Showing 341 - 360 results of 416 for search '"atmospheric dynamics"', query time: 0.14s Refine Results
  1. 341

    On the climate response to spatial patterns of absorbing aerosol and sea-surface temperatures by Williams, AIL

    Published 2023
    “…We then provide a robust physical mechanism for this contrast in terms of simple atmospheric dynamics.</p> <p>In Chapter 4 we then turn our attention to the related question of how sea- surface temperature anomalies in different regions impact on the global-mean top-of-atmosphere (TOA) radiation budget, a phenomenon often referred to as the “SST pattern effect”. …”
    Thesis
  2. 342

    Global balanced wind derived from SABER temperature and pressure observations and its validations by X. Liu, X. Liu, J. Xu, J. Xu, J. Yue, J. Yue, Y. Yu, P. P. Batista, V. F. Andrioli, V. F. Andrioli, Z. Liu, T. Yuan, C. Wang, Z. Zou, G. Li, J. M. Russell III

    Published 2021-12-01
    “…<p>Zonal winds in the stratosphere and mesosphere play important roles in atmospheric dynamics and aeronomy. However, the direct measurement of winds in this height range is difficult. …”
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    Article
  3. 343

    CALOTRITON: a convective boundary layer height estimation algorithm from ultra-high-frequency (UHF) wind profiler data by A. Philibert, A. Philibert, M. Lothon, J. Amestoy, P.-Y. Meslin, S. Derrien, Y. Bezombes, B. Campistron, F. Lohou, A. Vial, G. Canut-Rocafort, J. Reuder, J. K. Brooke

    Published 2024-03-01
    “…<p>Long time series of observations of atmospheric dynamics and composition are collected at the French Pyrenean Platform for Observation of the Atmosphere (P2OA). …”
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    Article
  4. 344

    Intra-event evolution of elemental and ionic concentrations in wet deposition in an urban environment by T. Audoux, B. Laurent, K. Desboeufs, G. Noyalet, F. Maisonneuve, O. Lauret, O. Lauret, S. Chevaillier

    Published 2023-10-01
    “…A total of eight rain events were documented and characterized by varying meteorological conditions, atmospheric dynamics, and aerosol particle concentrations representative of urban conditions and influenced by long-range mineral dust transport. …”
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    Article
  5. 345

    The effects of diachronous surface uplift of the European Alps on regional climate and the oxygen isotopic composition of precipitation by D. Boateng, S. G. Mutz, S. G. Mutz, A. Ballian, A. Ballian, M. J. M. Meijers, K. Methner, K. Methner, S. Botsyun, S. Botsyun, A. Mulch, A. Mulch, T. A. Ehlers, T. A. Ehlers

    Published 2023-11-01
    “…These large-scale atmospheric dynamics changes can complicate the underlying assumption of stable isotope paleoaltimetry and therefore require integration with paleoclimate modeling to ensure accurate reconstruction of the paleoelevation of the Alps.…”
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    Article
  6. 346

    Profiling of Aerosols and Clouds over High Altitude Urban Atmosphere in Eastern Himalaya: A Ground-Based Observation Using Raman LIDAR by Trishna Bhattacharyya, Abhijit Chatterjee, Sanat K. Das, Soumendra Singh, Sanjay K. Ghosh

    Published 2023-06-01
    “…In addition to the aerosols and cloud characterization and atmospheric boundary layer detection, the profile of the water vapor mixing ratio has also been analyzed. Effects of atmospheric dynamics have been studied using the vertical profiles of the normalized standard deviation of RCS along with the water vapor mixing ratio. …”
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    Article
  7. 347

    Analysis of atmospheric CO2 variability in the Marseille city area and the north-west Mediterranean basin at different time scales by Irène Xueref-Remy, Mélissa Milne, Narimène Zoghbi, Ludovic Lelandais, Aurélie Riandet, Alexandre Armengaud, Grégory Gille, Ludovic Lanzi, Sonia Oppo, Lola Brégonzio-Rozier, Pierre-Eric Blanc, Christophe Yohia, Jacques Piazzola, Marc Delmotte

    Published 2023-01-01
    “…Finally, remote sensing measurements would be useful to better assess the impact of ABLH on atmospheric CO2 in the coastal area of Marseille where atmospheric dynamics are quite complex.…”
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    Article
  8. 348

    Multiphase processes in the EC-Earth model and their relevance to the atmospheric oxalate, sulfate, and iron cycles by S. Myriokefalitakis, E. Bergas-Massó, E. Bergas-Massó, M. Gonçalves-Ageitos, M. Gonçalves-Ageitos, C. Pérez García-Pando, C. Pérez García-Pando, T. van Noije, P. Le Sager, A. Ito, E. Athanasopoulou, A. Nenes, A. Nenes, M. Kanakidou, M. Kanakidou, M. Kanakidou, M. C. Krol, M. C. Krol, E. Gerasopoulos

    Published 2022-04-01
    “…In comparison to the ERA-Interim simulation, differences in atmospheric dynamics and the simulated weaker oxidizing capacity in EC-Earth overall result in a <span class="inline-formula">∼</span> 30 % lower OXL source. …”
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    Article
  9. 349

