利用地理信息系统(GIS)技术评估和监测马卡佐伊凹陷(俄罗斯车臣共和国)气候条件的可能性

V. Bratkov, R. H. Bekmurzaeva, L. Bekmurzaeva
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摘要

在地理信息系统(GIS)环境中进行了 DEM 分析,以评估太阳总辐射量的时空分布,并对回顾性气候数据和实际(2023 年)气象数据进行了统计分析。在地理信息系统(GIS)环境中,根据平均空间分辨率的数字浮雕模型,估算了太阳辐射量的时空变化。通过对气候条件的前瞻性分析,可以评估马卡佐伊盆地气候的总体特征。 通过实地观测,可以确定现代气候条件的特征,并计算出梯度。在相同的海拔高度区间内,南面和北面的斜坡差异高达 50%。夏至日的辐射量差异最小,冬至日的辐射量差异最大。2023 年,海拔 1960-2264 米范围内的年平均气温从 8.6 度到 5.8 度不等,降水量从 481 毫米到 525 毫米不等。气象横断面内气象参数(气温和叶面、降水量和相对湿度)的年内变化过程已经揭示。根据所获得的数据,可以着手建立一个地理信息系统,用于监测卡德罗夫车臣国立大学碳填埋场的气候条件。
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The possibilities of GIS technologies for assessing and monitoring the climatic conditions of the Makazhoy Fepression (Chechen Republic, Russia)
Modeling based on a digital relief model of the spatiotemporal change in the amount of total solar radiation and the assessment of the contribution of locations to the distribution of meteorological elements.DEM analysis was conducted in a GIS environment to assess the spatial and temporal distribution of total solar radiation, and statistical analysis of retrospective climatic and actual (2023) meteorological data was conducted.Based on a digital model of the relief of average spatial resolution in a GIS environment, changes in the spatial and temporal magnitude of solar radiation were estimated. A prospective analysis of climatic conditions made it possible to assess the general features of the climate of the Makazhoy basin Field observations made it possible to characterize modern climatic conditions, as well as to calculate gradients.Depending on the locations, it was determined that the amount of total solar radiation in the Makazhoy basin varies by almost 3 times. Within the same altitude intervals, the difference between the slopes of the southern and northern exposures reaches up to 50 %. The smallest differences in the amount of radiation were observed on the days of the summer solstice, and the largest on the days of the winter solstice. The average annual air temperature in the altitude range of 1960–2264 m in 2023 varied from 8.6 to 5.8°, and the amount of precipitation – from 481 to 525 mm, respectively. The intra‐annual course of meteorological parameters (air temperature and leaf surface, precipitation and relative humidity) within the meteorological transect has been revealed. The data obtained make it possible to proceed to the formation of a GIS system for monitoring the climatic conditions of the carbon landfill of the Kadyrov Chechen State University.
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