湖北农业科学 ›› 2021, Vol. 60 ›› Issue (8): 74-80.doi: 10.14088/j.cnki.issn0439-8114.2021.08.014

• 资源·环境 • 上一篇    下一篇

湖北省复杂地形影响下降水精细化分布特征研究

孙朋杰1, 王必强1, 陈正洪1, 张荣2, 简仕略1   

  1. 1.湖北省气象服务中心,武汉 430074;
    2.中国气象局气象干部培训学院湖北分院,武汉 430074
  • 收稿日期:2020-06-28 发布日期:2021-05-07
  • 作者简介:孙朋杰(1985-),男,山东潍坊人,高级工程师,硕士,主要从事应用气象服务工作,(电话)15871438901(电子信箱)pjws@163.com。
  • 基金资助:
    湖北省气象科技发展基金项目(2020Q10); 中国气象局2020年山洪地质灾害防治气象保障工程“湖北省风电场生态系统保护和恢复综合气候背景区划”资助项目

Study on the fine distribution characteristics of falling water affected by complex topography in Hubei province

SUN Peng-jie1, WANG Bi-qiang1, CHEN Zheng-hong1, ZHANG Rong2, JIAN Shi-lue1   

  1. 1. Hubei Provincial Meteorological Service Center,Wuhan 430074,China;
    2. China Meteorological Administration Meteorological Cadre Training Institute Hubei Branch,Wuhan 430074,China
  • Received:2020-06-28 Published:2021-05-07

摘要: 利用湖北省2 005个区域自动气象观测站和82个国家气象站近3年降水数据,结合数字高程资料(DEM)的经度、纬度、高度、坡度、坡向5类地形因子,分8个区域分别建立降水与地形因子的模型。与实际降水的空间插值分布进行对比,趋势较为一致,建立的模型模拟降水准确率为89.5%,所建模型能较好地反映实际降水情况。从模拟的结果来看,湖北省大部分地区年降水量介于600~2 100 mm,其分布趋势由北向南递增,鄂西南、鄂东南、鄂东北3个区域为降水量最多区域。考虑山地、经纬度等影响要素后,模拟的年降水量在山区数值明显较之前仅通过国家气象站降水资料建立的降水量分布数值偏多,其中,在鄂东南区域数值偏多200~300 mm,在鄂西南区域偏多300~400 mm,在鄂东北区域偏多300 mm左右。特别是所建立的湖北省降水分布模型能反映出高海拔地区降水量明显高于周边低海拔区域的特征。

关键词: 降水, 地理信息, 山区, 分布特征

Abstract: Using the rainfall data of 2 005 regional automatic meteorological observation stations and 82 National weather stations in Hubei province for the past three years, combined with the longitude, latitude, height, slope, and slope of the digital elevation data(DEM), precipitation and terrain factor models were established in eight regions. Compared with the spatial interpolation distribution of actual precipitation, the trend was relatively consistent. The accuracy of the model simulated precipitation was 89.5%, and the model can better reflect the actual precipitation situation. From the results of simulation, the annual precipitation in most parts of Hubei province was between 600 and 2 100 mm, and its distribution trend increases from north to south. The three regions of southwestern Hubei, southeastern Hubei, and northeastern Hubei were the regions with the most precipitation. Considering the factors such as mountain area, latitude and longitude, the simulated annual precipitation in the mountain area was obviously larger than that of the precipitation distribution based on the national weather station data only, in which the precipitation in the southeast of Hubei was 200~300 mm larger, more than 300~400 mm in southwest Hubei and about 300 mm in northeast Hubei. In particular, the precipitation distribution model of Hubei province can reflect the characteristics of precipitation in high altitude areas significantly higher than the surrounding low-altitude areas.

Key words: precipitation, geographical information, mountainous areas, distribution characteristics

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