甘肃平凉地区奥陶系平凉组重力流与等深流交互作用的沉积研究

作    者:严世帮1,李 华2,王季欣2
单    位:(1 成都理工大学沉积地质研究院;2 长江大学地球科学学院)
基金项目:受国家自然科学基金项目“鄂尔多斯盆地西南缘中奥陶统重力流与等深流交互作用沉积研究”资助
摘    要:
以野外露头资料为基础,对甘肃平凉地区奥陶系平凉组重力流及等深流交互作用沉积进行了研究。研究表明,平凉组以砂屑灰岩及泥岩为主,局部见砾屑灰岩;典型岩相包括水平层理页岩相、块状层理砾屑灰岩相、块状层理砂屑灰岩相、粒序层理砂屑灰岩相及透镜状交错层理砂屑灰岩相等5种类型,相应地分别代表深水原地沉积、碎屑流沉积、浊流沉积和等深流沉积。等深流在从东向西大致平行斜坡的运动过程中,在西部由于秦岭—祁连海槽的限制作用,可能导致能量局部增强。平凉组从下至上,重力流沉积规模逐渐减小,等深流沉积逐渐增加。在相对海平面较低时期,重力流极为活跃,等深流作用较弱;在相对海平面上升时期,重力流能量则减弱,等深流作用逐渐显著。等深流可对早期重力流沉积进行搬运、改造、再沉积,进而形成等深流沉积;相反,早期等深流沉积可能会受到后期重力流沉积的侵蚀、破坏。
关键词:鄂尔多斯盆地;奥陶纪;平凉组;浊流;碎屑流;等深流

Interaction Between Gravity Flow Deposits and Contourite Deposits in the Ordovician Pingliang Formation, Pingliang Region, Gansu Province

Author's Name: Yan Shibang, Li Hua, Wang Jixin
Institution: Chengdu University of Technology
Abstract:
The interaction between gravity flow deposits and contourite deposits has been researched based on the outcrop in Ordovician Pingliang Formation of Pingliang region in Gansu province. It is shown that calcarenite and shale are the mainly lithology of Pingliang Formation, and partly with some calcirudite. It is determined that five typical lithofacies include horizontal bedding shale, massive calcirudite, massive calcarenite, graded bedding calcarenite and lenticular cross bedding calcarenite, which correspond to in situ deep-water deposits, debris flow deposits, turbidites and contourites. The energy of the contour current which moved from east to west paralleling to the slope, might be enhanced in the confined environments of Qinling-Qilian Trough. The scale of gravity flow deposits became weaker from the bottom up in Pingliang Formation, while the scale of contourite deposits became stronger. It is concluded that gravity flow was active and the effect of contour current was weak when the relative sea-level was low, and vice versa. The early gravity flow deposits can be subject to transpotation, reconstruction, redeposition by the contour current and then contourites come into being, on the contrary, it is possible that the early contourites are eroded and destroyed by the gravity flow.
Keywords: Turbidity current; Debris flow; Contour current; Pingliang Formation; Ordos Basin
投稿时间: 2017-07-14  
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