Formation Mechanism of Subaqueous Distributary Channels in Lacustrine Deltas: Insights from Hyperpycnal Flow Depositional Models
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摘要: 摘要 【意义】陆相湖盆河控三角洲水下分流河道的成因机制长期存在争议,传统河流沉积动力学理论难以合理解释其形成过程与展布规律。本研究基于国内外最新研究进展,在基本概念梳理回顾的基础上,系统梳理了异重流沉积理论对水下三角洲沉积过程与沉积模式的启示,探讨了水下分流河道的成因机制。【进展】异重流源自三角洲前缘河口区,能够搬运陆源沉积物,经过前三角洲和浅湖到达深水沉积环境。目前深水异重流沉积研究已有突破性进展,但针对三角洲-浅湖异重流沉积记录的描述和解释仍较匮乏。异重流三角洲新概念将三角洲河口区与深水重力流沉积过程结合,揭示了异重流水道可作为连接三角洲与深水沉积的重要纽带。现代与古代异重流沉积实例揭示了三角洲前缘-浅湖或浅海沉积环境中可发育异重流水道。异重流可能为三角洲前缘水下分流河道形成提供关键动力。异重流水道的形成机理可能与超临界异重流(密度弗劳德数Frd超过临界值)侵蚀作用密切相关。【结论与展望】陆相湖盆三角洲水下分流河道并不是三角洲平原分流河道在水下自然延伸形成,而是受到了事件性的洪水异重流作用控制,这一认识对经典三角洲沉积模式提出了挑战,更重要的是揭示了洪水期间高密度异重流是控制三角洲沉积的一种关键地质营力。基于异重流动力学机制更新原有的解释模型,可以为陆相湖盆三角洲沉积模式研究提供新的理论框架和思路。未来需要将定量沉积物理模拟与古代沉积记录分析结合,深化三角洲前缘异重流沉积动力学机制研究,为陆相湖盆沉积学提供新的理论支撑。Abstract: Abstract: [Significance] The genetic mechanism of river-dominated subaqueous distributary channels in lacustrine deltas has long been controversial, as traditional fluvial sediment dynamics fail to adequately explain their formation and distribution patterns. Based on recent advances in global research, this study systematically investigates the formation mechanism of subaqueous distributary channels in lacustrine deltas and explores new insights from hyperpycnal flow depositional theory regarding deltaic depositional processes and sandbody distribution patterns. [Progress] Hyperpycnal flows originate from the delta-front river mouth zone, transporting terrigenous sediments through the prodelta and shallow lake into deep-water depositional environments. While significant breakthroughs have been made in deep-water hyperpycnal flow deposition, descriptions and interpretations of hyperpycnal flow deposits in delta-shallow lake systems remain limited. The new concept of hyperpycnal deltas integrates river mouth deposition with gravity-driven processes, revealing that hyperpycnal channels serve as critical links between deltas and deep-water deposits. Modern and ancient hyperpycnal flow deposits demonstrate the development of hyperpycnal channels in delta-front to shallow lake or marine environments, suggesting that hyperpycnal flows could be the key dynamic force behind subaqueous distributary channel formation. The erosional mechanisms of these channels are closely associated with supercritical hyperpycnal flows (density Froude exceed the critical value). [Conclusions and Prospects] Subaqueous distributary channels are likely formed by episodic hyperpycnal flows rather than being mere underwater extensions of delta plain distributaries. The finding challenges classical delta theories and highlights flood-generated high-density hyperpycnal flows as a dominant geological force controlling deltaic depositional process. Revising existing models based on hyperpycnal flow dynamics provides a novel theoretical framework for studying delta-front depositional patterns. Future research should integrate quantitative sediment physical simulations with analyses of ancient delta-front deposits to advance hyperpycnal flow dynamics in deltaic systems, offering new theoretical foundations for lacustrine sedimentology.
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Key words:
- delta /
- subaqueous distributary channel /
- lacustrine basin /
- hyperpycnal flow /
- depositional model
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