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南海东北部深海盆末次冰盛期以来陆源碎屑粒度特征及影响因素 被引量:3
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作者 王雪松 陈忠 +3 位作者 许安涛 田雨杭 曹立 张斌 《热带海洋学报》 CAS CSCD 北大核心 2022年第1期158-170,共13页
南海东北部深海盆底流演变受多种因素控制,但目前对末次冰盛期以来底流的敏感指标、演变过程及其控制因素还缺乏深入认识。本文选取南海东北部深水区16ZBS11岩心开展陆源碎屑粒度测试和年龄测定,通过粒级-标准偏差法提取环境敏感因子,... 南海东北部深海盆底流演变受多种因素控制,但目前对末次冰盛期以来底流的敏感指标、演变过程及其控制因素还缺乏深入认识。本文选取南海东北部深水区16ZBS11岩心开展陆源碎屑粒度测试和年龄测定,通过粒级-标准偏差法提取环境敏感因子,并计算底流强度及搬运能力。研究结果表明,研究区陆源碎屑主要由粉砂和粘土组成,砂组分仅在部分层位出现。南海东北部深海沉积环境经历了3个演化阶段,第Ⅰ阶段为22.39~16.02ka BP,第Ⅱ阶段为16.02~9.58ka BP,第Ⅲ阶段为9.58ka BP至今,各阶段粘土和粉砂组分均呈反相演变过程。海平面变化是深海沉积和海洋过程的重要影响因素,末次冰盛期以来南海东北部深海盆底流强度和搬运能力逐渐减弱并呈同步变化,16ka BP、11.5ka BP后南海分别与印度洋、台湾海峡连通,影响了南海北部的海洋过程。特别是9.58ka BP以来南海北部海洋混合方式和强度的改变,深刻影响着深海陆源碎屑的输运及沉积演化。本文研究结果为深入认识南海北部底流活动演变和南海深海过程提供了新证据。 展开更多
关键词 陆源碎屑 深海盆 粒级-标准偏差 底流强度 南海东北部
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Depinning Dynamics of Fluid Monolayer on a Quenched Substrate
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作者 曹义刚 刘嘉 付根义 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第11期893-896,共4页
Langevin simulations are preformed on the depinning dynamics of fluid monolayer on a quenched substrate. With increase in the strength of the substrate, we find for the first time a crossover from elastic crystal to s... Langevin simulations are preformed on the depinning dynamics of fluid monolayer on a quenched substrate. With increase in the strength of the substrate, we find for the first time a crossover from elastic crystal to smectic flows as well as a crossover from smectic to plastic flows above the depinning. A power-law scaling relationship can be derived between the drift velocity and the driving force for both the elastic crystal and smectic flows, but fails to be obtained for the plastic flow. The power-law exponents are found to be no larger than 1 for the elastic crystal flow and larger than 1 for the smeetic flow. The critical driving force and the averaged intensity of Bragg peaks remain invariant basically in the regime of smectic flow. A sudden increase in the critical driving force is observed within the crossover from the smeetic to plastic flows, and the averaged intensity of Bragg peaks shows sudden decreases within the crossovers both from the elastic crystal to smectic flows and from the smectic to plastic flows. The results are helpful for understanding the slip dynamics of fluids on a molecular level. 展开更多
关键词 FLUID elastic crystal flow smectic flow plastic flow
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