首页> 外文会议>Geoscience and Remote Sensing Symposium, 2008 IEEE International-IGARSS 2008 >Drought Monitoring in Northenr China Plain Combing RS and GIS Technology
【24h】

Drought Monitoring in Northenr China Plain Combing RS and GIS Technology

机译:结合RS和GIS技术的华北平原干旱监测

获取原文

摘要

Drought in sprint is one of the natural disasters that threatens our agriculture development and causes series environment, social and economical consequences. Remote sensing technology becomes possible to rapidly monitor soil moisture in regional scale by combining remote sensing and Geophysical Information Systems technology. In this paper, a thermal inertia map was obtained from MODIS 1B data on April 16, 2004 using thermal inertia model in Northern China Plain covering Latitude from 37?°N to 39.5?°N and Longitude from 115?°E to 117.5?°E. A soil moisture map was obtained based on the relationship between thermal inertia and soil moisture. And a distributive map of drought was obtained by dense slicing and some analyses based on the relationship between ranks of drought and soil moisture were performed. The drought map shows that most of the studied area was in a normal condition except some small part of the northern and western eastern was in a slightly drought. The actual drought information obtained from the official Website of Beijing Meteorological Bureau indicates that it was in a normal condition of soil moisture in Northern China Plain in the first ten days of April. The result derived from MODIS data using thermal inertia model is in consistent with the actual situation. It indicates that it is an effective way to monitor regional drought condition by means of deriving soil moisture using MODIS data.
机译:冲刺干旱是威胁我们农业发展并造成一系列环境,社会和经济后果的自然灾害之一。通过将遥感技术与地球物理信息系统技术相结合,遥感技术可以在区域范围内快速监测土壤湿度。本文利用2004年4月16日的MODIS 1B数据,使用华北平原的热惯性模型获得了一个热惯性图,该模型涵盖了纬度从37?N到39.5?N,经度从115?E到117.5?°。 E.根据热惯性和土壤水分之间的关​​系,获得了土壤水分图。通过密集切片得到干旱的分布图,并根据干旱等级与土壤水分之间的关​​系进行了一些分析。干旱图显示,除北部和西部东部的一小部分处于轻度干旱外,大部分研究区域都处于正常状态。从北京气象局官方网站获得的实际干旱信息表明,4月的前十天华北平原处于正常的土壤湿度状态。使用热惯性模型从MODIS数据中得出的结果与实际情况相吻合。这表明利用MODIS数据推算土壤水分是监测区域干旱状况的有效方法。

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