍然知之甚少。在这里,我们分析了一条影响土耳其Sarıgöl地区沉降区的地震活动正断层,该断层位于1969年6.5级ala ehir地震的地表破裂区。在2017年7月至2020年7月期间,在该地区实施了精确找平方法,以确定Sarıgöl断层上盘相对于下盘的垂直运动。从2017年7月开始的3年中,沿剖面1的年垂直移动量分别为−7.0、−7.3和−7.0 cm,同期沿剖面2的年垂直移动量分别为−7.7、−8.7和−7.8 cm。这种持续的变形,特别是在夏季和秋季,表明可能与地下水位变化有关。该地区实行集约化农业,夏季大量的灌溉活动导致地下水位下降。此外,尽管地下水位很高,但冬季和春季的持续变形和强烈降水导致构造蠕变运动可能是该地区变形的第二个原因。在目前的研究中,最重要的结果是1969年Mw6.5 ala ehir地震后开始的地震变形至今仍以70-80 mm/年的下降速度快速持续。这表明Sarıgöl断层的破坏区不适合在Sarıgöl地区定居,因为垂直位移持续很大,需要适当的建筑政策和宣传活动。
Geodetic evidence for aseismic fault movement on the eastern segment of the Gediz Graben system (western Anatolia extensional province, Turkey) and its significance for settlements
Aseismic dip-slip normal fault displacement related to numerous fast-slipping active faults was recently observed in several localities in the western Anatolia extensional province. Still, the characteristics of displacements along with the behavior of individual fault segments are poorly known. Here we analyze an aseismically active normal fault affecting the settlement area of the Sarıgöl district, Turkey, at the surface rupture area of the 1969 magnitude 6.5 Alaşehir earthquake. A precise leveling method was implemented in this area between July 2017 and 2020, to determine the vertical movements of the hanging wall relative to the footwall of the Sarıgöl fault. The yearly vertical movement on the surface along Profile 1 was − 7.0, − 7.3, and − 7.0 cm, respectively, for the three years starting in July 2017, and on Profile 2 it was − 7.7, − 8.7, and − 7.8 cm for the same time period. This persistent deformation, especially in the summer and fall seasons, suggests that may be related to groundwater level changes. Intensive agriculture is conducted in the region and a high level of irrigation activity in the summer period causes a decrease in groundwater levels. In addition, the continued deformation together with intensive precipitation in winter and spring despite high groundwater levels leads to the idea that tectonic creep movement could be a second reason for the deformation in the area. In the current study, the most important result is that the aseismic deformation starting after the 1969 Mw6.5 Alaşehir earthquake still continues rapidly today with a velocity of 70–80 mm/year down-dip. This indicates that the damage zone of the Sarıgöl fault is not appropriate for settlements in the Sarıgöl district due to continuous high amounts of vertical displacement, and that appropriate building policy and awareness campaigns are needed.
期刊介绍:
The journal publishes original research papers in the field of geodesy and geophysics under headings: aeronomy and space physics, electromagnetic studies, geodesy and gravimetry, geodynamics, geomathematics, rock physics, seismology, solid earth physics, history. Papers dealing with problems of the Carpathian region and its surroundings are preferred. Similarly, papers on topics traditionally covered by Hungarian geodesists and geophysicists (e.g. robust estimations, geoid, EM properties of the Earth’s crust, geomagnetic pulsations and seismological risk) are especially welcome.