基于单因素水槽模拟实验的湖相细粒浊流沉积动力学机制初探【水槽沉积模拟实验专辑】
- 收稿日期:
2023-10-30
- 网络出版日期:
2024-01-16
摘要: 【目的】为探究浊流作用下细粒沉积物分选运动规律与沉积特征,并分析其搬运距离及沉积物空间展布受控因素。【方法】基于环形水槽模拟实验,分别通过控制流体初始流速、沉积物浓度、砂泥比三个条件,模拟并分析浊流携带细粒沉积物搬运沉积过程,并初探了其沉积动力学机制。【结果】模拟结果表明:1)浊流搬运下的细粒沉积物在流动过程中会出现“水下水跃”、“双流分割”、“上浮作用”、“头部抬升”、“新头部”等实验现象;2)流体搬运过程中,其细粒沉积物移动速度及搬运距离受流体与环境流体浓度差的影响;3)初始流速、水下水跃、上浮作用等因素控制着流体流速、细粒沉积物搬运距离及空间展布;4)“新头部”现象使得流体携带的砂体变得不连续呈孤立型或分散型。【结论】根据模拟过程中出现的“新头部”现象推测分散型砂体产生的原因,对分散型砂体的形成与展布规律研究具有一定的指导意义。
Preliminary Study on the Dynamic Mechanism of Lacustrine Fine-grained Turbidity Deposits Based on Single Factor Flume Simulation Experiment
- Received Date:
2023-10-30
- Available Online:
2024-01-16
Abstract: [Objective] To investigate the sorting movement and sedimentary characteristics of fine-grained sediments under the action of turbidity currents, and analyze the controlled factors of their transport distance and sediments spatial distribution. [Methods] Based on circular flume simulation experiment, the transport and deposition process of fine-grained sediments carried by turbidity currents were simulated and analyzed by controlling three conditions: initial fluid velocity, sediment concentration, and sand mud ratio, and the sedimentary dynamic mechanism was explored. [Results] The simulation results indicate that: (1) Fine-grained sediments transported by turbidity currents will experience experimental phenomena such as “water jump”, “double flow segmentation”, “lofting”, “head lifting”, and “new head” during the flow process. (2) During fluid transportation, the movement speed and distance of fine-grained sediments are influenced by the concentration difference between the fluid and the environmental fluid. (3) Factors such as initial flow velocity, water jump, and lofting control fluid flow velocity, fine-grained sediments transport distance, and spatial distribution. (4) The “new head” phenomenon causes the sand bodies carried by the fluid to become discontinuous, isolated or dispersed. [Conclusions] According to the “new head” phenomenon in the simulation process, the causes of dispersed sand bodies are speculated, which has certain guiding significance for the study of the formation and distribution of dispersed sand bodies.
吕奇奇, 王林, 罗顺社, 刘江艳, 闫红果, 孙学虎, 张蕾. 基于单因素水槽模拟实验的湖相细粒浊流沉积动力学机制初探【水槽沉积模拟实验专辑】[J]. 沉积学报. doi: 10.14027/j.issn.1000-0550.2023.143
Preliminary Study on the Dynamic Mechanism of Lacustrine Fine-grained Turbidity Deposits Based on Single Factor Flume Simulation Experiment[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2023.143
Citation: |
Preliminary Study on the Dynamic Mechanism of Lacustrine Fine-grained Turbidity Deposits Based on Single Factor Flume Simulation Experiment[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2023.143
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