中国农业气象 ›› 2026, Vol. 47 ›› Issue (7): 1117-1132.doi: 10.3969/j.issn.1000-6362.2026.007.010

• 农业生物气象栏目 • 上一篇    下一篇

基于气候适宜度改进新疆棉花生育期预报模型

孙帅,黄健,王小军,侯慧杰,胡莉婷,郭燕云,王雪姣,王森,彭冬梅   

  1. 1. 中国气象局乌鲁木齐沙漠气象研究所,乌鲁木齐 830002;2. 中国农业大学资源与环境学院,北京 100193;3. 乌兰乌苏生态与农业气象新疆野外科学观测研究站,石河子 832000;4. 新疆农业气象防灾减灾工程技术研究中心,乌鲁木齐 830002;5. 河南省气象科学研究所/中国气象局·河南省农业气象保障与应用技术重点开放实验室,郑州 450003;6. 新疆维吾尔自治区农业气象台,乌鲁木齐 830002
  • 收稿日期:2025-05-27 出版日期:2026-07-22 发布日期:2026-07-21
  • 作者简介:孙帅,E-mail:1987509853@qq.com
  • 基金资助:
    新疆人才发展基金科研创新平台人才团队支持计划项目(20240325);新疆气象科技创新发展基金项目(ZD202105);国家自然科学基金项目(42305208);新疆维吾尔自治区“三农”骨干人才项目(2024SNGGNT091;2022SNGGGCC014);新疆维吾尔自治区区重点研发项目(2024B02004-3-1);中国气象科学研究院科技发展基金项目(2021KJ034)

Improvement of Prediction Model of Cotton Growth Stages in Xinjiang Based on Climatic Suitability

SUN Shuai, HUANG Jian, WANG Xiao-jun, HOU Hui-jie, HU Li-ting, GUO Yan-yun, WANG Xue-jiao, WANG Sen, PENG Dong-mei   

  1. 1. Institute of Desert Meteorology, China Meteorological Administration, Urumqi 830002, China; 2. College of Resources and Environmental Sciences, China Agricultural University, Beijing 100193; 3. Wulanwusu Ecology and Agrometeorology Observation and Research Station of Xinjiang, Shihezi 832000; 4. Xinjiang Agrometeorological Disaster Prevention and Reduction Engineering Technology Research Center, Urumqi 830002; 5. Henan Institute of Meteorological Science/CMA·Henan Agrometeorological Support and Applied Technique Key Laboratory, Zhengzhou 450003; 6. Xinjiang Agrometeorological Observatory, Urumqi 830002
  • Received:2025-05-27 Online:2026-07-22 Published:2026-07-21

摘要:

利用2000−2023年新疆不同棉区22个农业气象观测站棉花生育期资料与逐日气象数据,结合各生育期温度指标,引入日气温变化与地膜覆盖增温效应,对传统气候适宜度进行改进构建适用于新疆不同棉区的棉花生育期预报模型。采用平均绝对误差(MAE)、均方根误差(RMSE)和归一化均方根误差(NRMSE)评估改进后的模型,旨在解决传统气候适宜度未考虑日气温变化与地膜覆盖增温效应,导致棉花生育期模拟偏差较大的问题,以期进一步提高新疆棉花生育期模拟准确性。结果表明:(12000−2023新疆棉区棉花播种出苗期均呈提前趋势,其中北疆棉区提前速率分别为2.16d·10a−11.44d·10a−1,南疆棉区分别为0.47d·10a−10.96d·10a−1。吐絮日期均呈推迟趋势,北疆南疆棉区推迟速率分别为1.76d·10a−10.36d·10a−1。北疆棉花现蕾开花期呈提前趋势,南疆棉花呈推迟趋势。22000−2023北疆棉区棉花主要生育期(播种出苗、出苗现蕾、现蕾开花、开花吐絮)以及播种−吐絮均呈显著延长趋势(P<0.05)。南疆棉区棉花仅出苗现蕾(P<0.01)和播种吐絮呈延长趋势,其他生育期呈不显著缩短。(3)基于改进前的气候适宜度模型,2000−2020棉花各生育期MAE2.0~24.6dRMSE2.7~30.1dNRMSE15.7%~32.3%。引入日气温变化与地膜增温效应后,模型模拟效果显著提升,MAE降至1.9~9.6dRMSE降至2.6~11.8dNRMSE6.4%~23.0%。(4)相较于改进前的气候适宜度模型,改进后的模型MAERMSE分别降低4.2%79.3%3.2%82.2%。开花−吐絮与播种−吐絮的准确性均处于优秀水平(NRMSE10.0%),其他生育期处于良好水平(10.0%<NRMSE20.0%)。改进后的气候适宜度模型能提升新疆棉区棉花各生育期的模拟精度和稳定性,具有良好的区域适应性和业务化应用前景。

