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In collaboration with
Duke University (U.S.A.)
ESSC, Reading (U.K.)
ISAC-CNR, Turin (I)
MIT (U.S.A.)
University of Padua (I)


Biological and climate processes:
coupled dynamics and scales of interaction


Venice, June 11-18 2010


Istituto Veneto di Scienze Lettere ed Arti, Palazzo Cavalli Franchetti

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Deadline for application was 30 April, 2010

 
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References for lectures

Michael Ghil

Lecture 1

110.    Ghil, M., 1994:
Cryothermodynamics: The chaotic dynamics of paleoclimate, Physica D, 77, 130–159.
+, in book form

2.    Ghil, M., R. Benzi, and G. Parisi (Eds.), 1985:
Turbulence and Predictability in Geophysical Fluid Dynamics and Climate Dynamics, North-Holland Publ. Co., Amsterdam/New York/Oxford/ Tokyo, 449 pp.

3.    Ghil, M., and S. Childress, 1987:
Topics in Geophysical Fluid Dynamics: Atmospheric Dynamics, Dynamo Theory and Climate Dynamics, Springer-Verlag, New York/Berlin/London/Paris/ Tokyo, 485 pp.

177.    Ghil, M., 2001:
Hilbert problems for the geosciences in the 21st century, Nonlin. Proc. Geophys., 8, 211–222.

182.    Ghil, M., 2002:
Natural climate variability, in Encyclopedia of Global Environmental Change, T. Munn  (Ed.), Vol. 1, J. Wiley & Sons, Chichester/New York, pp. 544–549.

188.    Ghil, M., 2003:
Climate variability: Nonlinear aspects, in Encyclopedia of Atmospheric Sciences, J. R. Holton, J. Pyle, and J. A. Curry (Eds.), Academic Press, pp. 432–438.


Lecture 2


249.    Ghil, M., I. Zaliapin, and B. Coluzzi, 2008:
Boolean delay equations: A simple way of looking at complex systems, Physica D, 237, 2967–2986, doi: 10.1016/j.physd.2008.07.006.


Lecture 3

189.    Ghil, M., M. R. Allen, M. D. Dettinger, K. Ide, D. Kondrashov, M. E. Mann, A. W. Robertson, A. Saunders, Y. Tian, F. Varadi, and P. Yiou, 2002:
Advanced spectral methods for climatic time series, Rev. Geophys., 40(1), pp. 3.1–3.41, doi: 10.1029/2000RG000092.

+, on CERES-ERTI web site, supplementary materials in connection with a teaching wkshop, Atelier 01-S1: Méthodes quantitatives en environnement: analyse des données http://www.environnement.ens.fr/atelier1.html


Lecture 4

246.    Ghil, M., M. D. Chekroun, and E. Simonnet, 2008:
Climate dynamics and fluid mechanics: Natural variability and related uncertainties,
invited survey paper for Special Issue on “The Euler Equations: 250 Years On,”
Physica D, 237, 2111–2126, doi:10.1016/j.physd.2008.03.036.



Gabriel G. Katul

Lecture 1

Brander, J.A. and S. Taylor, 1998, The simple economics of Easter Island: A Ricardo-Malthus model of Renewable Resource, The American Economic Review, 88, 119-138.


Lecture 2

Katul, G.G., S. Palmroth, and R. Oren, 2009, Leaf stomatal responses to vapour pressure deficit under current and CO2-enriched atmosphere explained by the economics of gas exchange, Plant, Cell, and Environment, 32, 968-979

Katul, G.G., S. Manzoni, S. Palmroth, and R. Oren, 2010, A stomatal optimization theory to describe the effects of atmospheric CO2 on leaf photosynthesis and transpiration, Annals of Botany, 105(3):431-442


Lecture 3

Raupach, M.R., and A. S. Thom, 1981, 1981, Turbulence in and above Plant Canopies, Annual Review of Fluid Mechanics, 13: 97-129

Siqueira, M.B., and G.G. Katul, 2010, An analytical model for the distribution of CO2 sources and sinks, fluxes, and mean concentration within the roughness sub-layer, Boundary-Layer Meteorology, doi 10.1007/s10546-009-9453-8

Katul, G.G., and J.D. Albertson, 1999, Modeling CO2 sources, sinks, and fluxes within a forest canopy, Journal of Geophysical Research, 104, 6081-6091.


Lecture 4

Allen MR and Ingram WJ (2002) Constraints on future changes in climate and the hydrological cycle. Nature 419: 224–232.

BrutsaertW and Parlange MB (1998) Hydrologic cycle explains the evaporation paradox. Nature 396: 30.

Cox PM, Betts RA, Jones CD, Spall SA, and Totterdell IJ (2000) Acceleration of global warming due to carbon-cycle feedbacks in a coupled climate system. Nature 408: 184–187.

Gedney N, PM Cox, RA Betts, O. Boucher, C. Huntingford and P. A. Stott (2006) Detection of a direct carbon dioxide effect in continental river runoff records, Nature 439: 835-838.

Jackson RB, Jobbagy EG, Avissar R, Roy SB, Barrett DJ, Cook CW, Farley KA, le Maitre DC, McCarl BA, and Murray BC (2005) Trading water for carbon with biological sequestration. Science 310: 1944–1947.
Katul G and Novick K. (2009) Evapotranspiration. In: Gene E. Likens, (Editor) Encyclopedia of Inland Waters. Volume 1, pp. 661-667 Oxford: Elsevier

Milly PCD, Dunne KA, and Veccia AV (2005) Global pattern of trends in streamflow and water availability in a changing climate. Nature 438: 347–350.

Peterson TC, Golubev VS, and Grolsman PYa (1995) Evaporation losing its strength. Nature 377: 687–688.

Ramanathatn V, Crutzen PJ, Kiehl JT, and Rosenfeld D (2001) Aerosols, climate and the hydrological cycle. Science 294: 2119–2124.

Reid CD, Maherali, H, Johnson HB, Smith SD, Wullschleger SD, and Jackson RB (2003) On the relationship between stomatal characters and atmospheric CO2. Geophysical Research Letters 30: 1983–1986.

Roderick ML and Farquhar GD (2002) The cause of decreased pan evaporation over the past 50 years. Science 298: 1410–1411.

Wild M, Gilgen H, Roesch A, Ohmura A, Long CN, Dutton EG, Forgan B, Kallis A, Russak V, and Tsvetkov A (2005) From dimming to brightening:Decadal changes in solar radiation at Earth’s surface. Science 308: 847–850.


Daniel Rothman

Rothman, D. H. and Forney, D. C.,
Response to Comment on `Physical model for the decay and preservation of marine organic carbon',
Science 319, doi:10.1126/science.1148678, March 21, 2008

Rothman, D.H. and Forney, D. C., "Physical model for the decay and preservation of marine organic carbon," Science 316, 1325--1328, June 1, 2007.

 


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