西湖凹陷PH 斜坡超覆带源-汇特征 及岩性地层圈闭模式

作    者:徐东浩,秦兰芝,何新建,张书平,袁悦
单    位:中海石油(中国)有限公司上海分公司研究院
基金项目:
摘    要:
通过钻井、测井及三维地震等资料的分析,对西湖凹陷PH斜坡带平湖大断裂上升盘超覆带的层序地层构 成、源-汇系统差异及沉积演化、控砂机制和岩性地层圈闭发育模式进行了综合研究。研究认为:(1)PH斜坡平湖组 自下而上划分为3个三级层序(SQ1、SQ2、SQ3)。SQ1层序分布范围局限,受控于挠曲成因的陡坡坡折,低位体系域发 育,沉积了近源的以中生界岩浆岩基底物源为主的“沟-坡-扇”耦合的扇三角洲体系;SQ2和SQ3层序分布范围较广, 受控于侵蚀成因的缓坡坡折,海侵体系域和高位体系域发育,沉积了远源的以元古宇变质岩基底物源为主的三角洲 体系。(2)在体系域和坡折的控制下,发育3种岩性地层圈闭模式:低位期主要在挠曲坡折之下发育受基岩和扇根物 性封堵的扇三角洲前缘砂体超覆型地层圈闭,海侵期主要发育受海泛期泥岩遮挡的潮汐砂坝和潮道侧向尖灭型岩性 圈闭,高位期主要发育受侵蚀坡折控制的上倾尖灭和侧向尖灭的三角洲平原分流河道岩性圈闭。
关键词:超覆带;坡折;体系域;源-汇耦合差异;岩性地层圈闭;西湖凹陷

Source-to-sink characteristics and lithological-stratigraphic trap model of PH slope overlap belt in Xihu Sag

Author's Name: XU Donghao, QIN Lanzhi, HE Xinjian, ZHANG Shuping, YUAN Yue
Institution: 
Abstract:
Through the analysis of drilling, logging and three-dimensional seismic data, the sequence stratigraphic composition, source-to-sink system difference, sedimentary evolution, sand control mechanism and lithologic-stratigraphic trap model in hanging wall of Pinghu fault in PH slope overlap belt of Xihu Sag are comprehensively studied. The results indicate that: (1) The Pinghu Formation in the PH slope overlap belt is controlled by different genetic slope breaks such as erosion and flexural, and is divided into three third-order sequences (SQ1 to SQ3) from bottom to top. Among them, SQ1 is limited in distribution, and development of the lowstand system tract is controlled by the steep slope break of deflection, forming the fan delta system coupled with ancient valley and slope break, which is dominated by the nearby basement provenance of Mesozoic magmatic rock. SQ2 and SQ3 are widely distributed, and development of the transgression and highstand system tracts are controlled by gentle slope break of erosion, forming the delta system dominated by the distant basement provenance of Proterozoic metamorphic rock. (2) The slope break controls the sand body distribution, and the slope break trough under the flexural slope break is a restrictive landform, which controls the layer by layer accretion and overlap of fan delta sand body vertically overlaied in lowstand tract. The low-lying area under the erosion slope break is the place where the highstand tract delta sand bodies are distributed, and the sand bodies of delta front are superimposed and dsitributed contiguously on plane. (3) Under the control of system tract and slope break, three types of lithologicstratigraphic trap models are developed. During the low stand stage, the fan delta front sand body overlaping stratigraphic traps blocked by the physical properties of bedrock and fan root are mainly developed under the flexural slope break. During the transgressive stage, the tidal sand bar and tidal channel lateral pinchout lithologic traps blocked by the mudstone in the flooding period are mainly developed. During the highstand stage, lithologic traps in distributary channels of delta plain controlled by erosion slope break, updip pinch out and lateral pinch out, are mainly developed.
Keywords: overlap belt; slope break; system tract; source-to-sink coupling difference; lithological-stratigraphic trap; Xihu Sag
投稿时间: 2023-07-07  
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