关键词: 棉花, 生育期, 气候适宜度, 地膜覆盖, 日气温变化

Abstract:

This study used the different cotton growth date and meteorological data from 22 agricultural meteorological stations in different cotton regions of Xinjiang from 2000 to 2023. The daily variation of temperature and the warming effect of plastic mulch had been introduced to improve the conventional climatic suitability method by incorporating indicators of temperature development at different growth stages of cotton. A prediction model of cotton growth stages applicable to different cotton regions of Xinjiang has been constructed. The mean absolute error (MAE), root mean square error (RMSE) and normalized root mean square error (NRMSE) were used to evaluate the improved model. The aim was to address the large simulation bias in conventional climatic suitability method, which resulted from neglecting the daily variation of temperature and the warming effect of plastic mulching, and thereby to improve the accuracy of cotton growth stage prediction in Xinjiang. The results showed that: (1) from 2000 to 2023, the sowing date and emergence date of cotton in Xinjiang cotton region showed advanced trends, which tendency rates were −2.16d·10y−1 and −1.44d·10y−1 in northern Xinjiang, and −0.47d·10y−1 and −0.96d·10y−1 in southern Xinjiang, respectively. However, the boll opening date showed a delayed trend with tendency rates of 1.76d·10y−1 and 0.36d·10y−1 in northern Xinjiang and southern Xinjiang, respectively. Budding and flowering date were advanced in northern Xinjiang, but delayed in southern Xinjiang. (2) From 2000 to 2023, in northern Xinjiang the main growth stages (sowing to emergence, emergence to squaring, squaring to anthesis, anthesis to boll opening) as well as the overall sowing to boll opening were prolonged (P<0.05). In southern Xinjiang, only emergence to squaring (P<0.01) and sowing to boll opening were extended, while other growth stages showed insignificant shortening trends (P>0.05). (3) From 2000 to 2020, based on the unimproved climatic suitability model, the MAE, RMSE and NRMSE of cotton at different growth stages from 2000 to 2020 were 2.0−24.6d, 2.7−30.1d and 15.7%−32.3%,respectively. After the introduction of the daily variation of temperature and the warming effect of plastic film mulching, the improved model significantly reduced errors to 1.9−9.6d (MAE), 2.6−11.8d (RMSE) and 6.4%−23.0% (NRMSE). (4) From 2021 to 2023, compared with the unimproved climatic suitability model, the improved MAE and RMSE of cotton growth stage were reduced by 4.2%−79.3% and 3.2%−82.2%, respectively. The accuracy of anthesis to boll opening and sowing to boll opening reached an excellent level (NRMSE≤10.0%), while other growth stages were at a good level (10.0 %<NRMSE≤20.0%). These findings demonstrate that the improved climatic suitability model can improve the simulation accuracy and stability of cotton growth stages in Xinjiang, with good regional adaptability and practical application prospects. 

Key words: Cotton, Growth stage, Climatic suitability, Plastic mulching, Daily variation of temperature