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49581by Radosavljevic, Boris, Lantuit, Hugues, Pollard, Wayne, Overduin, Paul, Couture, N. J., Sachs, Torsten, Helm, Veit, Fritz, Michael“... to -1.3 m·a-1 in the period 2000-2011. Ice-rich coastal sections most exposed to wave attack exhibited...”
Published in Estuaries and Coasts (2015)
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49582by Radosavljevic, Boris, Lantuit, Hugues, Fritz, Michael, Overduin, Paul, Krautblatter, Michael“... infrastructure, but may also supply sediment to the shoreline, thus protecting it from wave attack and storm...”
Published 2013
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49583“... for stationary wave genesis (e.g. the Tibetan plateau, the Kuroshio and the Gulf Stream)....”
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49584“... for stationary wave genesis (e.g. the Tibetan plateau, the Kuroshio and the Gulf Stream)....”
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49585“... for stationary wave genesis (e.g. the Tibetan plateau, the Kuroshio and the ......”
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49586by M. C. Pitts, L. R. Poole, A. Dörnbrack, L. W. Thomason“... 2009–14 January 2010) was characterized by frequent mountain wave ice clouds that nucleated widespread...”
Published in Atmospheric Chemistry and Physics (2011)
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49587“.... In contrast, Ber sea-ice loss is associated with a circumglobal wave train downstream of the Bering Sea...”
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49588by Rochetin, Nicolas“...). The parameterizations for gravity wave drag and subgrid-scale orography are also switched off, otherwise the model...”
Published 2021
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49589by Rochetin, Nicolas“...). The parameterizations for gravity wave drag and subgrid-scale orography are also switched off, otherwise the model...”
Published 2021
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49590by M. Kageyama, L. C. Sime, M. Sicard, M.-V. Guarino, A. de Vernal, R. Stein, D. Schroeder, I. Malmierca-Vallet, A. Abe-Ouchi, C. Bitz, P. Braconnot, E. C. Brady, J. Cao, M. A. Chamberlain, D. Feltham, C. Guo, A. N. LeGrande, G. Lohmann, K. J. Meissner, L. Menviel, P. Morozova, K. H. Nisancioglu, B. L. Otto-Bliesner, R. O'ishi, S. Ramos Buarque, D. Salas y Melia, S. Sherriff-Tadano, J. Stroeve, X. Shi, B. Sun, R. A. Tomas, E. Volodin, N. K. H. Yeung, Q. Zhang, Z. Zhang, W. Zheng, T. Ziehn“... for the inter-model differences are different phasing of the up and down short-wave anomalies over the Arctic...”
Published in Climate of the Past (2021)
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49591by M. Kageyama, L. C. Sime, M. Sicard, M.-V. Guarino, A. de Vernal, R. Stein, D. Schroeder, I. Malmierca-Vallet, A. Abe-Ouchi, C. Bitz, P. Braconnot, E. C. Brady, J. Cao, M. A. Chamberlain, D. Feltham, C. Guo, A. N. LeGrande, G. Lohmann, K. J. Meissner, L. Menviel, P. Morozova, K. H. Nisancioglu, B. L. Otto-Bliesner, R. O'ishi, S. Ramos Buarque, D. Salas y Melia, S. Sherriff-Tadano, J. Stroeve, X. Shi, B. Sun, R. A. Tomas, E. Volodin, N. K. H. Yeung, Q. Zhang, Z. Zhang, W. Zheng, T. Ziehn“...-model differences are different phasing of the up and down short-wave anomalies over the Arctic Ocean...”
Published in Climate of the Past (2021)
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49592by Purkey, Sarah G., Johnson, Gregory C., Talley, Lynne D., Sloyan, Bernadette M., Wijffels, Susan E., Smethie, William M., Mecking, Sabine, Katsumata, Katsuro“... timescales than the dynamically driven, wave‐propagated warming signal. We quantify the contribution...”
