绘制巴黎大都市区的蒸散系数

M. Nistor
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引用次数: 8

摘要

全球变化涉及适应和关于受这些变化影响的系统的最新知识。由于创新和人口增长,土地覆盖格局暴露于改变其组成部分,包括自然和人为的,这对地球科学的几个领域都有影响。本文以巴黎大都市区为研究对象,研究了欧洲最具活力和重要的土地覆盖蒸散系数的空间分布。本文分析了不同作物和植被区域的特定作物系数,并给出了与城市地区、裸露土壤和岩石、开阔水域和河流相关的蒸散系数。调查包括对具体文献中的土地覆盖系数进行审查和适应性分析。利用ArcGIS环境,进行了四季(初季、季中、季末和冷季)土地覆被系数的空间分布。主要结果表明,阔叶林占地的季中K - clc最大值为1.6;同一季节,kclc高值1.35和1.5分布在复杂耕作模式、非灌溉耕地和混交林覆盖的地区。初季地表覆盖系数在0.1 ~ 1.3之间,末季地表覆盖系数在0.2 ~ 1.5之间。在寒冷季节,巴黎大都市区大部分地区较低,地点较少,在研究区域的南侧和东侧,系数达到1。这项工作强调了作物系数的变化,以及巴黎大都市区不同土地覆盖类型的变化,这对农业管理、水文地质学家和气候学家具有重要意义。进一步的调查将包括蒸散发计算和气候对该地区水资源的影响评估
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mapping evapotranspiration coefficients in the Paris metropolitan area
Global changes involves adaptation and updated knowledge about the systems affected by these changes. Due to innovation and population growth also, the land cover pattern is exposed to modify its components, both natural and artificial, with implication for the several fields of Earth Sciences. Here, we present the spatial distribution of the land cover evapotranspiration coefficients (K clc ) in one of the most dynamic and important territory from Europe, in Paris metropolitan area. Specified crop coefficients were analysed for different crops and vegetative areas, but also the evapotranspiration coefficients related to the urban areas, bare soils and rocks, open water and rivers were presented in the present paper. The investigation has included the review and the adapted analysis of the land cover coefficients taken from the specific literature. Using the ArcGIS environment, the spatial distribution of the land cover coefficients related to four seasons (initial season, mid-season, end-season, and cold season) was carried out. The main results indicate maximum values up to 1.6 of the K clc in the mid-season, for the areas occupied by the broad-leaved forest. In the same season, the K clc high values of 1.35 and 1.5 spread in the areas covered by complex cultivation patterns, non-irrigated arable land, respective by mixed forest. The initial season presents values of K clc that range from 0.1 to 1.3, while in the end season the land cover coefficients range from 0.2 to 1.5. The cold season indicates the lower values in major part of the Paris metropolitan area with few locations, in the South and East sides of the study area, where the coefficient reaches value 1. This work highlights the variation of the crop coefficients, but also of different land cover types in the metropolitan area of Paris with implications for agriculture management, hydrogeologists, and climatologists. Further investigations will include evapotranspiration calculations and climate effects assessment on the water resources in this area
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