Parte de libro

Estamos trabajando para incorporar este artículo al repositorio

Abstract:

Solar variability is governed by the solar dynamo, an intricate interplay between the sun's poloidal and toroidal magnetic field components. The most pronounced periodicity is the Schwabe cycle of about 11 years duration, and the Hale cycle, consisting of two successive Schwabe cycles. Another important cycle, with variable length, is named after Gleissberg. We describe the role of the two magnetic field components in these periodicities and forward suggestions for the solar mechanisms at work in driving these. We suggest that the Hale cycle is due to magnetohydrodynamic oscillations of the tachocline with a period of about 22 years. The time-behaviour of the longer components, along with information on the phase-relationship between them allows us to forecast the solar future behaviour. We expect a low next solar maximum, around 2014. After the 20th century's Grand Maximum, a Grand Minimum will start in one or two decades from present. It will last for at least one Gleissberg cycle. We describe the correlation of the two solar magnetic field components with terrestrial surface temperature variations for the period 1610 to 1970. About 40% of the gradual increase of terrestrial surface temperature is correlated with solar variability. Of this amount about two-thirds is correlated with toroidal field variations and that component can fully be explained quantitatively by the gradual increase of Total Solar Irradiance and the consequent feedback by evaporated gases. A yet unexplained fraction of ~30% is correlated with the poloidal field. After subtracting these components the residual smoothed global warming was 0.31 degrees in 1999. © 2011 Nova Science Publishers, Inc. All rights reserved.

Registro:

Documento: Parte de libro
Título:The variable solar dynamo and the forecast of solar activity; influence on terrestrial surface temperature
Autor:De Jager, C.; Duhau, S.
Filiación:Royal Netherlands Institute for Sea Research, 1790 AB Den Burg, Netherlands
Departamento de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, 1428, Bs. As, Argentina
Año:2011
Página de inicio:77
Página de fin:106
Título revista:Global Warming in the 21st Century
Título revista abreviado:Global Warming in the 21st Century
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97816172_v_n_p77_DeJager

Referencias:

