何涛, 李相怡, 翁永基. 塔里木地区土壤理化参数的相关性和重要性分析[J]. 油气储运, 1994, 13(5): 35-39.
引用本文: 何涛, 李相怡, 翁永基. 塔里木地区土壤理化参数的相关性和重要性分析[J]. 油气储运, 1994, 13(5): 35-39.
He Tao, Li Xiangyi, Wong Yongji. An Analysis on the Coherency and Importance of the Physical and Chemical Parameters of the Soils in Tarim Region[J]. Oil & Gas Storage and Transportation, 1994, 13(5): 35-39.
Citation: He Tao, Li Xiangyi, Wong Yongji. An Analysis on the Coherency and Importance of the Physical and Chemical Parameters of the Soils in Tarim Region[J]. Oil & Gas Storage and Transportation, 1994, 13(5): 35-39.

塔里木地区土壤理化参数的相关性和重要性分析

An Analysis on the Coherency and Importance of the Physical and Chemical Parameters of the Soils in Tarim Region

  • 摘要: 随着西部油气资源的开发,大量金属设施将埋在荒漠和盐渍土中,腐蚀与腐蚀控制问题已经提到议事日程上。为此在塔北5个油区及2条长输管道沿线近2万km2的地区进行了一次全面的、综合性的土壤环境腐蚀性调查,选取103个土壤调查点进行了测试,获得大量数据。土壤理化性质的测试分为室内和野外两部分进行,并采用主分量分析法(PCA),对测量数据中重要的24种理化参数变量之间的关系进行了相关性及重要性分析,分析结果表明最重要的5项参数是:①现场pH值,它和多种指标关联,起到与内地潮湿土壤中电阻率类似的综合作用,在野外及室内外混合参数的重要性排列(简称重要性排列)中,分别居于第二和第一;②土壤差异性,可较好地衡量土壤的均质性差异,在重要性排列中分别为第三和第二;③碳酸盐,它与Cu的平衡电位有一定关联,并和“酸碱缓蚀性”包含的信息接近,在重要性排列中位于第二和第三;④土壤矿化度,它与浸出液电导属于同一类指标,是土壤腐蚀性的重要因素;⑤硫化物指标,它与土壤中其它参数很少相关,性质独特。以上五种参数反映了土壤的基本特征,为金属设施的防腐提供了参考数据。

     

    Abstract: With the exploitation of oil and gas fields in western China, more and more metallic facilities will be buried in desert and salinized soils, corrosion and corrosion control, therefore, have been placed on the agenda. So, a comprehensive investigation on soil corrosivity was made in five oil zones in northern Tarim a great deal of data obtained. The physical and chemical properties of soils are tested both at laboratory and field and the coherency and importance analysis for the 24 important parameters in the measured data is made using PCA method. The analysis result shows the following 5 parameters are the most important: ①Field pH value, being related to meny other parameters, having the comprehensive function similar to that of the resistivity of the inland wet soil, ranking second and first in the importance list of parameters from field and laboratory respectively; ②Soil heterogeneity, ranking third and second in the importance list repectively; ③Carbonate, being related to Cu equilibrium potential, having the formation similar to "inhibition of acid-base corrosion", and ranking second and third in the importance list; ④Soil mineralization, the same kind of index with the electric conductance of leachate, an important factor in soil corrosivity; ⑤The index of sulfide, a unique property having little relation with other soil parameters. These five parameters can reflect the basic soil properties, being the reference data for the corrosion control of metallic facilities.

     

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