Published in Journal of Geophysical Research: Oceans (2019)
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49593by Kageyama, M, Sime, LC, Sicard, M, Guarino, M-V, de Vernal, A, Stein, R, Schroeder, D, Malmierca-Vallet, I, Abe-Ouchi, A, Bitz, C, Braconnot, P, Brady, EC, Cao, J, Chamberlain, MA, Feltham, D, Guo, C, LeGrande, AN, Lohmann, G, Meissner, KJ, Menviel, L, Morozova, P, Nisancioglu, KH, Otto-Bliesner, BL, O'ishi, R, Ramos Buarque, S, Salas y Melia, D, Sherriff-Tadano, S, Stroeve, J, Shi, X, Sun, B, Tomas, RA, Volodin, E, Yeung, NKH, Zhang, Q, Zhang, Z, Zheng, W, Ziehn, T“...-model differences are different phasing of the up and down short-wave anomalies over the Arctic Ocean...”
Published 2021
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49594by Kageyama, Masa, Sime, Louise C., Sicard, Marie, Guarino, Maria-Vittoria, De Vernal, A, Stein, Ruediger, Schroeder, david, Malmierca-Vallet, Irene, Abe-Ouchi, Ayako, Bitz, Cecilia M., Braconnot, Pascale, Brady, Esther C., Cao, Jian, Chamberlain, Matthew, Feltham, Danny, Guo, Chuncheng, Legrande, Allegra N., Lohmann, Gerrit, Meissner, Katrin, Menviel, Laurie, Nisancioglu, Kerim Hestnes, Otto-Bliesner, Bette L., O'ishi, Ryouta, Ramos Buarque, Silvan, Salas y Mélia, David, Sherriff-Tadano, Sam, Stroeve, Julienne C., Shi, Xiaoxu, Sun, Bo, Thomas, Robert, Volodin, Evgeny, Yeung, Nicholas K.H., Zhang, Qiong, Zhang, Zhongshi, Zheng, Weipeng, Ziehn, Tilo“...-model differences are different phasing of the up and down short-wave anomalies over the Arctic Ocean...”
Published in Climate of the Past (2021)
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49595by Hallmann, N., Camoin, G, Eisenhauer, Anton, Samankassou, Elias, Vella, Claude, Botella, Alain, Milne, G.A., Pothin, Virginie, Dussouillez, Philippe, Fleury, Jules, Fietzke, Jan, Goepfert, J“... sea level and wave energy regimes. The persistence of stable and optimal depositional environments...”
Published in Global and Planetary Change (2020)
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49596by Rodger, Craig J., Clilverd, Mark A., Yearby, Keith H., Smith, Andy J.“... of the overall Halley wave activity is roughly constant (10–13%) throughout the year. (6) The occurrence of MLR...”
Published in Journal of Geophysical Research: Space Physics (2000)
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49597by Kageyama, Masa, Sime, Louise C., Sicard, Marie, Guarino, Maria-Vittoria, De Vernal, A, Stein, Ruediger, Schroeder, david, Malmierca-Vallet, Irene, Abe-Ouchi, Ayako, Bitz, Cecilia M., Braconnot, Pascale, Brady, Esther C., Cao, Jian, Chamberlain, Matthew, Feltham, Danny, Guo, Chuncheng, Legrande, Allegra N., Lohmann, Gerrit, Meissner, Katrin, Menviel, Laurie, Nisancioglu, Kerim Hestnes, Otto-Bliesner, Bette L., O'ishi, Ryouta, Ramos Buarque, Silvan, Salas y Mélia, David, Sherriff-Tadano, Sam, Stroeve, Julienne C., Shi, Xiaoxu, Sun, Bo, Thomas, Robert, Volodin, Evgeny, Yeung, Nicholas K.H., Zhang, Qiong, Zhang, Zhongshi, Zheng, Weipeng, Ziehn, Tilo“...-model differences are different phasing of the up and down short-wave anomalies over the Arctic Ocean...”
Published in Climate of the Past (2021)
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49598“... out in January 1979. A surface thin layer with a P-wave velocity of 4-5km/s was derived from...”
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49599
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49600by Pederson, Roger Lynn“... densities (6596 seeds m('-2)) in shoreline zones. Dispersal events (wave action, sedimentation, wind) have...”
Published 1983
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