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首页> 外文期刊>Geophysical Research Letters >CLAY CONTENT, POROSITY AND VELOCITY OF AMAZON FAN SEDIMENTS DETERMINED FROM ODP LEG 155 CORES AND WIRELINE LOGS
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CLAY CONTENT, POROSITY AND VELOCITY OF AMAZON FAN SEDIMENTS DETERMINED FROM ODP LEG 155 CORES AND WIRELINE LOGS

机译:由ODP腿155孔和测井线确定的亚马逊扇沉积物的黏土含量,孔隙率和速度。

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摘要

We characterize variations in velocity and porosity as a function of clay content for different depositional units of the Amazon Fan (levees, sand-rich High-Amplitude Reflection Packets, or HARPs and mass-transport deposits, or MTDs) using core and log data. Younger fan sediments, including both HARP and levee turbidites, show an increase in porosity and a decrease in velocity with increased clay content, a relationship indicative of a matrix-supported regime. In contrast, older, more deeply buried overbank turbidites and MTDs, show opposite physical-property trends, which are indicative of a framework-supported regime. The changing behavior of physical properties within various fan units results from a combination of the nature of clay distribution within the sediment caused by different depositional processes, and to changes in sediment structure during early burial and diagenesis. [References: 16]
机译:我们使用岩心和测井数据将亚马逊扇形不同沉积单元(堤坝,富含沙子的高振幅反射数据包,HARP和质量传输沉积物或MTD)的速度和孔隙率变化表征为粘土含量的函数。较年轻的扇形沉积物,包括HARP和堤防浊质,都显示出孔隙度的增加和速度的降低,以及粘土含量的增加,这表明基质支持体系的存在。相比之下,较老的,埋藏更深的岸边浊度和MTD则显示出相反的物性趋势,表明存在框架支持的制度。各种风扇单元内物理特性的变化行为是由于不同沉积过程导致沉积物中粘土分布特性的结合,以及早期埋葬和成岩过程中沉积物结构的变化所致。 [参考:16]

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