Skip to main content

2019 | OriginalPaper | Buchkapitel

13. Evaporation

verfasst von : Viliam Novák, Hana Hlaváčiková

Erschienen in: Applied Soil Hydrology

Verlag: Springer International Publishing

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Evapotranspiration is the most important term among the “sink” terms of the soil-water balance equation. In this chapter are described contemporary methods for evapotranspiration estimation, as well as the calculation methods to estimate its structural components: evaporation and transpiration. The basic equations of potential evapotranspiration calculation (the Penman equation) and actual evapotranspiration calculation (the Penman–Monteith equation) are presented, and their applications are described. The FAO modification of the Penman–Monteith equation to evaluate daily and hourly reference evapotranspiration is also presented. This chapter also contains the most popular empirical equations for the calculation of the potential evapotranspiration of various evaporating surfaces. Results of measurements of root-extraction patterns and proposed calculation methods for root water-uptake functions needed in mathematical models are briefly discussed.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Abtew W, Melesse A (2013) Evaporation and evapotranspiration, measurements and estimation. Springer Science + Business Media, DordrechtCrossRef Abtew W, Melesse A (2013) Evaporation and evapotranspiration, measurements and estimation. Springer Science + Business Media, DordrechtCrossRef
Zurück zum Zitat Allen RG et al (2006) A recommendation on standardized surface resistance for hourly calculation of reference ETo by the FAO56 Penman-Monteith method. Agric Water Manag 81:1–22CrossRef Allen RG et al (2006) A recommendation on standardized surface resistance for hourly calculation of reference ETo by the FAO56 Penman-Monteith method. Agric Water Manag 81:1–22CrossRef
Zurück zum Zitat Allen RG, Pereira LS, Raes D, Smith M (1998) Crop evapotranspiration—guidelines for computing crop water requirements. FAO Irrigation and drainage paper 56, FAO, Rome Allen RG, Pereira LS, Raes D, Smith M (1998) Crop evapotranspiration—guidelines for computing crop water requirements. FAO Irrigation and drainage paper 56, FAO, Rome
Zurück zum Zitat Babkin VI (1984) Evaporation from water surface. Gidrometeoizdat, Leningrad (in Russian) Babkin VI (1984) Evaporation from water surface. Gidrometeoizdat, Leningrad (in Russian)
Zurück zum Zitat Brutsaert W (1982) Evaporation into the atmosphere. D Reidel Publishing Company, DordrechtCrossRef Brutsaert W (1982) Evaporation into the atmosphere. D Reidel Publishing Company, DordrechtCrossRef
Zurück zum Zitat Budagovskij AI (1964) Evaporation of soil water. Nauka, Moscow (in Russian) Budagovskij AI (1964) Evaporation of soil water. Nauka, Moscow (in Russian)
Zurück zum Zitat Budagovskij AI (1981) Soil water evaporation. In: Fizika počvennych vod, Nauka, Moscow, pp 13–95 (in Russian) Budagovskij AI (1981) Soil water evaporation. In: Fizika počvennych vod, Nauka, Moscow, pp 13–95 (in Russian)
Zurück zum Zitat Budagovskij AI, Novák V (2011) Theory of evapotranspiration: 1. Transpiration and its quantitative description. J Hydrol Hydromech 59:3–23CrossRef Budagovskij AI, Novák V (2011) Theory of evapotranspiration: 1. Transpiration and its quantitative description. J Hydrol Hydromech 59:3–23CrossRef
Zurück zum Zitat Burman R, Pochop LO (1994) Evaporation, evapotranspiration and climatic data. Developments in atmospheric science 22, Elsevier Science, BV Amsterdam Burman R, Pochop LO (1994) Evaporation, evapotranspiration and climatic data. Developments in atmospheric science 22, Elsevier Science, BV Amsterdam
Zurück zum Zitat Campbell GS, Norman JM (1998) An introduction to environmental biophysics. Springer, New YorkCrossRef Campbell GS, Norman JM (1998) An introduction to environmental biophysics. Springer, New YorkCrossRef
