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REMOTE SENSING FOR LAND & RESOURCES    2015, Vol. 27 Issue (4) : 195-199     DOI: 10.6046/gtzyyg.2015.04.30
GIS |
Construction of the geological surveying information grid node: A case study in Southwest China
HAO Ming1,2, ZHANG Jianlong2, NIU Ruiqing1, LIANG Hong2
1. National Engineering Research Center for Geographic Information System, Wuhan 430074, China;
2. Chengdu Institute of Geology and Mineral Resources, Chengdu 610081, China
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Abstract  

In order to attain geological data accessing and sharing on different platforms and regions and to establish geological spatial information sharing and application service system, China Geological Survey used the GridGIS technology to build China Geological Survey Information Grid Platform and deployed nearly 10 nodes across the country on the basis of the network superlarge distributed GIS software. Through the effective organization and management of mass data, China Geological Survey realized geological space service and sharing of information resources in different regions in the heterogeneous environment. The construction of the geological surveying information grid node in Southwest China has really achieved very good results. The results achieved by China Geological Survey not only verify the feasibility of grid platform for data sharing but also provide reference for further construction of grid nodes.

Keywords Great Dyke in Zimbabwe      ETM+      ZY-1 02C      remote sensing geological interpretation      geological survey abroad     
:  TP311  
Issue Date: 23 July 2015
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FU Changliang
YANG Qinghua
JIANG Qigang
WANG Mengfei
JIANG Xiao
Cite this article:   
FU Changliang,YANG Qinghua,JIANG Qigang, et al. Construction of the geological surveying information grid node: A case study in Southwest China[J]. REMOTE SENSING FOR LAND & RESOURCES, 2015, 27(4): 195-199.
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https://www.gtzyyg.com/EN/10.6046/gtzyyg.2015.04.30     OR     https://www.gtzyyg.com/EN/Y2015/V27/I4/195

[1] 李超岭, 李丰丹, 罗显刚, 等.国家地质空间信息网格结点计算池构架及其实现[J].国土资源信息化, 2006(5):2-8. Li C L, Li F D, Luo X G, et al.Framework and its realization of grid node compute pool of the national geological spatial information[J].Land and Resources Informatization, 2006(5):2-8.

[2] 吕霞, 刘畅, 耿燕婷, 等.中国地质调查信息网格平台构建和地质图数据服务的实现[J].地质通报, 2011, 30(9):1462-1472. Lyu X, Liu C, Geng Y T, et al.Building of China geological survey information grid platform and realization of geological map data service[J].Geological Bulletin of China, 2011, 30(9):1462-1472.

[3] 李德仁, 眭海刚, 单杰.论地理国情监测的技术支撑[J].武汉大学学报:信息科学版, 2012, 37(5):505-512. Li D R, Sui H G, Shan J.Discussion on key technologies of geographic national conditions monitoring[J].Geomatics and Information Science of Wuhan University, 2012, 37(5):505-512.

[4] 陈玉华, 黄凯锋.利用网格技术实现GIS的资源共享[J].计算机与数字工程, 2007, 35(8):88-90. Chen Y H, Huang K F.Applying grid technology to implement the resource share of GIS[J].Computer and Digital Engineering, 2007, 35(8):88-90.

[5] 杨铁利, 许惠平.网格技术在地理信息服务的应用研究[J].微电子学与计算机, 2006, 23(10):141-143. Yang T L, Xu H P.Study on application of grid technology in geographic information service[J].Microelectronics and Computer, 2006, 23(10):141-143.

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