...
首页> 外文期刊>Environmental earth sciences >Soil map and 3D virtual tour using a database of soil-forming factors
【24h】

Soil map and 3D virtual tour using a database of soil-forming factors

机译:使用土壤形成因子数据库进行土壤图和3D虚拟漫游

获取原文
获取原文并翻译 | 示例
           

摘要

Soils are non-renewable resources and therefore must be conserved, particularly in protected natural areas. Correct and rational planning of human activities in fragile conservation landscapes should be based on detailed studies of soil-forming factors, such as climate, geology (lithology and surficial deposits), geomorphology (topography, morphology, slope and hydrology), biology (vegetation and human activity) and time and their relationships with the landscape and landforms. This study analyses the geospatial distribution of different soil units in the natural areas of "Las Batuecas-Sierra de Francia" and "Quilamas" and is based on a soil sampling field programme and textural analyses that resulted in soil association maps, dominant soil maps and toposequences that could be extrapolated to natural resource and environmental problems (natural and/or human). In this study, a set of GIS-based digital maps was developed to illustrate the physical attributes of these natural areas. In particular, georeferencing of the various soil-forming factors was used to generate a specific soil map for each natural area and to create a geospatial database, including fact sheets and photographs, of characteristic soil profiles. This soil information was converted into the "kmz" format to geospatially visualise the various soil units in 3D virtual tours using viewers, such as Google Earth, to obtain information regarding the spatial referencing and elevation of the area, interact with the 3D modelling of the tour in Google Earth, overlay the soil map on the orthophoto, activate or deactivate the visible layers, modify the spatial resolution of every point by zooming in or out and obtain the numeric and graphical information for every stop. This soil map can be used in multidisciplinary approaches by adding other thematic layers: lithology, geomorphology, topography, morphology, slope, hydrology, vegetation, et cetera, which would facilitate decision-making by managers and directors of nature areas/parks.
机译:土壤是不可再生的资源,因此必须加以保护,特别是在自然保护区。正确和合理地规划脆弱保护区中的人类活动应基于对土壤形成因素的详细研究,例如气候,地质(岩性和表层沉积),地貌(地形,形态,坡度和水文),生物学(植被和土壤)。人类活动),时间及其与景观和地貌的关系。这项研究分析了“ Las Batuecas-Sierra de Francia”和“ Quilamas”自然区域中不同土壤单元的地理空间分布,并基于土壤采样现场程序和纹理分析得出了土壤关联图,优势土壤图和可能被推论为自然资源和环境问题(自然和/或人类)的后果。在这项研究中,开发了一套基于GIS的数字地图来说明这些自然区域的物理属性。特别是,使用各种土壤形成因子的地理配准来为每个自然区域生成特定的土壤图,并创建地理空间数据库,包括特征性土壤剖面的概况介绍和照片。将该土壤信息转换为“ kmz”格式,以便使用查看器(例如Google Earth)在3D虚拟漫游中对各个土壤单元进行地理空间可视化,以获取有关该区域的空间参考和海拔高度的信息,并与该区域的3D建模进行交互在Google地球中浏览,在正射影像上覆盖土壤图,激活或停用可见层,通过放大或缩小来修改每个点的空间分辨率,并获取每个停靠点的数字和图形信息。通过添加其他主题层(岩性,地貌,地形,形态,坡度,水文,植被等),可以在多学科方法中使用此土壤图,这将有助于自然区域/公园的管理者和主管进行决策。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号