Zurück zum Zitat Dalton J (1802) On evaporation. Essay III. In: Experimental essays on the constitution of mixed gases; on the force of steam or vapour from water and other liquids in different temperatures, both in Torricellian vacuum and in air; on evaporation and on the expansion of gases by heat. Mem Proc Manchester Lit Phil Soc 5:574–594 Dalton J (1802) On evaporation. Essay III. In: Experimental essays on the constitution of mixed gases; on the force of steam or vapour from water and other liquids in different temperatures, both in Torricellian vacuum and in air; on evaporation and on the expansion of gases by heat. Mem Proc Manchester Lit Phil Soc 5:574–594
Zurück zum Zitat Denmead OT (1973) Relative significance of the plant and water evaporation in estimating evapotranspiration. In: Proceedings of the Uppsala symposium 1970, UNESCO, Paris, pp 505–511 Denmead OT (1973) Relative significance of the plant and water evaporation in estimating evapotranspiration. In: Proceedings of the Uppsala symposium 1970, UNESCO, Paris, pp 505–511
Zurück zum Zitat Feddes RA, Kowalik PJ, Zaradny H (1978) Simulation of field water use and crop yield. Wageningen, PUDOC Feddes RA, Kowalik PJ, Zaradny H (1978) Simulation of field water use and crop yield. Wageningen, PUDOC
Zurück zum Zitat Himmelbauer M, Novák V, Majerčák J (2008) Sensitivity of soil water content profiles in the root zone to extraction functions based on different root morphological parameters. J Hydrol Hydromech 56:1–11 Himmelbauer M, Novák V, Majerčák J (2008) Sensitivity of soil water content profiles in the root zone to extraction functions based on different root morphological parameters. J Hydrol Hydromech 56:1–11
Zurück zum Zitat Chrgijan ACh (1986) Physics of atmosphere. Izdat Moskovsk Universiteta, Moscow (in Russian) Chrgijan ACh (1986) Physics of atmosphere. Izdat Moskovsk Universiteta, Moscow (in Russian)
Zurück zum Zitat Ivanov NN (1954) About potential evapotranspiration estimation. Izv VGO, t 86 2:189–196 (in Russian) Ivanov NN (1954) About potential evapotranspiration estimation. Izv VGO, t 86 2:189–196 (in Russian)
Zurück zum Zitat Keen BA (1914) The evaporation of water from soil. J Agric Sci 6:457–475CrossRef Keen BA (1914) The evaporation of water from soil. J Agric Sci 6:457–475CrossRef
Zurück zum Zitat Linacre ET (1977) A simple formula for estimating evaporation rates in various climates using temperature data alone. Agric Meteorol 18:409–424CrossRef Linacre ET (1977) A simple formula for estimating evaporation rates in various climates using temperature data alone. Agric Meteorol 18:409–424CrossRef
Zurück zum Zitat Lozinskaja EA (1979) Evaluation of the Magnus formula linearization on the accuracy of evaporation from irrigated soil and transpiration. In: Symp KAPG, Isparenie počvennoj vlagi, Institut gidrologii SAN, Bratislava (in Russian) Lozinskaja EA (1979) Evaluation of the Magnus formula linearization on the accuracy of evaporation from irrigated soil and transpiration. In: Symp KAPG, Isparenie počvennoj vlagi, Institut gidrologii SAN, Bratislava (in Russian)
Zurück zum Zitat Miklánek P, Pekárová P (2006) Interception estimation of hornbeam and pine forest of the experimental microcatchments of the Institute of Hydrology SAS. J Hydrol Hydromech 54:123–136 (in Slovak with English summary) Miklánek P, Pekárová P (2006) Interception estimation of hornbeam and pine forest of the experimental microcatchments of the Institute of Hydrology SAS. J Hydrol Hydromech 54:123–136 (in Slovak with English summary)
Zurück zum Zitat Mitscherlich EA (1901) Untersuchungen über die physikalischen Bodeneingeschaften. Landw Jahrb 30(B):360–445 Mitscherlich EA (1901) Untersuchungen über die physikalischen Bodeneingeschaften. Landw Jahrb 30(B):360–445
Zurück zum Zitat Monin AJ, Obukhov AH (1954) Basic laws of turbulent mixing in boundary layer of atmosphere. Trudy Geofiz. In – ta 24, (151):163–186 (in Russian with English summary) Monin AJ, Obukhov AH (1954) Basic laws of turbulent mixing in boundary layer of atmosphere. Trudy Geofiz. In – ta 24, (151):163–186 (in Russian with English summary)
Zurück zum Zitat Monteith JL (1965) Evaporation and environment. Symp Soc Exp Biol 29:205–234 Monteith JL (1965) Evaporation and environment. Symp Soc Exp Biol 29:205–234
