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阴极保护电位的英文

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"阴极保护电位"怎么读用"阴极保护电位"造句

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  • cathodic protection potential

例句与用法

  • Cathodic protection potential
    阴极保护电位
  • The effect of soil resistivity on cathodic protection potential distribution outside of tank bottom
    土壤电阻率对罐底外侧阴极保护电位分布的影响
  • Finite element method for an offshore platform with complex nodes with a cathodic protection system
    海洋平台复杂节点阴极保护电位分布的有限元法计算
  • A mathematical model was established for the cathodic protection potential distribution outside of tank bottom , in which the inhomogeneity of medium was taken into account
    摘要建立了罐底外侧阴极保护电位分布的数学模型,模型中考虑了介质的不均匀性。
  • The contribution of anodic electric field to cathodic protection potential distribution of a tank bottom for different depths of anode and different horizontal distances between anode and tank is studied through calculating examples
    摘要通过计算实例研究了在不同的阳极埋深和距罐体水平距离下阳极电场对罐底板外侧阴极保护电位分布的贡献。
  • The optimal cp potential shifted to negative direction in seamud containing active srb , - 1030 mv ( vs . saturated cu / cuso4 electrode , cse ) or lower potential was needed . accordingly , the cp current density was about 11 ma / m2
    在srb存在下,最佳阴极保护电位移向更负的值, - 1030mv (相对铜/硫酸铜电极, cse )甚至更低的电位是需要的。在- 1030mvcse保护电位下,保护电流密度约为11ma / m2 。
  • Microbiologically influenced corrosion ( mic ) has been given severe attention in marine environment concerned of all kinds of structure constructions , such as pipeline , platform for petroleum , etc . in the paper , sulfate - reducing bacteria ( srb ) influenced corrosion was studied in seawater and seamud environments , concerned of stainless steel and low alloyed steels , respectively
    随着人们对海洋的广泛开发和利用,海洋环境下金属构筑物的微生物腐蚀已引起了人们广泛的关注。本文研究了海水和海泥环境中硫酸盐还原菌( srb )影响的海洋用钢的微生物腐蚀行为,探讨了srb腐蚀的作用机制,并研究了海泥环境中srb对阴极保护电位的影响。
  • Based on some discussions on the mathematic model set up for the cathodic protection potential field , a two - dimensional boundary element method ( bem ) is developed , and by using which , a study on the shielding effect resulted from some typical inner structures such as the reinforcing elements and the partition walls with man holes on distribution of potential and current density in the cathodic protection is performed . the investigated parameters which affect the shielding effect in the calculating model include : the height and thickness of the reinforcing elements , the distance between the anode and the reinforcing elements , and the diameter of man hole on the partition walls , and so on
    本文在讨论了阴极保护电位场问题的数学模型的基础上,以二维边界元法对阴极保护问题中的电位及电流密度分布进行了模拟计算,重点对船舶压载舱中的典型结构如加强筋、人孔等在阴极保护中所产生的屏蔽效应进行了分析和研究,通过对不同高度、厚度的挡板及不同孔径的带孔板所产生的屏蔽效应进行模拟计算,首次得到了一些对实际工程设计具有重要参考意义的见解。
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