基于GIS的攀枝花芒果氣候適宜性精細化區劃
作者:
作者單位:

作者簡介:

通訊作者:

中圖分類號:

基金項目:

高原與盆地暴雨旱澇災害四川省重點實驗室科技發展基金項目(SCQXKJYJXMS202108)資助


Refined Division of Climate Suitability of Mango in Panzhihua Based on GIS
Author:
Affiliation:

Fund Project:

  • 摘要
  • |
  • 圖/表
  • |
  • 訪問統計
  • |
  • 參考文獻
  • |
  • 相似文獻
  • |
  • 引證文獻
  • |
  • 資源附件
  • |
  • 文章評論
    摘要:

    為充分利用攀枝花氣候資源、合理規劃芒果產業布局、促進芒果高產穩產提供科學依據。利用攀枝花1993—2022年4個國家站和26個區域站現有年份氣象資料、芒果生育期觀測資料、攀枝花數字高程和鄉鎮邊界,篩選出7個影響攀枝花芒果品質和產量的氣候因子和2個地形因子作區劃指標,建立氣候適宜性指標空間分布模型和綜合生態適宜度模型,采用層次分析法和自然斷點法,運用GIS完成攀枝花芒果氣候適宜性精細化區劃。結果表明:攀枝花絕大部地區熱量能滿足芒果生長發育需求,最冷月平均氣溫和年極端最低氣溫是制約芒果種植布局的關鍵氣候指標,即在種植中應首要考慮芒果能否安全越冬。優勢種植區(最適宜區和適宜區)占33%,分布在沿主要河流海拔1600 m以下地段;次適宜區分布在適宜區和不可種植區之間,占17%,氣象風險較高;不可種植區占50%,北部海拔1750 m、南部2000 m以上大部地區不可種。區劃結果經初步驗證與實際種植情況基本相符。

    Abstract:

    Panzhihua City’s unique climatic resources are exceptionally suitable for mango cultivation. Since the experimental planting in the 1970s, it has become China’s and even the world’s highest-altitude, highest-latitude, and latest-maturing large-scale mango production base. This study aims to provide a scientific basis for fully utilising Panzhihua’s climatic resources, rationally planning the mango industry layout, and promoting high and stable mango yields. Utilising comprehensive meteorological data from 1993 to 2022 from four national stations and 26 regional stations in Panzhihua City, along with detailed mango growth period observation data, Panzhihua digital elevation model, and precise township boundaries, this research thoroughly considers both climate and topography factors. Nine critical suitability indicators are carefully selected: mean temperature of the coldest month, annual extreme minimum temperature, annual mean temperature, accumulated temperature of ≥ 10 ℃, average temperature during flowering period, number of days with maximum temperature of ≥ 35 ℃ during flowering period, rainy days during flowering period, slope, and aspect. Advanced spatial distribution models for climate suitability indicators and a comprehensive ecological suitability model are meticulously established. The Analytic Hierarchy Process and comprehensive ecological suitability method are rigorously employed, utilising state-of-the-art GIS technology to complete a refined zoning of comprehensive climatic suitability for mango cultivation in Panzhihua. The meteorological indicators affecting mango cultivation distribution are first systematically classified, dividing the entire city into plantable and non-plantable areas. Within the plantable areas, climate and topography are comprehensively considered to further delineate the most suitable, suitable, and marginally suitable zones with high precision. Results indicate that the vast majority of Panzhihua’s regions provide sufficient heat for mango growth and development throughout the year. The mean temperature of the coldest month and the annual extreme minimum temperature are identified as the key climatic factors constraining mango planting distribution. This implies that the primary consideration in production and planting should be whether mangoes can safely overwinter in specific locations. The advantageous planting areas (most suitable and suitable zones) account for 33% of the total area, strategically distributed along major rivers at elevations below 1600 m. Marginally suitable zones, located between suitable and non-plantable areas, comprise 17% of the area and face higher meteorological risks, requiring careful management. Non-plantable areas constitute 50%, with most regions above 1750 m in the north and 2000 m in the south being unsuitable for cultivation due to unfavourable climatic conditions. The zoning results are preliminarily verified through field studies and generally align with actual planting situations, providing a reliable reference for future mango industry development in Panzhihua.

    參考文獻
    相似文獻
    引證文獻
引用本文

劉春艷,尹雪梅,杜成勛,彭永康.基于GIS的攀枝花芒果氣候適宜性精細化區劃[J].氣象科技,2025,53(1):135~144

復制
分享
文章指標
  • 點擊次數:
  • 下載次數:
  • HTML閱讀次數:
  • 引用次數:
歷史
  • 收稿日期:2024-03-26
  • 定稿日期:2024-10-17
  • 錄用日期:
  • 在線發布日期: 2025-02-27
  • 出版日期:
您是第位訪問者
技術支持:北京勤云科技發展有限公司
午夜欧美大片免费观看,欧美激情综合五月色丁香,亚洲日本在线视频观看,午夜精品福利在线
>