Zobrazeno 1 - 10
of 75
pro vyhledávání: '"S. Camici"'
Autor:
S. Camici, G. Giuliani, L. Brocca, C. Massari, A. Tarpanelli, H. H. Farahani, N. Sneeuw, M. Restano, J. Benveniste
Publikováno v:
Geoscientific Model Development, Vol 15, Pp 6935-6956 (2022)
This paper presents an innovative approach, STREAM – SaTellite-based Runoff Evaluation And Mapping – to derive daily river discharge and runoff estimates from satellite observations of soil moisture, precipitation, and total water storage anomali
Externí odkaz:
https://doaj.org/article/9a8e46cf795f4bf68dba0d8c5ef1ffeb
Publikováno v:
Natural Hazards and Earth System Sciences, Vol 22, Pp 2473-2489 (2022)
Inundation is one of the major natural hazards in Europe. The evaluation of the flood hazard and risk is not straightforward mainly due to the monitoring system that is poor or not uniformly distributed in the territory. The ESA Earth Observation Pro
Externí odkaz:
https://doaj.org/article/1958b379f4d04bd8b382d15374a88621
Publikováno v:
Hydrology and Earth System Sciences, Vol 26, Pp 1527-1543 (2022)
In a warming climate, periods with lower than average precipitation will increase in frequency and intensity. During such periods, known as meteorological droughts, the decline in annual runoff may be proportionally larger than the corresponding decl
Externí odkaz:
https://doaj.org/article/8127280160fe4f969f6733f9cbdeec07
Publikováno v:
Hydrology and Earth System Sciences, Vol 25, Pp 5589-5601 (2021)
Determining the spatiotemporal variability in the annual streamflow volume plays a relevant role in hydrology with regard to improving and implementing sustainable and resilient policies and practices of water resource management. This study investig
Externí odkaz:
https://doaj.org/article/3b29c62399bf4a7c805c629daf8cc7ae
Publikováno v:
Hydrology and Earth System Sciences, Vol 25, Pp 653-669 (2021)
Future climate scenarios for the Mediterranean region indicate a possible decrease in annual precipitation associated with an intensification of extreme rainfall events in the coming years. A major challenge in this region is to evaluate the impacts
Externí odkaz:
https://doaj.org/article/07a220c831d54ed3b3dd4d36ea33590f
Publikováno v:
Hydrology and Earth System Sciences, Vol 24, Pp 4869-4885 (2020)
The global availability of satellite rainfall products (SRPs) at an increasingly high temporal and spatial resolution has made their exploitation in hydrological applications possible, especially in data-scarce regions. In this context, understanding
Externí odkaz:
https://doaj.org/article/db8289797d064f79bb8da82d08084d54
Autor:
L. Brocca, P. Filippucci, S. Hahn, L. Ciabatta, C. Massari, S. Camici, L. Schüller, B. Bojkov, W. Wagner
Publikováno v:
Earth System Science Data, Vol 11, Pp 1583-1601 (2019)
Long-term gridded precipitation products are crucial for several applications in hydrology, agriculture and climate sciences. Currently available precipitation products suffer from space and time inconsistency due to the non-uniform density of ground
Externí odkaz:
https://doaj.org/article/101a0a0b56c848e280c382d4f5e826be
Publikováno v:
Hydrology and Earth System Sciences, Vol 16, Iss 11, Pp 4375-4386 (2012)
In northern Morocco are located most of the dams and reservoirs of the country, while this region is affected by severe rainfall events causing floods. To improve the management of the water regulation structures, there is a need to develop rainfall
Externí odkaz:
