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生态学杂志 ›› 2026, Vol. 45 ›› Issue (3): 760-766.doi: 10.13292/j.1000-4890.202603.009

• 茶专栏 • 上一篇    下一篇

基于多源数据的茶树霜冻害精准预报

刘瑞娜1*,余卫国2,孙瑞1,王晓东1,孙秀邦3,曹雯1,刘洪民4   

  1. (1安徽省农业气象中心/安徽省农业生态大数据工程实验室, 合肥 230031; 2南京农业大学农学院, 南京 210032; 3宣城市气象局, 安徽宣城 242099; 4六安市气象局, 安徽六安 237008)

  • 出版日期:2026-03-10 发布日期:2026-09-01

Precise forecasting for frost damage of tea trees based on multi-source data.

LIU Ruina1*, YU Weiguo2, SUN Rui1, WANG Xiaodong1, SUN Xiubang3, CAO Wen1, LIU Hongmin4   

  1. (1Anhui Agricultural Meteorological Center/Anhui Engineering Laboratory of Agro-Ecological Big Data, Hefei 230031, China; 2College of Agriculture, Nanjing Agricultural University, Nanjing 210032, China; 3Xuancheng Meteorological Bureau of Anhui Province, Xuancheng 242009, Anhui, China; 4Lu’an Meteorological Bureau of Anhui Province, Lu’an 237008, Anhui, China).

  • Online:2026-03-10 Published:2026-09-01

摘要: 为进一步提高复杂地形条件下茶树霜冻害预报精准度,基于GEE云平台和多时相Sentinel-1和Sentinel-2光学影像数据,利用支持向量机分类器(Support Vector Machine, SVM)提取2023年宣城市10 m分辨率茶树种植空间分布信息。结合数值天气预报产品、宣城市高程数据(DEM)和茶树霜冻害预报等级指标,利用GIS技术和ANUSPLIN插值方法,研发茶树霜冻害精准预报技术,并对2023年3月13日宣城市一次霜冻害过程进行预报。结果表明:本研究提取的2023年宣城市茶园面积为28012 hm2,其中81%的茶园分布于海拔100~500 m范围内;与安徽省统计局数据相比,相对误差为2.23%;基于全市区域的茶树霜冻害精细化预报时效为10 d,空间分辨率为100 m;基于茶园现状的霜冻害精准预报显示,3月13日全市76.2%茶园遭遇霜冻害,其中轻度、中度和重度受灾面积分别为17564、3586和196 hm2,各占全市茶园面积的62.7%、12.8%和0.7%;提前7、5、3和1 d茶树霜冻害等级预报准确率(等级差≤1)分别为83.4%、83.3%、87%和90%。研究结果实现了市级区域范围的茶树霜冻害精细化定量化预报。


关键词: 遥感, 多源数据, 复杂地形, 种植面积提取, 茶树霜冻害, 精准预报

Abstract: Tea gardens are predominantly located in low mountain and hilly areas with complex terrain and variable weather conditions, making the prediction and early warning of frost damage quite difficult. To enhance the accuracy of frost damage prediction for tea trees under such complex terrain conditions, we utilized the Google Earth Engine (GEE) cloud platform and multi-temporal Sentinel-1, Sentinel-2 optical imagery. An accurate extraction of tea planting information was performed using a Support Vector Machine (SVM) classifier resulting in a spatial distribution map of tea plantation with a 10 m resolution for Xuancheng City, Anhui Province, China, in 2023. Then, a precise prediction method for tea frost damage was developed by integrating numerical weather prediction products, a Digital Elevation Model (DEM) of Xuancheng City and meteorological prediction grade indicators for tea frost damage. Using Geographic Information System (GIS) technology and ANUSPLIN, an analysis of a frost damage event that occurred in Xuancheng City on March 13, 2023 was conducted. The results showed that the tea plantation area in 2023 was 28012 hm2 in Xuancheng City, with 81% distributed at altitudes between 100 and 500 m. Compared with the data from the Anhui Provincial Bureau of Statistics, the relative error was 2.23%. The effectiveness of refined forecast for frost damage was 10 days and the spatial resolution was 100 m. Based on the current planting zone, the precise frost damage forecast revealed that 76.2% of tea gardens in Xuancheng experienced frost damage on March 13, 2023. Among these, the areas affected by mild, moderate, and severe frost damage were 17564, 3586, and 196 hm2, accounting for 62.7%, 12.8%, and 0.7% of the total tea garden area, respectively. The prediction accuracy for tea frost damage (with a grade difference ≤1) reached 83.4%, 83.3%, 87%, and 90% for forecasts made 7, 5, 3, and 1 days in advance, respectively. This study realizes refined and quantitative prediction of tea frost damage at the municipal level, demonstrating high value for practical applications.


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