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动力学条件的英文

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"动力学条件"怎么读用"动力学条件"造句

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  • dynamic conditions

例句与用法

  • Study on effect of hydrodynamic characteristics on reaeration progress
    动力学条件对复氧过程的影响研究
  • In order to develop and utilize the ocean , its hydrodynaraic conditions have to be studied first . in estuary and coastal seas , tidal flow is a basic hydrodynamic factor , which affects other substance transport remarkably
    潮流,是海岸带、海湾、海峡和潮汐河口地区的主要水动力学条件之一,是这些地区最基本的物质运动,其他物质诸如泥沙、盐分、各类污染物质及热量的输运过程,均伴随着潮流而运动。
  • But the basic theories producing porous metals in high temperature were not yet fully understood , especially the foaming mechanism , foaming thermo - dynamics study on nucleation , growth , movement and disappearance of gas pore were rarely researched
    但是对于发泡过程基础理论研究还不够全面,特别是气孔的发泡机制即气孔在基体金属内随外界条件变化而发生的形核、生长、运动和消亡等热、动力学条件的研究很少。
  • The unknown source strength of cavitation is always arranged on the propeller blade surface in the solving process , but the integration is carried out along the cavity surface of last iterative step when the strength of cavitation dipole is determined according to dynamic condition
    求解过程中待求的空泡源强始终布置在桨叶表面上,而在根据动力学条件求解每一步的空泡面元偶极子强度时,积分是沿着上一步迭代确定的空泡表面进行的。
  • The paper discusses dynamical conditions of the supercritical ore - forming fluid system based on study of regional geological background and analyses of physiochemical conditions of ore - forming process and puts forth the ore - forming mechanism : upper mantle uplift - mingling of meteoric water and magmatic hydrothermal fluid separated from acidic magma under tensile or transitional tensile environment - water / rock reaction - transportation - chemical coupling ore precipitation
    在分析超临界成矿流体系统形成的区域地质背景和研究成矿物理化学条件的基础上,探讨了超临界成矿流体系统形成的动力学条件,提出该系统的成矿机理:与燕山晚期酸性火山侵入岩浆有关的金铜矿床是在上地慢隆起、张性或向张性过渡背景下形成的,酸性岩浆经熔体流体分离作用形成的岩浆热液与大气降水混合,经水岩作用等复杂的输运和化学反应耦合过程的动力学产物。
  • On the basis of kinetics ' basic principle of well drilling shaker , the kinetic condition of solid phased particles in well drilling liquid , under the status of un submersion , doing four movements as backward sliding , tossing , keeping motionless and forward sliding relative to the surface of vibrating sieve has been analyzed
    摘要根据钻井筛动力学的基本原理,分析了钻井液中固相颗粒在非淹没状态下相对于振动筛面作后滑、抛掷、静止和前滑4种运动状态的动力学条件
  • The properties of cn thin films such as their morphology , component , crystal structure and the bonding structure and the relation between those properties and the gas - phase reaction parameters were discussed , showing that the deposition of p - c3n4 thin film is the compete result of various reaction processes in the dynamics balance conditions ; the process of cn films depo sition is diagnosed in situ through the optical emission spectra technique , , the effects of experimental parameters on the concentration of the precursors and the gas - phase reactions in the plasma have been obtained ; the main reaction precursors for film deposition identified ; the relation between the characteristics of cn thin films and the reaction process in the plasma is analyzed . the cn thin films deposition under different substrate temperatures in high pressure pe - pld shows that the si atom of the substrate has participated the cn films growth process , based on this the growth mode of cn thin films on the si substrate is proposed . the further experiment of cn thin films deposition on si substrate scratched by diamond as well as covered with fe catalyzer has been attempted , which indicates that changing the dynamics conditions of the surface reaction can alter the growth characteristic of the cn thin films and can enhance obviously the films growth rate
    采用pld技术进行了碳氮化合物薄膜沉积,得到了含氮量为21at的cn薄膜;研究了衬底温度和反应气体压强对薄膜结构特性的影响,给出了cn薄膜中n含量较小、 sp ~ 3键合结构成分较少和薄膜中仅含有局域cn晶体的原因;引入脉冲辉光放电等离子体增强pld的气相反应,给出了提高薄膜晶态sp ~ 3键合结构成分和薄膜的含n量可行性途径;应用pe - cvd技术以ch _ 4 + n _ 2为反应气体并引入辅助气体h _ 2 ,得到了含n量为56at的晶态cn薄膜;探讨了cn薄膜形貌、成分、晶体结构、价键状态等特性及其与气体压强和放电电流的关系,证明了- c _ 3n _ 4薄膜沉积为满足动力学平衡条件的各种反应过程的竞争结果;采用光学发射谱技术对cn薄膜生长过程进行了实时诊断,得到了实验参量对等离子体中活性粒子相对浓度和气相反应过程的影响规律,给出了cn薄膜沉积的主要反应前驱物,揭示了cn薄膜特性和等离子体内反应过程之间的联系;采用高气压pe - pld技术研究了不同衬底温度条件下cn化合物薄膜的结构特性,揭示了si原子对薄膜生长过程的影响,给出了si基表面碳氮薄膜的生长模式;在金刚石研磨和催化剂fe处理的si衬底上进行cn薄膜沉积,证明了通过控制材料表面动力学条件可以改变碳氮薄膜结构特性,并可显著提高晶态碳氮材料的生长速率。
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