https://doaj.org/article/9d3a40aa891041ab8f419cbcbce796a7
Autor:
F. Acquaotta[21, 36], S. Agostini[2], L. Alderighi[18, 14], P. Allasia[16], G. Amori[23], V. Andreoli[26], F. Ardizzone[16], J. Arduini[8], V. Artale[4], E. Aruffo[5], I. Baneschi[2], C. Barbante[7], G. Barbato[27], S. Barbetta[14], C. Baroni[18, 2, 29], M. Bencardino[6], S. Bertotto[14, 21], P. Bonasoni[3], M. Borga[15], C. Boschi[2], L. Brocca[14], M. Brunetti[3], M. Busetto[3], C. Calfapietra[24], F. Calzolari[3], S. Camici[14], D. Canone[12], A. Carton[29, 20], L. Carturan[29, 19], C. Cassardo[26], L. Cavicchia[27], C. Cerrato[22], T. Chiti[30], L. Ciabatta[14], M. Cignetti[14], C. Corradini[14], E. Cremonese[11], A. Crespi[9], P. Cristofanelli[3], F. D'Amore[6], F. Dallo[7], A. Dell'Aquila[4], A. di Sarra[4], P. Di Carlo[5], G. Di Vincenzo[2], A. Dini[2], F. Diotri[11], D. Dolia[35], M. Doveri[2], S. Ferraris[12], G. Filippa[11], S. Fratianni[21, S. Gabellani[35], J. Gabrieli[7], S. Gennaro[18], S. Giamberini[2], M. Giardino[29, D. Giordan[14], D. Gisolo[12], O. Gavrichkova[24], S. Gualdi[27], H. Huwald[13], A. Irace[2], M. Isabellon[11], T. C. Landi[3], A. Langone[10], M. Laurenzi[2], S. Laviola[3], M. Lelli[2], V. Levizzani[3], M. Magnani[25, 26], M. Maione[8], V. Manara[3], M. Manunta[17], L. Marchi[37], A. Marinoni[3], G. Masetti[2], M. Mattioni[24], M. Mazzola[3], M. Maugeri[3, D. Meloni[4], M. Menichini[2], P. Mercogliano[27], M. Montesarchio[27], T. Moramarco[14], U. Morra di Cella[11], P. Mosca[25], M. C. Moscatelli[30], L. Naitza[3], B. Nisi[2], G. Pace[4], E. Palazzi[1], M. Pennisi[2], L. Perotti[29, G. Persia[1, 18], S. Piacentino[4], G. Piazzi[35], R. Pini[31], N. Pirrone[6], P. Pogliotti[11], G. Pretto[24, 32], M. Previati[12], A. Provenzale[2], D. Putero[3], B. Raco[2], M. Raffa[27], A. Reder[27], F. Roccato[3], M.C. Salvatore[18, A. Scartazza[34], E. Scoccimarro[28], D. Sferlazzo[4], F. Sprovieri[6], S. Terzago[1], P. Trisolino[3], E. Trumpy[2], M. Vardè[7], J. von Hardenberg[1], R. Viterbi[22, M. Zampieri[27, 37], A. Zanetti[10], T. Zanoner[29, M. Zorzi[18
Publikováno v:
Pisa: CNR-IGG Area della Ricerca di Pisa, 2020
info:cnr-pdr/source/autori:F. Acquaotta[21,36], S. Agostini[2], L. Alderighi[18,14], P. Allasia[16], G. Amori[23], V. Andreoli[26], F. Ardizzone[16], J. Arduini[8], V. Artale[4], E. Aruffo[5], I. Baneschi[2], C. Barbante[7], G. Barbato[27], S. Barbetta[14], C. Baroni[18,2,29], M. Bencardino[6], S. Bertotto[14,21], P. Bonasoni[3], M. Borga[15], C. Boschi[2], L. Brocca[14], M. Brunetti[3], M. Busetto[3], C. Calfapietra[24], F. Calzolari[3], S. Camici[14], D. Canone[12], A. Carton[29,20], L. Carturan[29,19], C. Cassardo[26], L. Cavicchia[27], C. Cerrato[22], T. Chiti[30], L. Ciabatta[14], M. Cignetti[14], C. Corradini[14], E. Cremonese[11], A. Crespi[9], P. Cristofanelli[3], F. D'Amore[6], F. Dallo[7], A. Dell'Aquila[4], A. di Sarra[4], P. Di Carlo[5], G. Di Vincenzo[2], A. Dini[2], F. Diotri[11], D. Dolia[35], M. Doveri[2], S. Ferraris[12], G. Filippa[11], S. Fratianni[21,36], S. Gabellani[35], J. Gabrieli[7], S. Gennaro[18], S. Giamberini[2], M. Giardino[29,21], D. Giordan[14], D. Gisolo[12], O. Gavrichkova[24], S. Gualdi[27], H. Huwald[13], A. Irace[2], M. Isabellon[11], T. C. Landi[3], A. Langone[10], M. Laurenzi[2], S. Laviola[3], M. Lelli[2], V. Levizzani[3], M. Magnani[25,26], M. Maione[8], V. Manara[3], M. Manunta[17], L. Marchi[37], A. Marinoni[3], G. Masetti[2], M. Mattioni[24], M. Mazzola[3], M. Maugeri[3,9], D. Meloni[4], M. Menichini[2], P. Mercogliano[27], M. Montesarchio[27], T. Moramarco[14], U. Morra