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Estimation of evapotranspiration of a salt marsh in southern South America with coupled Penman-Monteith and surface resistance models

机译:南美洲南美洲盐沼蒸散的探测与钢琴蒙特思耦合,表面电阻模型

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摘要

One of the most recommended method to estimate evapotranspiration (ET) of vegetated surfaces with different soil moisture conditions is the Penman-Monteith equation (PM). Canopy and soil conditions are parameterized through the surface resistance or conductance, while the contribution of the canopy to ET is measured by the canopy resistance. The study of natural ecosystems has gained interest because of its importance in water and carbon cycles. However, unlike monocultures, natural environments arecomposed of a mixture of species that make the estimation of ET with PM troublesome. This feature makes them suitable for ET estimation considering the contribution of both, the canopy and the soil represented by the surface resistance (r_s), or the contribution of the canopy, represented by the canopy resistance (r_c). This work aims to model the surface and canopy resistances using conventional meteorological, biological and pedologlcal variables observed at a salt marsh used for livestock productionin Buenos Aires province, Argentina. Twelve models (Ml to M12) based on the net solar radiation (R_n), air temperature (T_a), air relative humidity (RH), surface wind velocity (U), dew point departure (D_p), aerodynamic resistance (r_a), leaf area index(LAI) and volumetric soil water content (V_s) were obtained using two different regression methodologies. Surface resistances during daytime were calculated inverting the PM equation with ET fluxes measured with the eddy covariance method. PM-derived r_svaried between 20 and 1000 s m~(-1), with a median of 137sm~(-1). From 1620 observations, 468 were used for model calibration while 1152 for model validation. M5 and Mil with R, RH, r_(omg), LAI predictor variables were the best models with 80.8 sm~(-1)root mean square error, 0.51 determination coefficient, 0.69 and 0.65 index of agreement, respectively. The modelled resistances allowed the estimation of latent heat fluxes with a root mean quadratic error varying from 60.7 to 69.5 W m~(-2). These results show the possibility to achieve rs from a minimum set of variables easily measured in the field which in turn, allows to estimate the ET of salt marsh ecosystems with scarce meteorological information.
机译:估算具有不同土壤湿度条件的植被表面的蒸散(ET)的最推荐方法之一是Penman-Monteith方程(PM)。通过表面电阻或电导参数化冠层和土壤条件,而通过冠层电阻测量冠层对ET的贡献。由于其在水和碳循环中的重要性,对自然生态系统的研究得到了利益。然而,与单一栽培不同,自然环境被分解的物种混合物,使得估计ET与PM麻烦。考虑到由表面电阻(R_S)表示的贡献,冠层和覆盖器的贡献,该特征使得它们适用于ET估计,或者通过冠层电阻(R_C)表示的冠层。这项工作旨在利用在阿根廷畜牧业驻地盐沼的盐沼的常规气象,生物和护理变量模拟表面和冠层电阻。基于净太阳辐射(R_N),空气温度(T_A),空气相对湿度(RH),表面风速(U),露点偏离(D_P),空气动力学(R_A),使用两种不同的回归方法获得叶面积指数(LAI)和体积土壤含水量(V_S)。在白天期间的表面电阻计算与ET助焊剂的PM等式反转,用涡流协方差法测量。 PM-衍生的R_Svaried在20到1000 S m〜(-1)之间,中值137sm〜(-1)。从1620个观察开始,468用于模型校准,而1152用于模型验证。 M5和MIL与R,RH,R_(OMG),Lai预测器变量是具有80.8 SM〜(-1)根均方误差,0.51确定系数,0.69和0.65指数的最佳型号。模型电阻允许估计潜热通量,从60.7至69.5W m〜(-2)不同的根部平均误差。这些结果表明,从现场中容易测量的最小变量达到rs的可能性,这又允许估计具有稀缺气象信息的盐沼生态系统。

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  • 来源
    《Agricultural and Forest Meteorology》 |2019年第2019期|共10页
  • 作者单位

    Universidad de Buenos Aires Facultad de Ciencias Exactas y Naturales Departamento de Ciencias de la Atmdsfera y los Octanos Av. Intendente Giiiraldes 2160 Piso 2 Pabeilan 2 Ciudad Universitaria C142BEHA Ciudad Autdnoma de Buenos Aires Argentina;

    Universidad de Buenos Aires Facultad de Ciencias Exactas y Naturales Departamento de Ciencias de la Atmdsfera y los Octanos Av. Intendente Giiiraldes 2160 Piso 2 Pabeilan 2 Ciudad Universitaria C142BEHA Ciudad Autdnoma de Buenos Aires Argentina;

    Universidad de Buenos Aires Facultad de Ciencias Exactas y Naturales Departamento de Ciencias de la Atmdsfera y los Octanos Av. Intendente Giiiraldes 2160 Piso 2 Pabeilan 2 Ciudad Universitaria C142BEHA Ciudad Autdnoma de Buenos Aires Argentina;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Coupled model; Spartlna; Eddy covariance; Argentina;

    机译:耦合模型;spartlna;涡旋协方差;阿根廷;

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