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絮凝过程的英文

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"絮凝过程"怎么读用"絮凝过程"造句

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  • flocculation process

例句与用法

  • So many scholars research the flocculation morphology based on the fractal theory
    于是,很多学者以分形理论为基础,来进行絮凝过程形态学的研究。
  • Along with the science technology developing continuously and especially the computer technology getting perfect and popular , the request for the research and the application in flocculation processes improves
    随着科学技术的不断发展,尤其是计算机技术的完善与普及,对絮凝过程的研究与应用的要求进一步深入。
  • The flocculation has a very important role in water treatment . the perfect degree in flocculation processes directly affect the treatment effect in the following treatment , such as sedimentation and filtration and so on
    在给水处理中,混凝具有极其重要的作用,絮凝过程的完善程度,直接影响着后续处理如沉淀、过滤等工艺单元的处理效果。
  • Because of the influences of the turbidity , ph of raw water , current , temperature and the pollutions of raw water , the process of coagulant dosage is a very complex reaction . to find out the automation of coagulant dosage and reduce the cost of the coagulant , many domestic and international scientific research organizations make research into the theory and mechanism of automation of coagulant dosage , such as the streaming current control method ( scd ) , the emulation experimenting method in spot , mathematics model , flocculation control device ( fcd )
    由于受到原水浊度、 ph值、配水流量、原水温度和其他水质污染的影响,投药絮凝过程是一个非常复杂的反应过程,为实现投药系统的自动化和降低混凝剂耗率,国内外相当多的科研机构和院校在进行投药机理和自动化处理的研究,主要有流动电流仪检测法( scd ) 、现场模拟实验法、数学模型、显示絮凝控制法( fcd法)等自动投药方式的研究和实验。
  • The pullulation of floes is a random process and it has nonlinear character . if the fragmentation of floes is not considered , the routine flocculation process is to form the small group from initial particle and the big group from small groups . finally the biggest group is formed from those big groups
    由于絮凝体的成长是一个随机过程,具有非线性的特征,如果不考虑絮凝体破碎的话,常规的絮凝过程是由初始粒子结成小的集团,小的集团又结成大的集团,然后结成更大的集团,这样一步一步成长为粗大絮凝体。
  • By making some assumptions , collision frequency were presented . then the the flocculation kinetics model was established through population balance equation . comparison of experimental data and modeling results indicate that there are the same trend between the two . so the model can predict floes number and size during flocculation of yellow river ' s loess particles without using empirical parameters . the tem and sem were used to obsever floes in the study of floe structure . the flocculation was divided as flocculi , floc and floe aggregate . the floes structure model was established by assumption that particles position in floe accords with tetrahedron . the fractal dimension of model and experimental floes was found to be coincidentso the model can reflect the structure of flocs formed in flocculation of yellow river ' s loess particles by macromolecule flocculant at a certain extent
    最后,本文还对絮凝动力学和絮体结构进行了研究,在前人研究的基础上,针对高分子絮凝黄河泥沙,对絮凝过程作了一些符合试验条件的假设,建立了颗粒碰撞频率表达式,应用了颗粒数量平衡方程,从而建立了絮凝过程的动力学生长模型,模型计算结果与试验数据对比表明,二者趋势一致,在没有使用经验参数的情况下基本上能够描述黄河泥沙絮凝过程中絮体数量和尺寸分布的变化过程;对絮体结构的研究中,应用扫描电子显微镜和透射电子显微镜对絮体进行了观察,将絮体分为絮粒、絮团和絮网三个不同的生长阶段,通过假设颗粒结合位置符西安建筑科技大学博士学位论文合正四面体,建立了絮体结构模型,计算得到的模型絮体分形维数基本与试验中的实际絮体相符,在一定程度上能够反映高分子絮凝黄河泥沙生成的絮体结构。
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