di Cella[11], P. Mosca[25], M. C. Moscatelli[30], L. Naitza[3], B. Nisi[2], G. Pace[4], E. Palazzi[1], M. Pennisi[2], L. Perotti[29,21], G. Persia[1,18], S. Piacentino[4], G. Piazzi[35], R. Pini[31], N. Pirrone[6], P. Pogliotti[11], G. Pretto[24,32], M. Previati[12], A. Provenzale[2], D. Putero[3], B. Raco[2], M. Raffa[27], A. Reder[27], F. Roccato[3], M.C. Salvatore[18,2,29], A. Scartazza[34], E. Scoccimarro[28], D. Sferlazzo[4], F. Sprovieri[6], S. Terzago[1], P. Trisolino[3], E. Trumpy[2], M. Vardè[7], J. von Hardenberg[1], R. Viterbi[22,2], M. Zampieri[27,37], A. Zanetti[10], T. Zanoner[29,14,20], M. Zorzi[18,29]/titolo:Climate and environmental changes in Italian mountains/editore: /anno:2020
info:cnr-pdr/source/autori:F. Acquaotta[21,36], S. Agostini[2], L. Alderighi[18,14], P. Allasia[16], G. Amori[23], V. Andreoli[26], F. Ardizzone[16], J. Arduini[8], V. Artale[4], E. Aruffo[5], I. Baneschi[2], C. Barbante[7], G. Barbato[27], S. Barbetta[14], C. Baroni[18,2,29], M. Bencardino[6], S. Bertotto[14,21], P. Bonasoni[3], M. Borga[15], C. Boschi[2], L. Brocca[14], M. Brunetti[3], M. Busetto[3], C. Calfapietra[24], F. Calzolari[3], S. Camici[14], D. Canone[12], A. Carton[29,20], L. Carturan[29,19], C. Cassardo[26], L. Cavicchia[27], C. Cerrato[22], T. Chiti[30], L. Ciabatta[14], M. Cignetti[14], C. Corradini[14], E. Cremonese[11], A. Crespi[9], P. Cristofanelli[3], F. D'Amore[6], F. Dallo[7], A. Dell'Aquila[4], A. di Sarra[4], P. Di Carlo[5], G. Di Vincenzo[2], A. Dini[2], F. Diotri[11], D. Dolia[35], M. Doveri[2], S. Ferraris[12], G. Filippa[11], S. Fratianni[21,36], S. Gabellani[35], J. Gabrieli[7], S. Gennaro[18], S. Giamberini[2], M. Giardino[29,21], D. Giordan[14], D. Gisolo[12], O. Gavrichkova[24], S. Gualdi[27], H. Huwald[13], A. Irace[2], M. Isabellon[11], T. C. Landi[3], A. Langone[10], M. Laurenzi[2], S. Laviola[3], M. Lelli[2], V. Levizzani[3], M. Magnani[25,26], M. Maione[8], V. Manara[3], M. Manunta[17], L. Marchi[37], A. Marinoni[3], G. Masetti[2], M. Mattioni[24], M. Mazzola[3], M. Maugeri[3,9], D. Meloni[4], M. Menichini[2], P. Mercogliano[27], M. Montesarchio[27], T. Moramarco[14], U. Morra di Cella[11], P. Mosca[25], M. C. Moscatelli[30], L. Naitza[3], B. Nisi[2], G. Pace[4], E. Palazzi[1], M. Pennisi[2], L. Perotti[29,21], G. Persia[1,18], S. Piacentino[4], G. Piazzi[35], R. Pini[31], N. Pirrone[6], P. Pogliotti[11], G. Pretto[24,32], M. Previati[12], A. Provenzale[2], D. Putero[3], B. Raco[2], M. Raffa[27], A. Reder[27], F. Roccato[3], M.C. Salvatore[18,2,29], A. Scartazza[34], E. Scoccimarro[28], D. Sferlazzo[4], F. Sprovieri[6], S. Terzago[1], P. Trisolino[3], E. Trumpy[2], M. Vardè[7], J. von Hardenberg[1], R. Viterbi[22,2], M. Zampieri[27,37], A. Zanetti[10], T. Zanoner[29,14,20], M. Zorzi[18,29]/titolo:Climate and environmental changes in Italian mountains/editore: /anno:2020
The NextData project (2012-2018) provided quantitative information on the current state and on past, present and future climate and environmental changes in Italian mountains. The multidisciplinary approach combined field monitoring, satellite observ
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=cnr_________::cc2e746e787976482251f36e9c3368db
https://publications.cnr.it/doc/467288
https://publications.cnr.it/doc/467288
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