skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: DCMIP2016: the splitting supercell test case

Journal Article · · Geoscientific Model Development (Online)

Abstract. This paper describes the splitting supercell idealized test case used in the 2016 Dynamical Core Model Intercomparison Project (DCMIP2016). These storms are useful test beds for global atmospheric models because the horizontal scale of convective plumes is O(1 km), emphasizing non-hydrostatic dynamics. The test case simulates a supercell on a reduced-radius sphere with nominal resolutions ranging from 4 to 0.5 km and is based on the work of Klemp et al. (2015). Models are initialized with an atmospheric environment conducive to supercell formation and forced with a small thermal perturbation. A simplified Kessler microphysics scheme is coupled to the dynamical core to represent moist processes. Reference solutions for DCMIP2016 models are presented. Storm evolution is broadly similar between models, although differences in the final solution exist. These differences are hypothesized to result from different numerical discretizations, physics–dynamics coupling, and numerical diffusion. Intramodel solutions generally converge as models approach 0.5 km resolution, although exploratory simulations at 0.25 km imply some dynamical cores require more refinement to fully converge. These results can be used as a reference for future dynamical core evaluation, particularly with the development of non-hydrostatic global models intended to be used in convective-permitting regimes.

Sponsoring Organization:
USDOE
Grant/Contract Number:
SC0016015
OSTI ID:
1497922
Journal Information:
Geoscientific Model Development (Online), Journal Name: Geoscientific Model Development (Online) Vol. 12 Journal Issue: 3; ISSN 1991-9603
Publisher:
Copernicus Publications, EGUCopyright Statement
Country of Publication:
Germany
Language:
English

References (19)

A new approach for 3D cloud-resolving simulations of large-scale atmospheric circulation journal January 2005
Analysis of the numerics of physics–dynamics coupling journal October 2002
FVM 1.0: a nonhydrostatic finite-volume dynamical core for the IFS journal January 2019
Sensitivity of Idealized Supercell Simulations to Horizontal Grid Spacing: Implications for Warn-on-Forecast journal August 2015
Toward 1-km Ensemble Forecasts over Large Domains journal August 2017
A finite-volume module for cloud-resolving simulations of global atmospheric flows journal July 2017
The Simulation of Three-Dimensional Convective Storm Dynamics journal June 1978
Comparison of Impacts of WRF Dynamic Core, Physics Package, and Initial Conditions on Warm Season Rainfall Forecasts journal September 2006
A moist aquaplanet variant of the Held–Suarez test for atmospheric model dynamical cores journal January 2016
Idealized global nonhydrostatic atmospheric test cases on a reduced-radius sphere: REDUCED-RADIUS SPHERE TEST CASES journal July 2015
DCMIP2016: a review of non-hydrostatic dynamical core design and intercomparison of participating models journal January 2017
Physics–Dynamics Coupling in Weather, Climate, and Earth System Models: Challenges and Recent Progress journal November 2018
Evaluating Mesoscale NWP Models Using Kinetic Energy Spectra journal December 2004
Impact of the dynamical core on the direct simulation of tropical cyclones in a high-resolution global model: DYNAMICAL CORE IMPACT ON TC ACTIVITY journal May 2015
The Pros and Cons of Diffusion, Filters and Fixers in Atmospheric General Circulation Models book January 2011
A framework for testing global non-hydrostatic models journal January 2009
Some Counterintuitive Dependencies of Tropical Cyclone Frequency on Parameters in a GCM journal July 2012
The Impacts of Dry Dynamic Cores on Asymmetric Hurricane Intensification journal December 2016
On the Distribution and Continuity of Water Substance in Atmospheric Circulations book January 1969

Similar Records

Assessing Adaptive Mesh Refinement (AMR) in a Forced Shallow-Water Model with Moisture
Journal Article · Mon Sep 30 00:00:00 EDT 2019 · Monthly Weather Review · OSTI ID:1497922

DCMIP2016: a review of non-hydrostatic dynamical core design and intercomparison of participating models
Journal Article · Wed Dec 06 00:00:00 EST 2017 · Geoscientific Model Development (Online) · OSTI ID:1497922

DCMIP2016: the tropical cyclone test case
Journal Article · Wed Apr 03 00:00:00 EDT 2024 · Geoscientific Model Development (Online) · OSTI ID:1497922

Related Subjects