全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
矿床地质  2012 

利用ASTER提取德兴斑岩铜矿遥感蚀变分带信息

Keywords: 地质学,ASTER,遥感数据,斑岩铜矿,蚀变分带

Full-Text   Cite this paper   Add to My Lib

Abstract:

在遥感光谱分析的基础上,结合德兴斑岩铜矿矿床地质特征,利用ASTER遥感数据提取了德兴斑岩铜矿的遥感蚀变分带信息。德兴斑岩铜矿蚀变分带根据蚀变矿物特征来分析,主要的蚀变矿物为白云母、伊利石、绿泥石、方解石、白云石;根据光谱特征,采用比值、斜率、相关吸收和主成分分析4种提取方法提取各蚀变矿物的信息,并采用叠加法对各蚀变矿物信息进行叠加,从而形成各个蚀变分带的遥感信息。各蚀变分带的遥感信息总体特征比较明显。最后,根据矿床成矿模式对蚀变分带信息进行了分析。

References

[1]  代晶晶,曲晓明,辛洪波. 2010. 基于ASTER遥感数据的西藏多龙矿集区示矿信息的 提取[J]. 地质通报,29(5):752-759.
[2]  耿新霞,杨建民,张玉君,姚佛军. 2008. ASTER数据在浅覆盖区蚀变遥感异常信息提取中的应 用[J]. 地质论评,54(2):184-192.
[3]  吕凤军,郝跃生,王 娟,王会平,石 静,李 斌. 2008. 多光谱蚀变遥感异常提取方法研究 [J]. 遥感信息,4:98-108.
[4]  吕凤军,郝跃生,石 静,王 娟. 2009. ASTER遥感数据蚀变异常提取研究[J]. 地球学 报,30(2):271-276.
[5]  毛景文,张建东,郭春丽. 2010. 斑岩铜矿-浅成低温热液银铅锌-远接触带热液金矿矿床模型: 一个新的矿床模型—以德兴地区为例[J]. 地球科学与环境学报,32(1):1-14.
[6]  毛景文,陈懋弘,袁顺达,郭春丽. 2011. 华南地区钦杭成矿带地质特征和矿床时空分布规律[J].地质学报,85(5):636-658.
[7]  潘小菲,宋玉财,王淑贤,李振清,杨志明,侯增谦. 2009. 德兴铜厂斑岩型铜金矿热液演化过程[J]. 地质学报,83(12):1929-1950.
[8]  王润生,甘甫平,闫柏琨,杨苏明,王青华. 2010. 高光谱矿物填图技术与应用研究[J]. 国土资源遥感,1:1-13.
[9]  王正行. 2008. 量子力学原理[M]. 北京:北京大学出版社.
[10]  徐冠华,田国良,王 超,牛 铮,郝国威,黄 波,刘 震. 1996. 遥感信息科学的进展 和展望[J]. 地理学报,51(5):385-397.
[11]  张玉君,曾朝明,陈 薇. 2003. ETM+(TM)蚀变遥感异常提取方法研究与应用——方法选择和技术流程[J]. 国土资源遥感,2:44-50.
[12]  朱 训,黄崇轲,芮宗瑶,周耀华,朱贤甲,胡淙声,梅占魁. 1983. 德兴斑岩铜矿[M]. 北京:地质出版社.
[13]  Abrams M J, Ashley R P, Brown L C , Rowan L C, Goetz A F H and Kahle A B . 1977. Mapping of hydrothermal alteration in the cuprite mining district, Nevada, using aircraft scanning images for the spectral region 0.46 to 2.36 μm[J]. Geology ,5:713-718.
[14]  Ducart D F, Crósta A P and Filho S C R. 2006. Alteration mineralogy at the Cerr o La Mina epithermal prospect, Patagonia, Argentina: Field mapping, short-wave i nfrared spectroscopy, and ASTER images[J]. Econ. Geol., 101:981-996.
[15]  Hunt G R. 1977. Spectral signature of particular minerals in the visible and inf rared[J]. Geophysics, 42:501-513.
[16]  Hunt G R and Ashley R P. 1979. Spectra of altered rocks in the visible and near-infrared[J]. Econ. Geol., 74:1613-1629.
[17]  Kahle A B, Palluconi F D and Christensen P R. 1997. Thermal emission spectroscop y: Application to the Earth and Mars, in remote geochemical analysis: Elemental and mineralogical compositon[M]. New York: Cambridge University Press. 99-120.
[18]  Kratt C, Calvinb W M, and Coolbaughb M F. 2010. Mineral mapping in the pyramid lake basin: Hydrothermal alteration, chemical precipitates and geothermal energy potential[J]. Remote Sensing of Environment, 114(10):2297-2304.
[19]  Li X H, Zhao J X, McCulloch M T, Zhou G Q and Xing F M. 1997. Geochemical and Sm-Nd isotopic study of neoproterozoic ophiolites from southeastern China: Petroge nesis and tectonic implications[J]. Precambrian Research, 81(1/2):129-144.
[20]  Li Z X, Li X H, Zhou H W and Peter D K. 2002. Grenvillian continental collision in south China: New SHRIMP U-Pb zircon results and implications for the configur ation of Rodinia[J]. Geology, 30(2):163-166.
[21]  更多...
[22]  Mars J C and Rowan L C. 2006. Regional mapping of phyllic-and argillic-altered rocks in the zagros magmatic arc, Iran, using advanced spaceborne thermal emission and reflection radiometer (ASTER)data and logical operator algorithms[J]. Geosphere, 2(3): 161-186.
[23]  Mohammadzadeh A,Tavakoli A and ValadanZoej M. 2006. Road extraction based on fu zzy logic and mathematical morphology from pan-sharpened ikonos images[J]. The Photogrammetric Record, 21(113):44-60.
[24]  Rajendran S, Thirunavukkarasub A, Balamuruganc G and Shankar K. 2011. Discrimina tion of iron ore deposits of granulite terrain of southern Peninsular India using ASTER data[J]. Journal of Asian Earth Sciences, 41(1):99-106.
[25]  Safwat G, Abduwasit G and Timothy K. 2010. Detecting areas of high-potential gold mineralization using ASTER data[J]. Ore Geology Reviews, 38:59-69.
[26]  Vickers R S and Lyon R J. 1967. Infrared Sensing from Spacecraft: A geologic int erpretation, in thermophysics of spacecraft and planetary bodies[M]. New York: Academic Press. 585-607.
[27]  Zhang X F, Pazner M and Duke N. 2007. Lithologic and mineral information extraction for gold exploration using ASTER data in the south Chocolate Mountains(Calif ornia)[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 62:271-282.
[28]  Zhou X M and Zhu Y H. 1993. Late proterozoic collisional orogen and geosuture in southeastern China: Petrological evidence[J]. Chinese Journal of Geochemistry , 12(3):239-251.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133