Spatiotemporal drought characteristics during growing seasons of the winter wheat and summer maize in the North China Plain

IF 2 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Frontiers in Earth Science Pub Date : 2024-01-16 DOI:10.3389/feart.2023.1358987
Qing Li, Yun Liu, Lanyang Luo, Yu Wang, Qian Wang, Meihong Ma
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Abstract

The North China plain (NCP) is an important production base for winter wheat and summer maize in China. Severe droughts seriously restrict agricultural production in this region, threatening food security. Based on the standardized precipitation evapotranspiration index (SPEI), this study explored the spatial and temporal drought characteristics during the winter wheat and summer maize growing seasons in the region. The study found that: 1) From 1980 to 2013, the drought trend of the winter wheat growing season in the NCP has intensified, with Huang-Huai Plain agricultural area (HH_P) showing the most significant drought trend. However, the summer maize growing season has become wetter, with the Shandong hilly agricultural and forestry area (SD_Q) showing the most significant wetting trend. 2) After the year 2003, the results from Mann-Kendall trend analysis revealed that the drought trend of HH_P during the winter wheat growing season became particularly pronounced, but the wetting trend of SD_Q and HH_P during the summer maize growing season became more evident. 3) The dominant spatial patterns observed in the NCP during the growing seasons of winter wheat and summer maize were marked by a consistent distribution of drought and wetness conditions. For winter wheat, the southern regions of the foothill plain area of Yanshan and Taihang Mountains (YT_P) and the low-lying plain area of Hebei, Shandong, and Henan (JLY_P) were more sensitive to the changes of drought and wet conditions. For summer maize, SD_Q was more sensitive to the changes of the drought and wet conditions. The results of this study could provide references for the formulation of drought relief strategies of winter wheat and summer maize in the NCP.
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华北平原冬小麦和夏玉米生长季节的时空干旱特征
华北平原(NCP)是中国重要的冬小麦和夏玉米生产基地。严重的干旱严重制约了该地区的农业生产,威胁着粮食安全。本研究基于标准化降水蒸散指数(SPEI),探讨了该地区冬小麦和夏玉米生长季节的时空干旱特征。研究发现1)从 1980 年到 2013 年,国家重点实验室冬小麦生长季的干旱趋势加剧,其中黄淮平原农业区(HH_P)的干旱趋势最为显著。然而,夏玉米生长季却趋于湿润,其中山东丘陵农林区(SD_Q)的湿润趋势最为明显。2)2003 年以后,Mann-Kendall 趋势分析结果显示,冬小麦生长期 HH_P 的干旱趋势尤为明显,但夏玉米生长期 SD_Q 和 HH_P 的湿润趋势更为明显。3) 在冬小麦和夏玉米生长季节,国家气候中心观测到的主要空间模式表现为干旱和湿润条件的一致分布。就冬小麦而言,燕山、太行山南麓平原区(YT_P)和河北、山东、河南低洼平原区(JLY_P)对干旱和湿润条件的变化更为敏感。对于夏玉米,SD_Q 对干旱和湿润条件的变化更为敏感。本研究的结果可为国家自然保护区冬小麦和夏玉米抗旱策略的制定提供参考。
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来源期刊
Frontiers in Earth Science
Frontiers in Earth Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
3.50
自引率
10.30%
发文量
2076
审稿时长
12 weeks
期刊介绍: Frontiers in Earth Science is an open-access journal that aims to bring together and publish on a single platform the best research dedicated to our planet. This platform hosts the rapidly growing and continuously expanding domains in Earth Science, involving the lithosphere (including the geosciences spectrum), the hydrosphere (including marine geosciences and hydrology, complementing the existing Frontiers journal on Marine Science) and the atmosphere (including meteorology and climatology). As such, Frontiers in Earth Science focuses on the countless processes operating within and among the major spheres constituting our planet. In turn, the understanding of these processes provides the theoretical background to better use the available resources and to face the major environmental challenges (including earthquakes, tsunamis, eruptions, floods, landslides, climate changes, extreme meteorological events): this is where interdependent processes meet, requiring a holistic view to better live on and with our planet. The journal welcomes outstanding contributions in any domain of Earth Science. The open-access model developed by Frontiers offers a fast, efficient, timely and dynamic alternative to traditional publication formats. The journal has 20 specialty sections at the first tier, each acting as an independent journal with a full editorial board. The traditional peer-review process is adapted to guarantee fairness and efficiency using a thorough paperless process, with real-time author-reviewer-editor interactions, collaborative reviewer mandates to maximize quality, and reviewer disclosure after article acceptance. While maintaining a rigorous peer-review, this system allows for a process whereby accepted articles are published online on average 90 days after submission. General Commentary articles as well as Book Reviews in Frontiers in Earth Science are only accepted upon invitation.
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