Partitioning evapotranspiration using stable isotopes and Lagrangian dispersion analysis in a small agricultural catchment

被引:6
作者
Hogan, Patrick [1 ]
Parajka, Juraj [1 ,2 ]
Heng, Lee [3 ]
Strauss, Peter [4 ]
Bloeschl, Guenter [1 ,2 ]
机构
[1] TU Wien, Ctr Water Resource Syst, Karlspl 13, A-1040 Vienna, Austria
[2] TU Wien, Inst Hydraul Engn & Water Resources Management, Karlspl 13-222, A-1040 Vienna, Austria
[3] IAEA, Joint FAO IAEA Div Nucl Tech Food & Agr, Soil & Water Management & Crop Nutr Subprogramme, A-1400 Vienna, Austria
[4] Fed Agcy Water Management, Inst Land & Water Management Res, Pollnbergstr 1, A-3252 Petzenkirchen, Austria
关键词
Evapotranspiration partitioning; Stable isotopes; Lagrangian dispersion theory; WINTER-WHEAT; SAP FLOW; SOURCE DISTRIBUTIONS; SOIL EVAPORATION; CROP COEFFICIENT; EDDY COVARIANCE; FOREST CANOPY; WATER; TRANSPIRATION; MAIZE;
D O I
10.2478/johh-2020-0009
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Measuring evaporation and transpiration at the field scale is complicated due to the heterogeneity of the environment, with point measurements requiring upscaling and field measurements such as eddy covariance measuring only the evapotranspiration. During the summer of 2014 an eddy covariance device was used to measure the evapotranspiration of a growing maize field at the HOAL catchment. The stable isotope technique and a Lagrangian near field theory (LNF) were then utilized to partition the evapotranspiration into evaporation and transpiration, using the concentration and isotopic ratio of water vapour within the canopy. The stable isotope estimates of the daily averages of the fraction of evapotranspiration (Ft) ranged from 43.0-88.5%, with an average value of 67.5%, while with the LNF method, Ft was found to range from 52.3-91.5% with an average value of 73.5%. Two different parameterizations for the turbulent statistics were used, with both giving similar R-2 values, 0.65 and 0.63 for the Raupach and Leuning parameterizations, with the Raupach version performing slightly better. The stable isotope method demonstrated itself to be a more robust method, returning larger amounts of useable data, however this is limited by the requirement of much more additional data.
引用
收藏
页码:134 / 143
页数:10
相关论文
共 50 条
[1]   Evaporative loss from irrigated interrows in a highly advective semi-arid agricultural area [J].
Agam, Nurit ;
Evett, Steven R. ;
Tolk, Judy A. ;
Kustas, William P. ;
Colaizzi, Paul D. ;
Alfieri, Joseph G. ;
Mckee, Lynn G. ;
Copeland, Karen S. ;
Howell, Terry A. ;
Chavez, Jose L. .
ADVANCES IN WATER RESOURCES, 2012, 50 :20-30
[2]  
Aubinet M., 2012, PRACTICAL GUIDE MEAS
[3]   The Hydrological Open Air Laboratory (HOAL) in Petzenkirchen: a hypothesis-driven observatory [J].
Bloeschl, G. ;
Blaschke, A. P. ;
Broer, M. ;
Bucher, C. ;
Carr, G. ;
Chen, X. ;
Eder, A. ;
Exner-Kittridge, M. ;
Farnleitner, A. ;
Flores-Orozco, A. ;
Haas, P. ;
Hogan, P. ;
Amiri, A. Kazemi ;
Oismueller, M. ;
Parajka, J. ;
Silasari, R. ;
Stadler, P. ;
Strauss, P. ;
Vreugdenhil, M. ;
Wagner, W. ;
Zessner, M. .
HYDROLOGY AND EARTH SYSTEM SCIENCES, 2016, 20 (01) :227-255
[4]  
Craig H., 1965, Stable Isotopes in Oceanographic Studies and Paleotemperatures, P9
[5]  
Denmead O. T., 1985, The forest-atmosphere interaction. Proceedings of the forest environmental measurements conference held at Oak Ridge, Tennessee, October 23-28, 1983, P421
[6]   Partitioning evapotranspiration into soil evaporation and transpiration using a modified dual crop coefficient model in irrigated maize field with ground-mulching [J].
Ding, Risheng ;
Kang, Shaozhong ;
Zhang, Yanqun ;
Hao, Xinmei ;
Tong, Ling ;
Du, Taisheng .
AGRICULTURAL WATER MANAGEMENT, 2013, 127 :85-96
[7]   Partitioning evapotranspiration - Testing the Craig and Gordon model with field measurements of oxygen isotope ratios of evaporative fluxes [J].
Dubbert, Maren ;
Cuntz, Matthias ;
Piayda, Arndt ;
Maguas, Cristina ;
Werner, Christiane .
JOURNAL OF HYDROLOGY, 2013, 496 :142-153
[8]   COMPARISON OF MODELED AND OBSERVED ENVIRONMENTAL-INFLUENCES ON THE STABLE OXYGEN AND HYDROGEN ISOTOPE COMPOSITION OF LEAF WATER IN PHASEOLUS-VULGARIS L [J].
FLANAGAN, LB ;
COMSTOCK, JP ;
EHLERINGER, JR .
PLANT PHYSIOLOGY, 1991, 96 (02) :588-596
[9]   2H isotopic flux partitioning of evapotranspiration over a grass field following a water pulse and subsequent dry down [J].
Good, Stephen P. ;
Soderberg, Keir ;
Guan, Kaiyu ;
King, Elizabeth G. ;
Scanlon, Todd M. ;
Caylor, Kelly K. .
WATER RESOURCES RESEARCH, 2014, 50 (02) :1410-1432
[10]   Riparian zone evapotranspiration estimation from diurnal groundwater level fluctuations [J].
Gribovszki, Zoltan ;
Kalicz, Peter ;
Szilagyi, Jozsef ;
Kucsara, Mihaly .
JOURNAL OF HYDROLOGY, 2008, 349 (1-2) :6-17