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DOI10.1016/j.jhydrol.2009.05.019
Effects of meteorological models on the solution of the surface energy balance and soil temperature variations in bare soils
Saito, Hirotaka1; Simunek, Jiri2
通讯作者Saito, Hirotaka
来源期刊JOURNAL OF HYDROLOGY
ISSN0022-1694
EISSN1879-2707
出版年2009
卷号373期号:3-4页码:545-561
英文摘要

A complete evaluation of the soil thermal regime can be obtained by evaluating the movement of liquid water, water vapor, and thermal energy in the subsurface. Such an evaluation requires the simultaneous solution of the system of equations for the Surface water and energy balance and subsurface heat trans, port and water flow. When only daily climatic data is available, one needs not only to estimate diurnal cycles of climatic data, but to calculate the continuous values of various components in the energy balance equation, using different parameterization methods. The objective of this study is to quantify the impact of the choice of different estimation and parameterization methods, referred together to as meteorological models in this paper, on soil temperature predictions in bare soils. A variety of widely accepted meteorological models were tested on the dataset collected at a proposed low-level radioactive-waste disposal site in the Chihuahua Desert in West Texas. As the soil surface was kept bare during the study, no vegetation effects were evaluated. A coupled liquid water, water vapor, and heat transport model, implemented in the HYDRUS-1D program, was used to simulate diurnal and seasonal soil temperature changes in the engineered cover installed at the site. The modified version of HYDRUS provides a flexible means for using various types of information and different models to evaluate surface mass and energy balance. Different meteorological models were compared in terms of their prediction errors for soil temperatures at seven observation depths. The results obtained indicate that although many available meteorological models can be used to solve the energy balance equation at the soil-atmosphere interface in coupled water, vapor, and heat transport models, their impact on overall simulation results varies. For example, using daily average climatic data led to greater prediction errors, while relatively simple meteorological models may significantly improve soil temperature predictions. On the other hand, while models for the albedo and soil emissivity had little impact on soil temperature predictions, the choice of the atmospheric emissivity models had a greater impact. A comparison of all the different models indicates that the error introduced at the soil atmosphere interface propagates to deeper layers. Therefore, attention needs to be paid not only to the precise determination of the soil hydraulic and thermal properties, but also to the selection of proper meteorological models for the components involved in the surface energy balance calculations. (C) 2009 Elsevier B.V. All rights reserved.


英文关键词HYDRUS-1D Water and vapor transport Thermal conductivity Net radiation Evaporation
类型Article
语种英语
国家Japan ; USA
收录类别SCI-E
WOS记录号WOS:000268406400024
WOS关键词LONG-WAVE-RADIATION ; FURROW-IRRIGATED SOIL ; HYDRAULIC CONDUCTIVITY ; 2-DIMENSIONAL MODEL ; THERMAL-RADIATION ; SEMIARID REGIONS ; VAPOR DIFFUSION ; CLEAR SKIES ; EVAPORATION ; WATER
WOS类目Engineering, Civil ; Geosciences, Multidisciplinary ; Water Resources
WOS研究方向Engineering ; Geology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/161639
作者单位1.Tokyo Univ Agr & Technol, Dept Ecoreg Sci, Fuchu, Tokyo 1838509, Japan;
2.Univ Calif Riverside, Dept Environm Sci, Riverside, CA 92521 USA
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Saito, Hirotaka,Simunek, Jiri. Effects of meteorological models on the solution of the surface energy balance and soil temperature variations in bare soils[J],2009,373(3-4):545-561.
APA Saito, Hirotaka,&Simunek, Jiri.(2009).Effects of meteorological models on the solution of the surface energy balance and soil temperature variations in bare soils.JOURNAL OF HYDROLOGY,373(3-4),545-561.
MLA Saito, Hirotaka,et al."Effects of meteorological models on the solution of the surface energy balance and soil temperature variations in bare soils".JOURNAL OF HYDROLOGY 373.3-4(2009):545-561.
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