首页> 外文会议>International Conference on Agro-geoinformatics >Tracking the magnitude of climate change and variability with remote sensing data to improve targeting of climate smart agricultural technologies
【24h】

Tracking the magnitude of climate change and variability with remote sensing data to improve targeting of climate smart agricultural technologies

机译:跟踪气候变化的大小与遥感数据的变化,提高气候智能农业技术的靶向

获取原文

摘要

Quantifying the magnitude and significance of climate change variables over space and time in Africa is challenging due to sparse distribution of weather stations and poor quality of existing data. Time series climate data generated from remote sensing platforms could provide plausible alternative for measuring the trends of climate change in data limiting context. This study utilise time series remote sensing data for rainfall, maximum temperature and minimum temperature to investigate the magnitude and significance of spatial-temporal trends over six countries in West Africa. A modified Mann-Kendall test and Theil-Sen's slope are utilised to test the significance and the magnitude of trends respectively for period between 1981 and 2017. June to September rainfall along the Sahel, Sudan and northern Guinea savanna agro-ecological zones revealed a significant increase (0.1 - 3 mm yr-1) that peaked in August. Extreme temperatures for period between August and October remained stable while significant positive trend (0.005 - 0.07°C yr-1) was observed in rest of months. Areas experiencing significant drying and warming trends are earmarked as priority for targeting appropriate climate smart agricultural technologies. The widespread significant increase of extreme temperatures justifies increased investments in measures to cope with heat stress.
机译:由于气象站稀疏分布和现有数据质量差,量化气候变化变量在非洲空间和时间的幅度和意义是挑战性的。时间序列从遥感平台产生的气候数据可以提供合理的替代方案,用于测量数据限制背景下的气候变化趋势。本研究利用时间序列遥感数据进行降雨,最高温度和最低温度,以研究西非六个国家的空间趋势的幅度和意义。修改的Mann-Kendall测试和Theil-sen的坡度分别用于测试1981年至2017年之间的趋势的重要性和趋势的大小。6月至9月降雨沿着萨赫勒,苏丹和北部犹大农业生态区揭示了重要的增加(0.1 - 3 mm YR -1 )在8月份达到尖峰。 8月至10月期间的极端温度仍然稳定,同时显着正趋势(0.005 - 0.07°C YR -1 )在余下的几个月内观察到。遇到显着的干燥和变暖趋势的地区被指定适当的气候智能农业技术的优先事项。极端气温的广泛增加证明了对应对热应激的措施的增加。

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