Мобильная версия

Доступно журналов:

3 288

Доступно статей:

3 891 637

 

Скрыть метаданые

Автор Topp, G. C.
Дата выпуска 1971
dc.description The microhydrologic properties involving water content, pressure head, and hydraulic conductivity were measured simultaneously for a silt loam and for a clay loam soil. Large hysteresis in the water content‐pressure head relationship was found for both soils, the silt loam soil showing the larger amount. There was no measurable hysteresis in the relationship between hydraulic conductivity and water content in either soil. The data from the clay loam soil showed considerable scatter attributed to structural rearrangement in the soil during measurement. A formulation of the independent domain theory by Everett was unsatisfactory for predicting the observed scanning curves in the water content‐pressure head relationships of both soils. A theorem of an alternative formulation by Enderby was tested by comparing differences in slopes for reversals from drying to wetting along the main curves to those found on a scanning curve; Enderby's formulation was probably no better for the silt loam soil under the conditions of test than that of Everett.
Формат application.pdf
Копирайт Copyright 1971 by the American Geophysical Union.
Название Soil Water Hysteresis in Silt Loam and Clay Loam Soils
Тип article
DOI 10.1029/WR007i004p00914
Electronic ISSN 1944-7973
Print ISSN 0043-1397
Журнал Water Resources Research
Том 7
Первая страница 914
Последняя страница 920
Выпуск 4
Библиографическая ссылка Bomba, S. J., Hysteresis and time‐scale invariance in a glass‐bead medium, Ph.D. thesis, p.116,University of Wisconsin,Madison,University Microfilms Inc., Order No. 68–7089,Ann Arbor, Michigan,1968.
Библиографическая ссылка Davidson, J. M., D. R.Nielsen, J. W.Biggar, The dependence of soil‐water uptake and release upon the applied pressure increment, Soil Sci. Soc. Amer. Proc., 30, 298–304, 1966.
Библиографическая ссылка Enderby, J. A., The domain model of hysteresis, 1, Independent domains, Trans. Faraday Soc., 51, 835–848, 1955.
Библиографическая ссылка Everett, D. H., A general approach to hysteresis 4, An alternative formulation of the domain model, Trans. Faraday Soc., 51, 1551–1557, 1955.
Библиографическая ссылка Everett, D. H., Adsorption hysteresis, inSolid Gas Interface,, 2, edited byE.Alison Flood, chap. 36,Marcel Dekker,New York,1967.
Библиографическая ссылка Freeze, R. A., The mechanism of natural groundwater recharge and discharge, 1, One‐dimensional, vertical, unsteady, unsaturated flow above a recharging or discharging groundwater flow system, Water Resour. Res., 51, 153–171, 1969.
Библиографическая ссылка Ibrahim, H. A., W.Brutsaert, Intermittent infiltration into soils with hysteresis, J. Hydraul. Div., Amer. Soc. Civil Eng., 95, 113–137, 1968.
Библиографическая ссылка Nielsen, D. R., J. W.Biggar, Measuring capillary conductivity, Soil Sci., 92, 192–193, 1961.
Библиографическая ссылка Nwa, E. U., R. J.Kunze, E. H.Kidder, Gravimetric pressure cell investigation of hysteresis and hydraulic conductivities in soils, Mich. Agr. Exp. Sta. Quart. Bull., 50, 559–569, 1968.
Библиографическая ссылка Poulovassilis, A., Hysteresis of pore water, An application of the concept of independent domains, Soil Sci., 93, 405–412, 1962.
Библиографическая ссылка Poulovassilis, A., Hysteresis of pore water in granular porous bodies, Soil Sci., 109, 5–12, 1970.
Библиографическая ссылка Rubin, J., Numerical method for analysing hysteresis‐affected post‐infiltration redistribution of soil moisture, Soil Sci. Soc. Amer. Proc., 81, 13–20, 1967.
Библиографическая ссылка Staple, W. J., Infiltration and redistribution of water in vertical columns of loam soil, Soil Sci. Soc. Amer. Proc., 30, 553–558, 1966.
Библиографическая ссылка Staple, W. J., Predicting moisture distribution in rewetted soils, Soil Sci. Soc. Amer. Proc., 34, 387–392, 1970.
Библиографическая ссылка Talsma, T., Hysteresis in two sands and the independent domain model, Water Resour. Res., 63, 964–970, 1970.
Библиографическая ссылка Topp, G. C., Soil‐water hysteresis measured in a sandy loam and compared with the hysteretic domain model, Soil Sci. Soc. Amer. Proc., 33, 645–651, 1969.
Библиографическая ссылка Topp, G. C., Soil‐water content from gamma ray attentuation : A comparison of ionization chamber and scintillation detectors, Can. J. Soil Sci., 50, 439–447, 1970.
Библиографическая ссылка Topp, G. C., Soil‐water hysteresis: The domain model extended to pore interaction conditions, Soil Sci. Soc. Amer. Proc., 35, 219–225, 1971.
Библиографическая ссылка Topp, G. C., E. E.Miller, Hysteretic moisture characteristics and hydraulic conductivities for glass‐bead media, Soil Sci. Soc. Amer. Proc., 30, 156–162, 1966.
Библиографическая ссылка Topp, G. C., A.Klute, D. B.Peters, Comparison of water content‐pressure head data obtained by equilibrium, steady‐state and unsteady‐state methods, Soil Sci. Soc. Amer. Proc., 31, 312–314, 1967.
Библиографическая ссылка Vachaud, G., J. L.Thony, Hysteresis during infiltration and redistribution in a soil column at different initial water contents, Water Resour. Res., 71, 111–127, 1971.
Библиографическая ссылка Whisler, F. D., A.Klute, The numerical analysis of infiltration considering hysteresis into a vertical soil column at equilibrium under gravity, Soil Sci. Soc. Amer. Proc., 29, 480–494, 1965.

Скрыть метаданые