Source-to-sink characteristics of the channelized submarine fan system of the Huangliu formation in the Dongfang block, Yinggehai basin, south China sea
Author:
Publisher
Elsevier BV
Subject
Geotechnical Engineering and Engineering Geology,Fuel Technology
Reference53 articles.
1. From landscapes into geological history;Allen;Nature,2008
2. Sediment Routing Systems: the Fate of Sediment from Source to Sink;Allen,2017
3. Onshore to offshore anatomy of a late Quaternary source-to-sink system (Po Plain-Adriatic Sea, Italy);Amorosi;Earth Sci. Rev.,2016
4. Provenance of upper Miocene sediments in the Yinggehai and qiongdongnan basins, northwestern south China sea: evidence from REE, heavy minerals and zircon U-Pb ages;Cao;Mar. Geol.,2015
5. The sedimentary and tectonic evolution of the Yinggehai-Song Hong basin and the southern Hainan margin, South China Sea: implications for Tibetan uplift and monsoon intensification;Clift;J. Geophys. Res. Solid Earth,2006
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