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青海湖北部冲积扇沉积特征、演化过程及控制因素

刘超 姜在兴 陈骥

油气地质与采收率2017,Vol.24Issue(5):1-9,9.
油气地质与采收率2017,Vol.24Issue(5):1-9,9.

青海湖北部冲积扇沉积特征、演化过程及控制因素

Sedimentary characteristics, evolution and controlling factors of the alluvial fans, the north of Qinghai Lake

刘超 1姜在兴 1陈骥2

作者信息

  • 1. 中国地质大学(北京)能源学院,北京100083
  • 2. 中国石化勘探分公司勘探研究院,四川成都610041
  • 折叠

摘要

Abstract

Alluvial fans,which are important reservoirs for hydrocarbon accumulation,are characterized by complex internal structures and strong heterogeneity.Three alluvial fans (Quanjihe Fan,Shaliuhe Fan,Lanniwan Fan)developed in the north of Qinghai Lake were divided into several subfacies and several mnicrofacies based on field surveys and analysis of remote sensing images.For Quanjihe Fan and Shaliuhe Fan,braided channel,main channel and interchannels were identified at the fan roots;braided channel,channel bars,sheet flood and noncohesive debris flow were identified at the fan middle;sheetflood and mudflat were identified at the fan margin.Two periods of debris flow and one short period of traction flow happened during the development of Lanniwan Fan.According to the sedimentary characteristics,the evolution processes of Shaliuhe Fan and Quanjihe Fan can be divided into 4 stages:the initial debris flow deposition and the development of main channel,noncohesive debris flow deposition,extensive development of braided channel and migration of channels and development of the delta.And the evolution processes of Lanniwan Fan can be divided into 3 stages:the early debris flow deposition,the intermittent traction flow deposition and the late debris flow deposits.The results show that the differences in provenance are the main causes for the differences in sedimentary characteristics for the 3 modern alluvial fans.And climnatic factors,including humidity and wind field,control fan deposition too.

关键词

冲积扇/沉积特征/沉积演化过程/物源/气候/青海湖

Key words

alluvial fan/sedimentary characteristics/evolution processes/provenance/climate/Qinghai Lake

分类

能源科技

引用本文复制引用

刘超,姜在兴,陈骥..青海湖北部冲积扇沉积特征、演化过程及控制因素[J].油气地质与采收率,2017,24(5):1-9,9.

基金项目

国家科技重大专项“陆相深水储集体成因与地质评价新方法”(2017ZX05009-002). (2017ZX05009-002)

油气地质与采收率

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