    Higher absorption enhancement of black carbon in summer shown by 2-year measurements at the high-altitude mountain site of Pic du Midi Observatory in the French Pyrenees by S. Tinorua, C. Denjean, P. Nabat, T. Bourrianne, V. Pont, F. Gheusi, E. Leclerc

    Published 2024-02-01
    “…The results demonstrate the complex influence of BC emission sources, transport pathways, atmospheric dynamics and chemical reactivity in driving the light absorption of BC.…”
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    Article
  10. 350
  11. 351

    The new Kr-86 excess ice core proxy for synoptic activity: West Antarctic storminess possibly linked to Intertropical Convergence Zone (ITCZ) movement through the last deglaciat... by C. Buizert, S. Shackleton, S. Shackleton, J. P. Severinghaus, W. H. G. Roberts, W. H. G. Roberts, A. Seltzer, A. Seltzer, B. Bereiter, B. Bereiter, K. Kawamura, K. Kawamura, K. Kawamura, D. Baggenstos, A. J. Orsi, A. J. Orsi, I. Oyabu, B. Birner, J. D. Morgan, E. J. Brook, D. M. Etheridge, D. M. Etheridge, D. Thornton, D. Thornton, N. Bertler, N. Bertler, R. L. Pyne, R. Mulvaney, E. Mosley-Thompson, P. D. Neff, P. D. Neff, V. V. Petrenko

    Published 2023-03-01
    “…</p> <p>We emphasize that <span class="inline-formula"><sup>86</sup>Kr<sub>xs</sub></span> is a new proxy, and more work is called for to confirm, replicate, and better understand these results; until such time, our conclusions regarding past atmospheric dynamics remain speculative. Current scientific understanding of firn air transport and trapping is insufficient to explain all the observed variations in <span class="inline-formula"><sup>86</sup>Kr<sub>xs</sub></span>. …”
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    Article
  12. 352
  13. 353

    Accelerated western European heatwave trends linked to more-persistent double jets over Eurasia by Efi Rousi, Kai Kornhuber, Goratz Beobide-Arsuaga, Fei Luo, Dim Coumou

    Published 2022-07-01
    “…This accelerated trend is linked to atmospheric dynamical changes via an increase in the frequency and persistence of double jet stream states over Eurasia. …”
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    Article
  14. 354

    Rigid Body Dynamics for Space Applications / by Aslanov, V. S. (Vladimir Stepanovich), author 649780, ScienceDirect (Online service) 7722

    Published 2017
    “…Rigid Body Dynamics for Space Applications explores the modern problems of spaceflight mechanics, such as attitude dynamics of re-entry and space debris in Earth's atmosphere; dynamics and control of coaxial satellite gyrostats; deployment, dynamics, and control of a tether-assisted return mission of a re-entry capsule; and removal of large space debris by a tether tow.…”
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    software, multimedia
  15. 355

    Conceiving Meteorology as the exact science of the atmosphere: Vilhelm Bjerknes's paper of 1904 as a milestone by Gabriele Gramelsberger

    Published 2009-12-01
    “…Over seven pages Bjerknes developed the idea of a mathematical model of the atmosphere's dynamics based solely on physical and mechanical laws. …”
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    Article
  16. 356

    Implementation of the Community Earth System Model (CESM) version 1.2.1 as a new base model into version 2.50 of the MESSy framework by A. J. G. Baumgaertner, P. Jöckel, A. Kerkweg, R. Sander, H. Tost

    Published 2016-01-01
    “…The option to use the Community Atmosphere Model (CAM) atmospheric dynamical cores, especially the state-of-the-art spectral element (SE) core, as an alternative to the ECHAM5 spectral transform dynamical core will provide scientific and computational advances for atmospheric chemistry and climate modelling with MESSy. …”
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    Article
  17. 357
  18. 358

    The effect of landcover changes on surface temperature and precipitation in the Southeast Asia region by Justin Sentian, Steven S.K. Kong

    Published 2015
    “…Research on landcover change on global environmental change has emerged in the last few decades with the realization that land surface processes influence the atmospheric dynamic and thus climate. This study explores the effects of possible future landcover forcing itself with atmospheric forcing on surface climate over the end of the 21st century in Southeast Asia (SEA). …”
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    Article
  19. 359

    High-Resolution Observations of Transport and Exchange Processes in Mountainous Terrain by Stefan Emeis, Norbert Kalthoff, Bianca Adler, Eric Pardyjak, Alexandre Paci, Wolfgang Junkermann

    Published 2018-11-01
    “…Mountainous areas require appropriate measurement strategies to cover the full spectrum of details concerning the energy exchange at the Earth’s surface and to capture the spatiotemporal distribution of atmospheric dynamic and thermodynamic fields over them. …”
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    Article
  20. 360

    Dependence of the upper middle atmosphere on tropospheric circulation: Correlation of European winter rainfall and midlatitude mesopause region zonal winds by Christoph Jacobi, Dierk Kürschner

    Published 1999-09-01
    “…However, this connection does not give a hint of a direct coupling between upper mesosphere/lower thermosphere winds and European rainfall, but rather shows that both European tropospheric and upper atmosphere dynamical parameters are both included into large-scale circulation patterns.…”
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    Article