基于地震相分析的中千岛槽北部地质演化

V. V. Zhigulev, D. Jsc, A. V. Zhigulev
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引用次数: 0

摘要

建立了位于千岛-堪察加海沟陆坡上的中千岛海槽东北端弧间盆地地质演化模型。地震相分析首次用于确定深海沟沉积条件。分析基于2014年dalmornetegeophysics JSC获得的二维CDP反射地震数据。根据模拟结果,该盆地形成于晚白垩世,经历了几个阶段。早期盆地的局部地壳区域的最初下沉改变了它与鄂霍次克海和太平洋的邻近水域的进一步分离,各种火山形成了它的轮廓。渐新世-中中新世晚期,盆地东部构造上火山构造的沉降和淹没使盆地水与太平洋水合并。这种沉降与千岛-堪察加海沟形成的全球过程有直接关系,如沿谷底的固有地壳沉降,并伴随其侧翼倾角的增加。推断海沟的形成时间大致对应渐新世-中中新世界线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geological evolution of the northern Mid Kuril trough based on seismic facies analysis
The model of geological evolution of an interarc basin, which is the north-east ending of Mid Kuril trough located on the continental slope of Kuril-Kamchatka trench, was constructed. Seismic facies analysis was first applied to define sedimentation conditions in a deep water trench. The analysis was based on the 2D CDP reflection seismic data obtained by Dalmorneftegeophysica JSC in 2014. According to the modeling results, the basin began to form in the Late Cretaceous and passed several stages. Initial subsidence of a local crust area of the incipient basin changed over to its further separation from the adjacent waters of the Sea of Okhotsk and Pacific Ocean by various volcanic formations framing its contour. The basin waters and the Pacific Ocean waters merged as a result of subsidence and submersion of volcanic structures on the east basin framing at the final stage during the Oligocene-Middle Miocene. This subsidence is directly related to the global processes associated with Kuril-Kamchatka ocean trench appearance such as inherent crust subsidence along valley bottom line accompanied by increase in inclination angle of its flanks. It was concluded that the trench origination time approximately corresponds to the Oligocene-Middle Miocene boundary.
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