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现代黄河三角洲沉积物动态变化过程的特征与机理
by
ZHANG Shaotong
, JIA Yonggang
, Hongxian, SHAN
, GUO, Lei
, LIU, Xiaolei
in
Bioturbation
/ Consolidation
/ Deformation
/ Depth profiling
/ Erosion resistance
/ Fluvial sediments
/ Gravity
/ Heterogeneity
/ Hydrodynamics
/ Landslides
/ Liquefaction
/ Ocean floor
/ Physical simulation
/ Pore water
/ Pore water pressure
/ Rivers
/ Sediment
/ Sediments
/ Seepage
/ Soil erosion
/ Stratification
/ Suspended sediments
2016
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现代黄河三角洲沉积物动态变化过程的特征与机理
by
ZHANG Shaotong
, JIA Yonggang
, Hongxian, SHAN
, GUO, Lei
, LIU, Xiaolei
in
Bioturbation
/ Consolidation
/ Deformation
/ Depth profiling
/ Erosion resistance
/ Fluvial sediments
/ Gravity
/ Heterogeneity
/ Hydrodynamics
/ Landslides
/ Liquefaction
/ Ocean floor
/ Physical simulation
/ Pore water
/ Pore water pressure
/ Rivers
/ Sediment
/ Sediments
/ Seepage
/ Soil erosion
/ Stratification
/ Suspended sediments
2016
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Do you wish to request the book?
现代黄河三角洲沉积物动态变化过程的特征与机理
by
ZHANG Shaotong
, JIA Yonggang
, Hongxian, SHAN
, GUO, Lei
, LIU, Xiaolei
in
Bioturbation
/ Consolidation
/ Deformation
/ Depth profiling
/ Erosion resistance
/ Fluvial sediments
/ Gravity
/ Heterogeneity
/ Hydrodynamics
/ Landslides
/ Liquefaction
/ Ocean floor
/ Physical simulation
/ Pore water
/ Pore water pressure
/ Rivers
/ Sediment
/ Sediments
/ Seepage
/ Soil erosion
/ Stratification
/ Suspended sediments
2016
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Journal Article
现代黄河三角洲沉积物动态变化过程的特征与机理
2016
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Overview
黄河入海沉积物自河口进入海洋后,在重力、水动力、生物改造等一系列外部作用下,经历着堆积、固结、液化、侵蚀再悬浮、海床变形滑动以及后期改造等一系列动态变化过程。研究团队近十几年来针对现代黄河三角洲沉积物的动态变化过程,开展了一系列的室内外物理模拟试验与水下三角洲现场原位长期观测等研究工作。在各动态变化过程的特征与机理方面,主要得到了以下认识:快速堆积后沉积物的固结速度很快,1-2天便可达到甚至超过原始海床强度,海床发育有显著的各项非均匀性,并发育有\"硬壳层\"。粉质土海床易于累积孔隙水压力,发生沉积物\"液化\"现象,一方面会改变海床表层沉积物的抗侵蚀性;另一方面,在海床内部垂向渗流的驱动下,海床内部部分细粒沉积物会被\"泵送\"输运到海床表面,进而进入上覆水体成为再悬浮沉积物,即部分再悬浮沉积物来源于海床内部。黄河三角洲坡度极缓,海底滑坡可以在近于水平的坡度条件下发生。波致海床液化引起的地层重构或海床渗流导致的内部土颗粒运移,可能会将相对均匀的海床改造为层化结构,这对河口地区沉积层理的解读具有新的启示。
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