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    Efficient Consolidation Model for Morphodynamic Simulations in Low-SPM Environments 

    Source: Journal of Hydraulic Engineering:;2018:;Volume ( 144 ):;issue: 008
    Author(s): Winterwerp J. C.;Zhou Zeng;Battista G.;Van Kessel T.;Jagers H. R. A.;Van Maren D. S.;Van Der Wegen M.
    Publisher: American Society of Civil Engineers
    Abstract: This paper presents a new model, using existing consolidation theory, suitable for long-term morphodynamic simulations; we refer to the dynamic equilibrium consolidation (DECON) model. This model is applicable for muddy ...
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    The Experimental Cloud Lidar Pilot Study (ECLIPS) for Cloud—Radiation Research 

    Source: Bulletin of the American Meteorological Society:;1994:;volume( 075 ):;issue: 009:;page 1635
    Author(s): Platt, C. M.; Young, S. A.; Carswell, A. I.; Pal, S. R.; McCormick, M. P.; Winker, D. M.; DelGuasta, M.; Stefanutti, L.; Eberhard, W. L.; Hardesty, M.; Flamant, P. H.; Valentin, R.; Forgan, B.; Gimmestad, G. G.; Jäger, H.; Khmelevtsov, S. S.; Kolev, I.; Kaprieolev, B.; Lu, Da-ren; Sassen, K.; Shamanaev, V. S.; Uchino, O.; Mizuno, Y.; Wandinger, U.; Weitkamp, C.; Ansmann, A.; Wooldridge, C.
    Publisher: American Meteorological Society
    Abstract: The Experimental Cloud Lidar Pilot Study (ECLIPS) was initiated to obtain statistics on cloud-base height, extinction, optical depth, cloud brokenness, and surface fluxes. Two observational phases have taken place, in ...
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