Bonne, J.-L., Behrens, M., Meyer, H., Kipfstuhl, S., Rabe, B., Schönicke,
L., Steen-Larsen, H. C., and Werner, M.: Resolving the controls of water
vapour isotopes in the Atlantic sector, Nat. Commun., 10, 1–10,
2019. a
Cappa, C. D., Hendricks, M. B., DePaolo, D. J., and Cohen, R. C.: Isotopic
fractionation of water during evaporation, J. Geophys. Res.-Atmos., 108, 4525,
https://doi.org/10.1029/2003JD003597, 2003.
a,
b
Craig, H.: Isotopic variations in meteoric waters, Science, 133, 1702–1703,
1961. a
Craig, H. and Gordon, L. I.: Deuterium and oxygen 18 variations in the ocean and the marine atmosphere, in: Proc. Stable Isotopes
in Oceanographic Studies and Paleotemperatures, Spoleto, Italy, edited by: Tongiogi, E., V. Lishi e F., Pisa, Italy, 9–130, 1965.
a,
b,
c,
d,
e
Dansgaard, W.: Stable isotopes in precipitation, Tellus, 16, 436–468, 1964.
a,
b
Draxler, R. R. and Hess, G.: An overview of the HYSPLIT_4 modelling system for trajectories, Aust. Meteorol. Mag., 47, 295–308, 1998. a
Galewsky, J., Steen-Larsen, H. C., Field, R. D., Worden, J., Risi, C., and
Schneider, M.: Stable isotopes in atmospheric water vapor and applications to
the hydrologic cycle, Rev. Geophys., 54, 809–865, 2016. a
Gat, J. R.: Oxygen and hydrogen isotopes in the hydrologic cycle, Annu. Rev. Earth Pl. Sc., 24, 225–262, 1996. a
Gat, J. R., Klein, B., Kushnir, Y., Roether, W., Wernli, H., Yam, R., and Shemesh, A.: Isotope composition of air moisture over the Mediterranean Sea: an index of the air–sea interaction pattern, Tellus B, 55, 953–965, 2003.
a,
b,
c
Gonfiantini, R., Wassenaar, L. I., Araguas-Araguas, L., and Aggarwal, P. K.: A unified Craig-Gordon isotope model of stable hydrogen and oxygen isotope
fractionation during fresh or saltwater evaporation, Geochim.
Cosmochim. Ac., 235, 224–236, 2018.
a,
b,
c,
d,
e,
f
Horita, J. and Wesolowski, D. J.: Liquid-vapor fractionation of oxygen and
hydrogen isotopes of water from the freezing to the critical temperature,
Geochim. Cosmochim. Ac., 58, 3425–3437, 1994. a
Kanamitsu, M., Ebisuzaki, W., Woollen, J., Yang, S.-K., Hnilo, J., Fiorino, M., and Potter, G.: Ncep–doe amip-ii reanalysis (r-2), B. Am.
Meteorol. Soc., 83, 1631–1643, 2002.
a,
b
Korzoun, V. I., Sokolov, A. A., Budyko, M. I., Voskresensky, K. P., Kalinin, G. P.: World water balance and water resources of the earth (English)
Studies and Reports in Hydrology, UNESCO, no. 25/United Nations Educational, Scientific and Cultural Organization, 75 – Paris, France; International Hydrological Decade, USSR National Committee, Moscow, USSR, 1978. a
Merlivat, L.: Molecular diffusivities of
,
HD16O, and
in
gases, J. Chem. Phys., 69, 2864–2871, 1978.
a,
b,
c
Midhun, M., Lekshmy, P., and Ramesh, R.: Hydrogen and oxygen isotopic
compositions of water vapor over the Bay of Bengal during monsoon,
Geophys. Res. Lett., 40, 6324–6328, 2013.
a,
b
Noone, D. and Sturm, C.: Comprehensive dynamical models of global and regional water isotope distributions, in: Isoscapes, 195–219, Springer, Dordrecht, the Netherlands, 2010. a
Oki, T. and Kanae, S.: Global hydrological cycles and world water resources,
Science, 313, 1068–1072, 2006. a
Pfahl, S. and Wernli, H.: Lagrangian simulations of stable isotopes in water
vapor: An evaluation of nonequilibrium fractionation in the Craig-Gordon
model, J. Geophys. Res.-Atmos., 114, D20108,
https://doi.org/10.1029/2009jd012054, 2009.
a,
b
Prasanna, K., Ghosh, P., Bhattacharya, S., Rahul, P., Yoshimura, K., and
Anilkumar, N.: Moisture rainout fraction over the Indian Ocean during austral
summer based on
18O∕16Oratios of surface seawater, rainwater at latitude range of 10
∘ N-60
∘ S, J. Earth Syst. Sci., 127, 60,
https://doi.org/10.1007/s12040-018-0960-1, 2018.
a
Rahul, P., Prasanna, K., Ghosh, P., Anilkumar, N., and Yoshimura, K.: Stable
isotopes in water vapor and rainwater over Indian sector of Southern Ocean
and estimation of fraction of recycled moisture, Sci. Rep., 8, 7552,
https://doi.org/10.1038/s41598-018-25522-5, 2018.
a,
b,
c
Stein, A., Draxler, R., Rolph, G., Stunder, B., Cohen, M., and Ngan, F.:
NOAA's HYSPLIT atmospheric transport and dispersion modeling system,
B. Am. Meteorol. Soc., 96, 2059–2077, 2015. a
Trenberth, K. E.: Atmospheric moisture residence times and cycling:
Implications for rainfall rates and climate change, Climatic Change, 39,
667–694, 1998. a
Uemura, R., Matsui, Y., Yoshimura, K., Motoyama, H., and Yoshida, N.: Evidence of deuterium excess in water vapor as an indicator of ocean surface
conditions, J. Geophys. Res.-Atmos., 113, D19114,
https://doi.org/10.1029/2008jd010209, 2008.
a,
b,
c,
d,
e,
f,
g,
h,
i
Wei, Z., Lee, X., Aemisegger, F., Benetti, M., Berkelhammer, M., Casado, M., Caylor, K., Christner, E., Dyroff, C., García, O., and González, Y.: A global
database of water vapor isotopes measured with high temporal resolution
infrared laser spectroscopy, Scientific data, 6, 180302,
https://doi.org/10.1038/sdata.2018.302, 2019.
a
Yoshimura, K.: Stable water isotopes in climatology, meteorology, and
hydrology: A review, J. Meteorol. Soc. Jpn. Ser. II,
93, 513–533, 2015. a