• 极佳的清净分散性,出众的发动沉积物控制有效保持发动机清洁减少磨损

    Excellent detergency and dispersancy outstanding launch sediment control, effectively maintain engine clean, reduce wear.

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  • 远程控制机器粉碎硫化物沉积物然后通过将其吸附地表容器

    Remote-controlled machines smash the sulfide deposits, which are then hoovered up through a riser pipe to a vessel on the surface.

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  • 平面变化控制沉积物供给,从而控制发育期次。

    Lake level fluctuations control the development phase of turbidite fan through controlling sediment supply.

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  • 冲断作用控制沉积物分布扩散型式;

    The thrust faulting controls the distribution, migration and diffusion of sediments.

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  • 大多数元素陆源为主,粘土(颗粒沉积物)控制底质金属含量主要因素

    Elements are mainly terrigenous, clay (or fine muddy matter) is the major factor controlling the concentrations of heavy metals in sediments.

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  • 控制层序发育主要因素包括:湖盆地形基底沉降平面升降沉积物供给等。

    Factors controlling sequence development include topography of lake basin, basement subsidence, lake Lev - el fluctuation and supply of sediments.

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  • 由此说明,环境控制沉积物生物标志物组成主要因素。

    It is concluded that environment controlled the components of biomarker in sediments.

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  • 盆地发育主要控制因素构造升降、平面变化沉积物供应速率的变化。

    Main controlling factors of sequence development in lacustrine basins are tectonic uplift and subsidence, lake-level changes, and changes of sediment supply rates.

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  • 活塞环必须保持自由以便正确地运动维持好的密封活塞环槽内活塞岸上的沉积物必须被控制

    Rings must remain free to function properly and to maintain a good seal. Deposit build up in the ring grooves and on piston lands must therefore be controlled.

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  • 外部冲程控针孔分配非常精细沉积物,外部冲程控制调节注入尺寸

    Needle Valves dispense very precise deposits. An external stroke control adjustment to fine-tune shot sizes.

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  • 优异的清净分散性低温启动性、性能氧化安定性有效控制发动机油泥活塞环沉积物

    Excellent dispersion of clean, low temperature start, and viscosity-temperature properties and oxidation stability, effective control of engine oil sludge and piston deposits.

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  • 沉积物粒度控制沉积物污染物分布主要因素之一

    Grain size is one of the main factors to control the pollutant distribution in sediment.

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  • 外源污染得到控制水质得到改善情况下,滇池沉积物成为内在的金属污染源。

    With the improvement of water quality, metals could be released from sediment to overlying water.

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  • 文中还讨论了海域沉积物氧化还原电位控制机理

    The controlling mechanism of REDOX potential with the sediment was discussed in addition.

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  • 优化设计理论基坑降水地面沉降控制松散沉积物厚度复杂特点进行了讨论。

    The optimal designing theory of deep foundation pit dewatering for controlling land subsidence was discussed in loose sediment with great thickness and complex characteristics.

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  • 构造运动全球海平面变化气候相互作用控制沉积物供给量以及可容空间被充填规模

    The interaction of tectonics, change of global sea level and climate controlled the sediment supply and the scale of filled accommodation.

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  • 黄海大陆架沉积物来自黄河输入,区域性环流模式控制这些沉积物输送过程

    The Yellow Sea continental shelf receives large quantities of sediment from the Yellow River. Regional circulation patterns control the transport of this sediment.

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  • 陆相盆地层序形成主要构造因素控制,也受沉积物供给海平面升降的影响

    The development of continental sequence are mainly controlled by tectonic and climate factors, sediments supply and sea-level change are secondary factors.

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  • 本区A/S变化主要沉积物供给量变化控制

    The decrease of sediment supply is the primary reason for the change of A/S value.

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  • 构造活动主要通过沉积地貌控制控制沉积物分布沉积物本身的特征

    Structure activity controlled the distribution and characteristics of sediments by controlling the palaeogeomorphology of sedimentation.

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  • 气候条件周期性变化引起平面沉积物供给沉积物类型的变化,从而控制湖盆沉积充填和湖平面的变化。

    Cyclical changes in climate conditions could cause the changes of lake level, sediment supply and sedimentation types, then impact the lake basin deposit and the lake level fluctuation.

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  • 由于古地形沉积物控制沿东南西向呈条带状分布

    Controlled by paleotopography and sediment source, sand bodies had a banding distribution along the northeast-southwest direction.

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  • 在综合前人研究成果基础认为作用盆地与造山带耦合的主要动力学机制;冲断作用控制沉积物的分布扩散型式;

    Based on the analysis of the previous studies, the orogenic wedge process is considered to be the main dynamics of the coupling of foreland basins and orogenes.

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  • 在综合前人研究成果基础认为作用盆地与造山带耦合的主要动力学机制;冲断作用控制沉积物的分布扩散型式;

    Based on the analysis of the previous studies, the orogenic wedge process is considered to be the main dynamics of the coupling of foreland basins and orogenes.

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