  • Akasofu, S.I., Watanabe, H., Saito, T., (2005) Space Sci. Rev, 120, p. 27
  • Akasofu, S.I., (2010) J. Atm. And Solar-Terrestrial Phys, , submitted
  • Ananthakhrishnan, R., (1954) Proc. Indian Acad. Sci, 49, p. 72
  • Bahcall, J., Ulrich, R., (1971) Astrophys. J., 170, p. 593
  • Basu, S., (1997) Mon. Not. R. Astron. Soc., 288, p. 572
  • Bazilevskaya, G.A., Krainev, M.B., Makhmutov, V.S., (2000) J. Atm. Sol. Terr. Phys, 62. , the press
  • Benevolenskaya, E.J., (2003) Solar Phys, 181, p. 237
  • Berdyugina, S.V., Braun, P.A., Fluri, D.M., Solanki, S.K., (2005) Astron. Astrophys, 444, p. 947
  • Bonanno, A., Elstner, D., Rudiger, G., Belvedere, G., (2002) Astron. Atrophys, 390, p. 673
  • Bony, S., Colman, R., Kattsof, V.M., Allan, R.P., Bretherson, C.S., Dufresne, J.-L., Hall, A., Webb, M.J., (2006) J. of Climate, 19, p. 3445
  • Bravo, S., Steward, G., (1995) Ast. J., 446, pp. 431-434
  • Bravo, S., Stewart, G.A., Blanco-Cano, X., (1998) Solar Phys, 179, p. 223
  • Brun, A.S., (2004) Solar Phys, 220, p. 333
  • Caligari, P., Moreno-Insertis, F., Schussler, M., (1995) Astrophys. J., 441, p. 886
  • Callebaut, D.K., Makarov, V.I., (1992) Solar Phys, 141, p. 381
  • Callebaut, D.K., Khater, A.H., Proc. IAU Symposium 233 (2006) Solar Activity and its Magnetic Origin, pp. 9-16. , V. Bothmer and A. A.Hady (eds.), Cambridge Univ. Press, ISSN 1743-9213
  • Charbonneau, P., MacGregor, K.B., (1992) Astrophys. J, 397, pp. L63
  • Charbonneau, P., MacGregor, K.B., (1993) Astrophys. J., 403, pp. L. 87
  • Cliverd, M.A., Clarke, C., Risbeth, H., Clark, T.D.G., Ulrich, T., (2003) Astron. Geophys, 44, pp. 5.20
  • Cowling, T.G., (1945) Mon. Not. R. Astron. Soc, 105, p. 167
  • Damon, P.E., Sonnett, C.P., 'The sun in time (A92-46664 19-92) (1991), pp. 360-388. , University of Arizona Press; Damon, P.E., Peristikh, A.N., (1999) Geophys. Res. Lett, 26, p. 2469
  • Damon, P.E., Peristikh, A.N., (2000) Radiocarbon, 42, p. 137
  • De Jager, C., (2005) Space Sci. Rev, 120, p. 197
  • De Jager, C., Duhau, S., (2009) J. Atm. and Solar-Terr. Phys, 71, p. 194
  • De Jager, C., Duhau, S., (2009) J. Atm. and Solar-Terr. Phys, 71, p. 239
  • De Jager, C., Duhau, S., van Geel, B., (2010) J. Atm. Solar-Terr. Phys, , under review
  • De Jager, C., Usoskin, I.G., (2006) J. Atm. Sol.-Terr. Phys, 68, p. 2003
  • Dikpati, M., Charbonneau, P., (1999) Astrophys. J., 518, p. 508
  • Dikpati, M., Gilman, P.A., (2001) Astrphys. J., 559, p. 428
  • Dikpati, M., Gilman, P.A., (2007) Solar Phys, 241, p. 1
  • Dikpati, M., de Toma, G., Gilman, P.A., Arge, C., White, O.R., (2004) Astrophys. J., 601, p. 1136
  • Duhau, S., Chen, C., (1999) Annales AFA, 11, p. 62
  • Duhau, S., Chen, C., (2002) Geophys. Res. Lett, 29, p. 1628
  • Duhau, S., De Jager, C., (2008) Solar Phys, 250, p. 1
  • Duhau, S., De Jager, C., (2010) J. of Cosmetology, 8, p. 1983
  • D'Silva, S., Chaudhuri, A.R., (1993) Astron. Astrophys, 272, p. 621
  • Eddy, J.A., (1976) Science, 192, pp. 1189-1192
  • Feulner, G., Rahmstorf, S., (2010) Geophys. Res. Lett, 37, pp. L05707
  • Forgács-dajka, E., (2000) Astrn. Astrophys, 413, p. 1143
  • Forgács-dajka, E., Petrovay, P., (2001) Sol. Phys, 203, p. 195
  • Forgács-dajka, E., Petrovay, P., (2002) Astrn. Astrophys, 389, p. 629
  • Friedland, A., Gruzinov, A., (2003) Astroparticle Phys, 19, p. 575
  • Gaizauskas, V., Harvey, K.L., Harvey, J.W., Zwaan, C., (1983) Astrophys. J., 265, p. 1056
  • Gilman, P.A., (2000) Sol. Phys, 192, p. 27
  • Gilman, P.A., Dikpati, M., (2000) Astrophys. J., 528, p. 552
  • Gleissberg, W., (1944) Terr. Magn. Atmosph. Electricity, 49, p. 243
  • Gleissberg, W., (1958) Z. für Astrophys, 46, p. 219
  • Gnevyshev, M.N., Olh, A.I., (1948) Astronom. Zhurn, 25, p. 18
  • Hathaway, D., Rightmire, L., (2010) Science, 327, p. 1350
  • Hathaway, D.H., Wilson, R.M., Reichmann, E.J., (1999) J. Geophys. Res, 104, p. 22375388
  • Johnson, R.W., (2010) Astrophys. Space Sci, 326, pp. 181-189
  • Kosovichev, A.G., (1996) Astrophys. J., 469, pp. L61
  • Kostas, D.K., Bernd, G., Schmidt Quasi-Normal Modes of Stars and Black Holes Living Revies on Realtivity, , http://relativity.livingreviews.org/Articles/lrr-1999-2/
  • Krirova, N.A., Solanki, S.K., (2002) Astron. Astrophys, 394, p. 701
  • Kulmala, M., Riipinen, I., Nieminen, T., Hulkkonen, M., Sogacheva, L., Manninen, H.E., Paasonen, P., Kerminen, V.-M., (2010) Atm. Chem. Phys, 10, p. 1885
  • Le, G.M., Wang, J.-L., (2003) Chines J. Astron. Astrophys, 3, p. 391
  • Legrand, J.-P., Simon, P.A., (1989) Annales Geophysicae, 7 (6), pp. 565-578
  • Lillo, F., (2005) Physica A, 349, p. 667
