李长江,麻土华.化探数据处理的新技术[J].地质找矿论丛,1997,(4):57-64
化探数据处理的新技术
A NEW TECHNIQUE FOR EXPLORATION GEOCHEMICAL DATA PROCESSING
投稿时间:1997-09-11  
DOI:10.6053/j.issn.1001-1412.1997.4. 007
中文关键词:  地球化学填图  空间点数据处理  NASSD  超大型矿床
英文关键词:geochemical mapping  spatial point data processing  NASSD  superlarge de-posits
基金项目:
作者单位
李长江 浙江省地质矿产研究所, 杭州, 310007 
麻土华 浙江省地质矿产研究所, 杭州, 310007 
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中文摘要:
      本文论述了一种新的空间点数据处理系统(NASSD)在化探数据处理中的应用效果。以NASSD处理平均采样密度为每15000km2一个,样品总数为529个的泛滥平原沉积物数据,制作的中国铜和银地球化学图,可以较清晰地指示出中国已知大型、超大型铜和银矿床的分布。以传统的数据处理方法无论是处理上述的极低密度采样数据还是每1km2~50km2一个的区域水系沉积物测量数据,在制作(以相同含量间隔表示)的全国地球化学图上对大型、超大型矿床都还缺乏良好的显示。因此,在对大型、超大型矿床进行战略性探查方面,将NASSD技术与极低密度地球化学填图相结合,可能是一条高效率、低成本的可行途径.NASSD可与各种GIS相连接。在“国际地球化学填图”项目中应用NASSD,或许可以有效地促进制作全球地球化学图的进程,并提高地球化学图在环境研究和全球超大型矿床预测方面的实用价值。
英文摘要:
      The paper expounds the results of application of a new spatial pont data processing technique (NASSD-Nonlinear analysis system for spatial data) to exploration geochemical data processing, In Chinese Copper and Silver geochemical maps NASSD is applied to the data processing of Cu and Ag contents from 529 flood-plain sediment samples nearly cvering the whole land surface of China with average sampling density 1 sample per 15000km2. Over 80% known large and superlarge Cu and Ag deposits can be clearly indicated. However, no matter when other traditional data processing methods are applied, either to the above-mentioned data from average sampling density 1 sample per 15000km2 or to the RGNR stream sediment survey data from samplingdensity 1 sample per 1km2-50km2, the geochemical maps (in the same isopleth as the geochemical map generated from NASSD) have poor information about the distribution of the large and superlarge deposits. There fore, in strategic exploring for large and superlarge deposits, it may be a feasible tool with high efficiency and low cost to combine NASSD with the wide-spaced geo-chemical mapping. NASSD can be combined in various GIS. If NASSD technique has application in the lnternational Geochemical Mapping Project, it is possible to bring about an advance in the preparation of a World Geochemical Atlas and increase the usable values 0f a global geochemical maps in environmental investigations and the global prediction of superlarge deposits.
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