Formulation of the thermal internal boundary layer in a mesoscale model. II. Simulations with a level-2.5 turbulence closure

Author:

Arritt Raymond W.,Physick William L.

Publisher

Springer Science and Business Media LLC

Subject

Atmospheric Science

Reference18 articles.

1. Arakawa, A. and Lamb, V. R.: 1977, ?Computational Design of the Basic Dynamical Processes of the UCLA General Circulation Model?, Methods in Computational Physics 17, 173?265.

2. Arritt, R. W.: 1987, ?The Effect of Water Surface Temperature on Lake Breezes and Thermal Internal Boundary Layers?, Boundary-Layer Meteorol. 40, 101?125.

3. Arritt, R. W.: 1988, Modeling of Sea Breezes and Mountain-valley Flows, in G. J. Boer (ed.), Research Activities in Atmospheric and Oceanic Modeling, CAS/JSC Working Group on Numerical Experimentation Report No. 11, World Meteorological Organization, pp. 5.35?5.36.

4. Arritt, R. W.: 1989, ?Numerical Modeling of the Offshore Extent of Sea Breezes?, Quart. J. Roy. Meteorol. Soc. 115, 547?570.

5. Deardorff, J. W.: 1974, ?Three-dimensional Numerical Study of the Height and Mean Structure of a Heated Planetary Boundary Layer?, Boundary-Layer Meteorol. 7, 81?106.

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