  • Livingston, B.W., Penn, M., (2009), 90, pp. 257-264. , EOS; Makarov, V.I., Makarova, V.V., (1999) Proc. 9th European Meeting on Solar Physics, p. 121. , ESA SP 448, ed. A.P. Wilson
  • Makarov, V.I., Makarova, V.V., Callebaut, D.K., (2010) Links between polar and sunspot activities, , preprint
  • Mayaud, P.N., (1975) J. Geophys. Res, 80, p. 111
  • Mestel, L., Weiss, N.O., (1987) Mon. Not. R. Asron. Soc, 226, p. 123
  • Moreno-Insertis, F., (1994) Solar Magnetic fields, , M. Schüssler and W. Schmidt (eds), Cambridge Univ. Press
  • Moreno-Insertis, F., Caligari, P., Schuessler, M., (1995) Astrophys. J., 452, p. 894
  • Murphy, D.M., Solomon, S., Portmann, R.W., Rosenlof, K.H., Forster, P.M., Wong, T., (2009) J. Geophys. Res, 114, pp. D17107
  • Muscheler, R., Beer, J., Kromer, B., (2003) ICSI Symposium 2003, ESTEC Noordwijk, p. 305. , Wu, S.T., Obridko, V., Schmieder, B., Sykora, J. (eds)
  • Muscheler, R., Beer, J., Vonmoos, M., (2004) Quaterni. Sci. Rev, 23, p. 2101
  • Nagovytshin, Y.A., (2006) Astron. Lett, 32, p. 344
  • Nandy, D., (2002) Astrophys. Space Sci., 282, p. 209
  • Ogurtsov, M.G., Nagovitsyn, Y., Kocharov, G.E., Jungner, H., (2002) Solar Phys, 211, p. 371
  • Olh, A.I., (1966) Solnice Danie, 12, pp. 84-85
  • Ostriakov, V.M., Usoskin, I.G., (1990) Sol. Phys., 127, p. 405
  • Parker, E.N., (1993) Astrophys. J, 408, p. 707
  • Penn, M., Livingston, B.W., (2006) Astrophys. J., 649, pp. L45-L48
  • Pesnell, W.D., (2007), www.swpc.noaa.gov/SolarCycle/SC24/April_16_2007_table.pdf; Petrovay, K., Forgács-dajka, E., (2003) Sol. Phys, 205, p. 39. , Raspopov, O.M., Dergachev, V.A., Kolström, T.: 2004, Paleo209,127
  • Russell, C.T., (1975) Solar Phys, 42, p. 259
  • Russell, C.T., Mulligan, T., (1995) Geophys. Res. Lett, 22, p. 328
  • Ruzmaikin, A., (2000) Solar Phys, 192, p. 49
  • Ruzmaikin, A., (2001) Space Sci. Rev, 95, p. 43
  • Ruzmaikin, A., Feynman, J., Neugebauer, M., Smith, E.J., (2001) J. Geophys. Res, 106 A5, p. 8363
  • Schad, T.A., Penn, M.J., (2010) Solar Phys., 262, pp. 19-33
  • Schatten, K., Hoyt, D.V., (1998) Geophys. Res. Lett, 25, p. 599
  • Schmitt, D., Schüssler, M., Ferriz-Mas, A., (1996) Astron. Astrophys, 311, pp. L1-L4
  • Schove, D.J., (1955) J. Geophys. Res, 60, p. 127
  • Sello, S., (2001) New Astron, 8, p. 105
  • Sello, S., (2003) Astron. Astrophys, 377, p. 312
  • Shibahashi, H., (2006) Astron. Nachr/AN, 999, p. 789
  • Simon, P.A., Legrand, J.P., (1989) Annales Geophysicae, 7 (6), pp. 579-594
  • Song, W., Wang, J., (2005) Progr. in Astron, 23, p. 205
  • Soon, W.W., Yaskell, S.H., (2003) The Maunder Minimum and the variable sun-earth connection, , World Scientific Publishing, Singapore
  • Sonnett, C.P., (1983) Nature, 306, pp. 671-673
  • Spiegel, E.A., Zahn, J.-P., (1990) Astron. Astrophys, 265, p. 106
  • Svalgaard, L., Cliver, E.W., Kamide, Y., (2006) Geophys. Res. Lett, 32, pp. L01104
  • Tobias, S.M., Weiss, N.O., Beer, J., (2004) Astron. Geophys, 45, pp. 2.6
  • Usoskin, I.G., Berdyugina, S.V., Poutanen, J., (2005) Astron. Astrophys, 441, p. 34
  • Usoskin, I.G., Valtonen, R., Tanskanen, P.J., Aurela, A.M., (2009) Astrophys, J., 700, pp. L154
  • Usoskin, I.G., Solanki, S.K., Schüssler, M., Alanko, K., (2003) Phys. Rev. Lett, 91, pp. 211101-211101
  • Wagner, G., Laj, C., Beer, J., Kissel, C., Muscheler, R., Masarik, J., Synal, H.-A., (2001) Earth Plan. Sci. Lett, 193, p. 2001

Citas:

---------- APA ----------
De Jager, C. & Duhau, S. (2011) . The variable solar dynamo and the forecast of solar activity; influence on terrestrial surface temperature. Global Warming in the 21st Century, 77-106.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97816172_v_n_p77_DeJager [ ]
---------- CHICAGO ----------
De Jager, C., Duhau, S. "The variable solar dynamo and the forecast of solar activity; influence on terrestrial surface temperature" . Global Warming in the 21st Century (2011) : 77-106.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97816172_v_n_p77_DeJager [ ]
---------- MLA ----------
De Jager, C., Duhau, S. "The variable solar dynamo and the forecast of solar activity; influence on terrestrial surface temperature" . Global Warming in the 21st Century, 2011, pp. 77-106.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97816172_v_n_p77_DeJager [ ]
---------- VANCOUVER ----------
De Jager, C., Duhau, S. The variable solar dynamo and the forecast of solar activity; influence on terrestrial surface temperature. Global Warming in the 21st Century. 2011:77-106.
Available from: https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97816172_v_n_p77_DeJager [ ]