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内阴极保护
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  “内阴极保护”译为未确定词的双语例句
     Numerical simulation of cathodic protection inside pipes(Ⅰ)—potential distribution inside thin stainless steel pipes under cathodic protection.
     管内阴极保护的数值模拟(Ⅰ)——阴极保护下不锈钢细管内电位分布
短句来源
     Numerical simulation of cathodic protection inside pipes (Ⅱ)-calculating the potential distribution inside large-size pipes by using the finite difference method
     管内阴极保护的数值模拟(Ⅱ)——有限差分法计算大口径管内的电位分布
短句来源
     Internal Cathodic Corrosion Protection Technology for Steel Pipelines
     钢质管道内阴极保护防腐蚀技术
短句来源
     It was proved that the cathodic protection technology is the most effective and practical method for the protection of steel reinforced concrete structures in service.
     这项技术的工程应用进一步说明,在这种已经建成的、还在服役的钢筋混凝土构筑物内,阴极保护技术是目前抑制钢筋锈蚀的最有效和切实可行的方法。
短句来源
     Calculation of potential distribution over cathodically protected inter surface of pipe under flow condition
     流动场管内阴极保护的电位分布计算
短句来源
更多       
  相似匹配句对
     CATHODE PROTECTION
     阴极保护
短句来源
     Application on Cathode Protection
     阴极保护的应用
短句来源
     CURRENT DISTRIBUTION IN A CATHODICALLY PROTECTED CREVICE
     阴极保护下缝隙的电流分布
短句来源
     POTENTIAL DISTRIBUTION INSIDE A CATHODICALLY PROTECTED CREVICE
     阴极保护下缝隙的电位分布
短句来源
     Internal Cathodic Corrosion Protection Technology for Steel Pipelines
     钢质管道阴极保护防腐蚀技术
短句来源
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Based on the polarization curves measured on original potential,a numerical simulation inside stainless steel pipes under cathodic protection after the improvements of the conventional potential distribution calculations of the cathodic protection inside stainless steel pipes was made.The results show that the theoretical value is in good agreement with the measured value,and the numerical simulation can predict distribution capacity change with time.

对传统的管内阴极保护电位分布计算方法进行改进,以原位测得的极化曲线为依据,对阴极保护条件下不锈钢管内电位分布进行数值模拟。结果表明,其理论值与实测值符合较好,而且能够预测分散能力随时间的变化。

The potential distribution of cathodic protection was calculated by using the finite difference method, the result shows that the theoretical value and the measured value are in good agreement.

采用有限差分技术对大口径输水管道管内阴极保护电位分布进行计算,理论值与实测值符合得较好。

Because boundary element method (BEM) is more efficient than either finite difference method (FDM) or finite element method (FEM) developed previously in the field of corrosion. This mthod is applied to calculate potential distribution over the cathodically protected inter surface of pipe under flow condition. A mathematical model for this cathodic protection has been built and the computer program developed. In order to demonstrate the validity of this calculating method based on polarization experiment, a...

Because boundary element method (BEM) is more efficient than either finite difference method (FDM) or finite element method (FEM) developed previously in the field of corrosion. This mthod is applied to calculate potential distribution over the cathodically protected inter surface of pipe under flow condition. A mathematical model for this cathodic protection has been built and the computer program developed. In order to demonstrate the validity of this calculating method based on polarization experiment, a sample experiment which protects the inter surface of piple under flow condition has been carried out. The numerical solutions of both the temporal potential distribution and the time dependent potential distribution resulting from the formation of a calcareous deposit agree with experimental measurements. The results show that the analytical method produced is feasible and efficient.

应用边界元方法计算了管内介质处于流动状态时,受到阴极保护的管道内壁的瞬时电位分布和稳定电位分布,并在实验室内进行了小型的流动场管内阴极保护实验.计算与实测结果较吻合,证实了边界元方法应用于管内阴极保护问题的有效性和准确度.

 
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