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中国农学通报 ›› 2018, Vol. 34 ›› Issue (34): 103-107.doi: 10.11924/j.issn.1000-6850.casb18020092

所属专题: 园艺

• 资源 环境 生态 土壤 气象 • 上一篇    下一篇

红寺堡酿酒葡萄根系层冬季土壤温度变化特征

杜宏娟   

  1. 中国气象局 旱区特色农业气象灾害监测预警与风险管理重点实验室
  • 收稿日期:2018-02-27 修回日期:2018-11-14 接受日期:2018-06-22 出版日期:2018-12-16 发布日期:2018-12-16
  • 通讯作者: 杜宏娟
  • 基金资助:
    :国家自然科学基金“贺兰山东麓酿酒葡萄晚霜冻预报方法研究”(41465004);中国气象局旱区特色农业气象灾害监测预警与风险管理重点 实验室开放项目“红寺堡酿酒葡萄冬季根系层土壤温度预报研究”。

Winter Soil Temperature Changes in the Root Layer of Hongsibu Wine Grape

  • Received:2018-02-27 Revised:2018-11-14 Accepted:2018-06-22 Online:2018-12-16 Published:2018-12-16

摘要: 为了全面掌握红寺堡酿酒葡萄根系层冬季土壤温度的气候变化特征,利用同心气象站1961-2015年冬季(12月至次年2月)0、10、15、20、40厘米逐日平均土壤温度资料,对其变化规律分析。结果表明:酿酒葡萄根系层冬季土壤温度垂直变化特点是随着深度增加呈升高趋势;55a冬季0~40cm平均土壤温度日变化趋势一致,先降后升,最低值在-7.3℃~-3.4℃之间,出现时间在1月13至25日之间;55a冬季土壤温度年际变化呈显著上升趋势; 0~20cm各层气候变化倾向率在0.432~0.604℃/10a之间,0cm、5cm、10cm、20cm土壤温度分别在1989年、1989年、1989年、1984年发生了突变,突变前均为冷期,突变后均为暖期;55a冬季土壤温度年代际变化总体以升温为主,2010年代较2000年代呈下降趋势。

关键词: 蔓绿绒, 蔓绿绒, 生长, 施肥, 养分吸收

Abstract: s: In order to comprehensively grasp the climate change characteristics of soil temperature in the root layer of Hongsibao wine grape in winter, The variation regularity was analyzed by using daily average soil temperature of 0, 10, 15, 20 and 40 cm in winter(December to next February) from 1961 to 2015 of Tong Xin weather station. The results showed that: soil temperature in the root layer of wine grape in winter increased with the increase of depth; the daily average soil temperature variation in 0~40cm soil layers in winter of the 55 years had the same trend, first decreasing and then increasing, with the lowest value ranging from -7.3 ℃ to -3.4 ℃ and the appearance time is between January 13 and January 25. The annual change of soil temperature in winter was significantly increasing in the 55 years. In 0 ~ 20 centimeters, climate change trend rate of each layer is between 0.432 ~ 0.604 ℃ / 10 a , The soil temperature of 0cm, 5cm, 10cm and 20cm respectively had a mutation in 1989, 1989, 1989 and 1984 , all of them were cold periods before mutation, warm after mutation. The interdecadal variability of soil temperature in winter was mainly heated, but the 2010s is a declining trend relative to the 2000s.