Effects of thermal and hydrophysical properties of sandy Haplic Podzol on actual evapotranspiration of spring wheat

IF 2.3 4区 环境科学与生态学 Q3 WATER RESOURCES Journal Of Hydrology And Hydromechanics Pub Date : 2023-05-14 DOI:10.2478/johh-2023-0013
E. Balashov, A. Dobrokhotov, L. V. Kozyreva
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引用次数: 1

Abstract

Abstract The objectives of the research were to: (1) assess the strength of relationships between the soil thermal and hydrophysical properties, (2) evaluate the strength of association of evapotranspiration of spring wheat crop with soil thermal and hydrophysical properties, and (3) estimate the ranges of the thermal and hydrophysical properties of the sandy Haplic Podzol during the growing period of spring wheat in 2022. The study included instrumental simultaneous measurements of meteorological data, soil water retention curve, soil moisture content (SMC) and thermal properties. Actual evapotranspiration was calculated according to the Allen equation. Spearman’s rank correlation coefficients showed that the increase in SMC from 0.10 cm3 cm−3 to 0.26 cm3 cm−3 resulted in a significant increase in thermal conductivity (r = 0.81, p < 0.001), volumetric heat capacity (r = 0.93, p < 0.001) and thermal diffusivity (r = 0.94, p < 0.001). Actual evapotranspiration also rose with the increasing SMC (r = 0.91, p < 0.001) and matric water potentials (r = 0.61, p < 0.05). As a consequence of the changes in SMC, the Spearman’s rank correlation coefficients supported the strong positive relationships of actual evapotranspiration with volumetric heat capacity (r = 0.97, p < 0.001), thermal conductivity (r = 0.96, p < 0.001) and thermal diffusivity (r = 0.96, p < 0.001). Pearson correlation coefficients also supported the strong input of thermal inertia to the actual evapotranspiration (r = 0.88, p < 0.01). During the whole period of observations, actual evapotranspiration varied from 0.05 to 0.59 mm hr−1, soil thermal conductivity – from 0.225 to −1.056 W m−1 K−1, volumetric heat capacity – from 1.057 to 1.889 MJ m–3 K−1, heat diffusivity from 0.189 to 0.559 mm2 s−1, and thermal inertia – from 516 to 1412 J m−2 K−1 s−0.5.
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砂质灰化土热物理性质对春小麦实际蒸散量的影响
摘要本研究的目的是:(1)评估土壤热物性与水物性之间的关系强度;(2)评估春小麦作物蒸散量与土壤热物性与水物性之间的关联强度;(3)估算2022年春小麦生育期沙质Haplic Podzol的热物性和水物性范围。该研究包括仪器同时测量气象数据、土壤保水曲线、土壤含水量(SMC)和热特性。根据Allen方程计算实际蒸散量。Spearman等级相关系数表明,SMC从0.10 cm3 cm - 3增加到0.26 cm3 cm - 3,导致导热系数(r = 0.81, p < 0.001)、体积热容(r = 0.93, p < 0.001)和热扩散系数(r = 0.94, p < 0.001)显著增加。实际蒸散量也随SMC (r = 0.91, p < 0.001)和基质水势(r = 0.61, p < 0.05)的增加而增加。由于SMC的变化,Spearman等级相关系数支持实际蒸散发与容积热容(r = 0.97, p < 0.001)、热导率(r = 0.96, p < 0.001)和热扩散率(r = 0.96, p < 0.001)之间的强正相关关系。Pearson相关系数也支持热惯性对实际蒸散的强输入(r = 0.88, p < 0.01)。在整个观测期间,实际蒸散量变化范围为0.05 ~ 0.59 mm hr−1,土壤热导率变化范围为0.225 ~−1.056 W m−1 K−1,体积热容变化范围为1.057 ~ 1.889 MJ m−3 K−1,热扩散系数变化范围为0.189 ~ 0.559 mm2 s−1,热惯性变化范围为516 ~ 1412 J m−2 K−1 s−0.5。
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来源期刊
CiteScore
4.20
自引率
5.30%
发文量
30
审稿时长
>12 weeks
期刊介绍: JOURNAL OF HYDROLOGY AND HYDROMECHANICS is an international open access journal for the basic disciplines of water sciences. The scope of hydrology is limited to biohydrology, catchment hydrology and vadose zone hydrology, primarily of temperate zone. The hydromechanics covers theoretical, experimental and computational hydraulics and fluid mechanics in various fields, two- and multiphase flows, including non-Newtonian flow, and new frontiers in hydraulics. The journal is published quarterly in English. The types of contribution include: research and review articles, short communications and technical notes. The articles have been thoroughly peer reviewed by international specialists and promoted to researchers working in the same field.
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