Zurück zum Zitat Novák V (1987) Estimation of soil–water extraction patterns by roots. Agric Water Manage 12:271–278CrossRef Novák V (1987) Estimation of soil–water extraction patterns by roots. Agric Water Manage 12:271–278CrossRef
Zurück zum Zitat Novák V (1995) Evaporation of water in nature and methods its estimation. Veda, Bratislava (in Slovak) Novák V (1995) Evaporation of water in nature and methods its estimation. Veda, Bratislava (in Slovak)
Zurück zum Zitat Novák V (2012) Evapotranspiration in the soil-plant-atmosphere system. Springer Science + Business Media, DordrechtCrossRef Novák V (2012) Evapotranspiration in the soil-plant-atmosphere system. Springer Science + Business Media, DordrechtCrossRef
Zurück zum Zitat Novák V, Hurtalová T (1987) Coefficient of water vapor turbulent transport to calculate potential evapotranspiration. Vodohosp Čas 35:3–21 (in Slovak with English abstract) Novák V, Hurtalová T (1987) Coefficient of water vapor turbulent transport to calculate potential evapotranspiration. Vodohosp Čas 35:3–21 (in Slovak with English abstract)
Zurück zum Zitat Novák V, Hurtalová T, Matejka F (1997) Sensitivity analysis of the Penman type equation for calculation of potential evapotranspiration. J Hydrol Hydromech 45:173–186 Novák V, Hurtalová T, Matejka F (1997) Sensitivity analysis of the Penman type equation for calculation of potential evapotranspiration. J Hydrol Hydromech 45:173–186
Zurück zum Zitat Penman HL (1948) Natural evaporation from open water, bare soil and grass. Proc Roy Soc Lond, Ser A, Math Phys Sci 193:120–145CrossRef Penman HL (1948) Natural evaporation from open water, bare soil and grass. Proc Roy Soc Lond, Ser A, Math Phys Sci 193:120–145CrossRef
Zurück zum Zitat Pereira LS, Allen RG, Smith M, Raes D (2015) Crop evapotranspiration estimation with FAO56: past and future. Agric Water Manage 147:4–20CrossRef Pereira LS, Allen RG, Smith M, Raes D (2015) Crop evapotranspiration estimation with FAO56: past and future. Agric Water Manage 147:4–20CrossRef
Zurück zum Zitat Shuttleworth WJ (1993) Evaporation. In: Maidmend DR (ed) Handbook of hydrology. Mc Graw-Hill, New York Shuttleworth WJ (1993) Evaporation. In: Maidmend DR (ed) Handbook of hydrology. Mc Graw-Hill, New York
Zurück zum Zitat Sogard H (1993) Advances in field measurements of evapotranspiration from a plant canopy. In: Becker A, Sevruk B, Lapin M (eds) Proceedings of symposium of precipitation and evaporation, Bratislava, Slovakia. Slovak Hydrometeorological Institute, Bratislava Sogard H (1993) Advances in field measurements of evapotranspiration from a plant canopy. In: Becker A, Sevruk B, Lapin M (eds) Proceedings of symposium of precipitation and evaporation, Bratislava, Slovakia. Slovak Hydrometeorological Institute, Bratislava
Zurück zum Zitat Strebel O, Renger M (1979) Geländeuntersuchungen zum wassernutzungdurch die wurzeln in abhängigkeit von klima, boden und kulturart. Mitteilng Dtsch Bodenkundl Gesselllsch 29:89–98 Strebel O, Renger M (1979) Geländeuntersuchungen zum wassernutzungdurch die wurzeln in abhängigkeit von klima, boden und kulturart. Mitteilng Dtsch Bodenkundl Gesselllsch 29:89–98
Zurück zum Zitat Szeicz G, Long IF (1969) Surface resistance of crop canopies. Water Resour Res 5:622–633CrossRef Szeicz G, Long IF (1969) Surface resistance of crop canopies. Water Resour Res 5:622–633CrossRef
Zurück zum Zitat Tomlain J (1990) Coefficients of evapotranspiration across Slovakia. Acta Met Univ Comeniane, Meteorológia XIX, SPN, Bratislava, pp 15–32 (in Slovak with English abstract) Tomlain J (1990) Coefficients of evapotranspiration across Slovakia. Acta Met Univ Comeniane, Meteorológia XIX, SPN, Bratislava, pp 15–32 (in Slovak with English abstract)
Zurück zum Zitat van Honert TH (1948) Water transport in plants as a catenary process. Discus Faraday Soc 3:146–153CrossRef van Honert TH (1948) Water transport in plants as a catenary process. Discus Faraday Soc 3:146–153CrossRef
Zurück zum Zitat Zubenok II (1976) Evaporation from continents. Gidrometizdat, Leningrad (in Russian) Zubenok II (1976) Evaporation from continents. Gidrometizdat, Leningrad (in Russian)
Metadaten
Titel
Evaporation
verfasst von
Viliam Novák
Hana Hlaváčiková
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-030-01806-1_13