The SHIELD’21 deep seismic experiment

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS
V. Starostenko, T. Janik, W. Czuba, P. Środa, A. Murovskaya, T. Yegorova, A. Verpakhovska, K. Kolomiyets, D. Lysynchuk, D. Wójcik, V. Omelchenko, T. Amashukeli, O. Legostaeva, D. Gryn, S. Chulkov
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Abstract

The wide-angle reflection and refraction (WARR) SHIELD’21 profile carried out in 2021 crosses from SW to NE the main tectonic of Ukraine. The SHIELD’21 targeted the structure of the Earth’s crust and upper mantle of the southwestern margin of the East European Craton with overlying Neogene Carpathian Foredeep and Vendian-Paleozoic Volyn-Podolian Monocline, Archaean and Paleoproterozoic segments of Ukrainian Shield and Late Paleozoic Dnieper-Donets Basin. The ~650 km long profile is an extension of realized in 2014 RomUkrSeis line in Romania and Ukraine from Apuseni Mountains to southwestern Ukrainian Shield. The field work performed in 2021, included the deployment of autonomous seismic stations and drilling-explosive works. A total of 264 seismic receivers were deployed (160 DATA-CUBE and 104 TEXAN stations) with the average spacing between the observation points  about 2.65 km. The sampling interval for all stations was 0.01 s. Seismic energy was generated by 10 shot points with ~50 km of distance between them and total charge in all wells 5775 kg. The SHIELD’21 experiment using TEXAN and DATA-CUBE short-period seismic stations provided high-quality seismic records. The main recorded seismic waves are the refractions of P- and S-waves in sediments, basement, crust and upper-most mantle, and reflections from crustal boundaries, Moho interface and boundaries in the uppermost mantle. Correlation of travel time arrivals of seismic waves provides calculation of the velocity model for both P- and S-waves. The main objective of the SHIELD’21 project is to get new seismic data that increase our knowledge on the lithosphere structure as well as geodynamics of the oil-and-gas-bearing and ore regions of Ukraine.
SHIELD’21深层地震实验
2021年进行的广角反射和折射(WARR) SHIELD’21剖面从乌克兰主构造的西南向东北穿越。SHIELD’21以东欧克拉通西南边缘的地壳和上地幔结构为研究对象,上覆新近纪喀尔巴阡前深和旺代-古生代沃林-波多里亚单斜、乌克兰地盾太古宙和古元古代板块以及晚古生代第聂伯-顿涅茨盆地。这条长约650公里的管道是2014年在罗马尼亚和乌克兰从阿普塞尼山脉到乌克兰西南部地盾的RomUkrSeis线的延伸。2021年进行的现场工作包括部署自主地震站和钻井爆破工作。共部署了264个地震接收器(160个DATA-CUBE站和104个TEXAN站),观测点之间的平均间距约为2.65 km。各监测站的采样间隔为0.01 s。地震能量由10个炮点产生,炮点之间的距离约为50 km,所有井的总电荷为5775 kg。使用TEXAN和DATA-CUBE短周期地震台站的SHIELD’21实验提供了高质量的地震记录。记录到的地震波主要是沉积层、基底、地壳和上地幔中P波和s波的折射,以及地壳边界、莫霍界面和上地幔边界的反射。地震波传播时到达的相关性提供了纵波和横波速度模型的计算。SHIELD’21项目的主要目标是获得新的地震数据,以增加我们对乌克兰油气含矿区岩石圈结构以及地球动力学的认识。
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
自引率
60.00%
发文量
50
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