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首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Response of unconfined turbidity current to deep-water fold and thrust belt topography: Orthogonal incidence on solitary and segmented folds
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Response of unconfined turbidity current to deep-water fold and thrust belt topography: Orthogonal incidence on solitary and segmented folds

机译:无束浊度电流对深水折叠和推力皮带形貌的响应:孤独和分段折叠上的正交发动

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摘要

Sea-floor topography of deep-water folds is widely considered to have a major impact on turbidity currents and their depositional systems, but understanding the flow response to such features was limited mainly to conceptual notions inspired by small-scale laboratory experiments. High-resolution three-dimensional numerical experiments can compensate for the lack of natural-scale flow observations. The present study combines numerical modelling of thrusts with fault-propagation folds by Trishear3D software with computational fluid dynamics simulations of a natural-scale unconfined turbidity current by MassFlow-3D (TM) software. The study reveals the hydraulic and depositional responses of a turbidity current (ca 50 m thick) to typical topographic features that it might encounter in an orthogonal incidence on a sea-floor deep-water fold and thrust belt. The supercritical current (ca 10 m sec(-1)) decelerated and thickened due to the hydraulic jump on the fold backlimb counter-slope, where a reverse overflow formed through current self-reflection and a reverse underflow was issued by backward squeezing of a dense near-bed sediment load. The reverse flows were re-feeding sediment to the parental current, reducing its waning rate and extending its runout. The low-efficiency current, carrying sand and silt, outran a downslope distance of >17 km with only modest deposition (<0 center dot 2 m) beyond the fold. Most of the flow volume diverted sideways along the backlimb to surround the fold and spread further downslope, with some overspill across the fold and another hydraulic jump at the forelimb toe. In the case of a segmented fold, a large part of the flow went downslope through the segment boundary. Preferential deposition (0 center dot 2 to 1 center dot 8 m) occurred on the fold backlimb and directly upslope, and on the forelimb slope in the case of a smaller fold. The spatial patterns of sand entrapment revealed by the study may serve as guidelines for assessing the i
机译:深水折叠的海底地形被广泛认为对浊度电流和它们的沉积系统产生了重大影响,但了解对这些特征的流动响应主要是由小规模实验室实验启发的概念性概念。高分辨率的三维数值实验可以弥补缺乏自然尺度的流动观察。本研究结合了TRISHEAR3D软件对具有TRISHEAR3D软件的故障传播的折叠的数值模拟,其通过MATSFLOW-3D(TM)软件进行自然级非整合浊度电流的计算流体动力学模拟。该研究揭示了浊度电流(Ca 50米厚)的液压和沉积响应,以典型的地形特征在海底深水折叠和推力带上的正交发动中可能遇到。由于折叠背部斜面上的液压跳跃,超临界电流(Ca10 m秒(-1))减速和加厚,其中通过电流自反射形成的反向溢出并通过后向挤压发出反向下溢。近床沉积物负荷。反向流动重新喂养沉积物对父母电流,降低其衰退率并延长其铰链速度。低效率电流,携带沙子和淤泥,越来越多的距离下坡距离> 17 km,仅超沉积(<0中心点2米)超出折叠。大多数流量沿着背部侧向侧向转向围绕折叠并进一步铺展下坡,横跨折叠的溢出,另一个液压跳跃在前肢脚趾上。在分段折叠的情况下,通过区段边界将大部分流动倒置。在折叠背部和直接上坡上发生优先沉积(0中心点2至1中心点8米),在较小折叠的情况下,在前肢斜率上。该研究揭示的砂夹带的空间模式可用作评估I的指导方针

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