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沙丘沉积物中在干燥裸土条件下的蒸汽流控制。

Vapor flow control in dune sediments under dry bare soil conditions.

机构信息

Instituto Geológico y Minero de España, Plaza de España, 41013 Seville, Spain.

Dep. of Civil and Environmental Engineering, Univ. Politècnica de Catalunya (UPC), Jordi Girona 1-3, 08034 Barcelona, Spain; Associated Unit: Hydrogeology Group (UPC-CSIC), Barcelona, Spain.

出版信息

Sci Total Environ. 2021 Sep 10;786:147404. doi: 10.1016/j.scitotenv.2021.147404. Epub 2021 Apr 30.

Abstract

The study presents daily values of inward and outward vapor flux crossing the soil-atmosphere boundary in dependence on meteorological parameters and soil moisture. Measurements of vapor flux, soil moisture and meteorological parameters were evaluated during days without rainfall between 2015 and 2019. Vapor flux data were obtained at 1 min intervals by a precision lysimeter installed in the Doñana National Park, southwest Spain. Meteorological data were measured on-site at 10-min intervals, including temperature, relative humidity, wind velocity and net radiation. After manual and automatic noise elimination of the lysimeter data, time series of a summer and winter period were generated for selected relevant parameters. Furthermore, daily cumulative data of inward and outward vapor flux were calculated for the entire period and analyzed for their control by meteorological parameters and soil moisture. Results show moderate correlations of daily outward vapor flux on the diurnal amplitudes of temperature and humidity whereas daily inward vapor indicates moderate correlations with temperature and soil moisture. A correction coefficient for potential evaporation to estimate actual evaporation was determined based on soil moisture and air temperature.

摘要

本研究展示了在 2015 年至 2019 年期间无降雨日,气象参数和土壤湿度对穿过土壤-大气边界的向内和向外水汽通量日值的影响。通过在西班牙西南部多纳纳国家公园安装的精密蒸渗仪,以 1 分钟的间隔测量水汽通量、土壤湿度和气象参数。气象数据在现场以 10 分钟的间隔进行测量,包括温度、相对湿度、风速和净辐射。在对蒸渗仪数据进行手动和自动噪声消除后,为选定的相关参数生成了夏季和冬季的时间序列。此外,还计算了整个时间段内向内和向外水汽通量的日累积数据,并分析了气象参数和土壤湿度对其的控制作用。结果表明,向外水汽通量的日值与温度和湿度的日振幅呈中等相关,而向内水汽通量与温度和土壤湿度呈中等相关。根据土壤湿度和空气温度,确定了潜在蒸散量的修正系数以估算实际蒸散量。

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