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DOI10.1175/JAS-D-18-0019.1
Analysis of Cloud-Resolving Model Simulations for Scale Dependence of Convective Momentum Transport
Liu, Yi-Chin1,2; Fan, Jiwen1; Xu, Kuan-Man3; Zhang, Guang J.4
2018-07-01
发表期刊JOURNAL OF THE ATMOSPHERIC SCIENCES
ISSN0022-4928
EISSN1520-0469
出版年2018
卷号75期号:7页码:2445-2472
文章类型Article
语种英语
国家USA
英文摘要

We use 3D cloud-resolving model (CRM) simulations of two mesoscale convective systems at midlatitudes and a simple statistical ensemble method to diagnose the scale dependency of convective momentum transport (CMT) and CMT-related properties and evaluate a parameterization scheme for the convection-induced pressure gradient (CIPG) developed by Gregory et al. Gregory et al. relate CIPG to a constant coefficient multiplied by mass flux and vertical mean wind shear. CRM results show that mass fluxes and CMT exhibit strong scale dependency in temporal evolution and vertical structure. The upgradient-downgradient CMT characteristics for updrafts are generally similar between small and large grid spacings, which is consistent with previous understanding, but they can be different for downdrafts across wide-ranging grid spacings. For the small to medium grid spacings (4-64 km), Gregory et al. reproduce some aspects of CIPG scale dependency except for underestimating the variations of CIPG as grid spacing decreases. However, for large grid spacings (128-512 km), Gregory et al. might even less adequately parameterize CIPG because it omits the contribution from either the nonlinear-shear or the buoyancy forcings. Further diagnosis of CRM results suggests that inclusion of nonlinear-shear forcing in Gregory et al. is needed for the large grid spacings. For the small to median grid spacings, a modified Gregory et al. with the three-updraft approach help better capture the variations of CIPG as grid spacing decreases compared to the single updraft approach. Further, the optimal coefficients used in Gregory et al. seem insensitive to grid spacings, but they might be different for updrafts and downdrafts, for different MCS types, and for zonal and meridional components.


英文关键词Cloud parameterizations Cloud resolving models Convective parameterization Cumulus clouds
领域地球科学
收录类别SCI-E
WOS记录号WOS:000438018700001
WOS关键词TOGA COARE IOP ; ORGANIZED CONVECTION ; GENERAL-CIRCULATION ; TROPICAL CONVECTION ; VERTICAL TRANSPORT ; BULK MICROPHYSICS ; MOIST CONVECTION ; CUMULUS CLOUDS ; PART II ; PARAMETERIZATION
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/29540
专题地球科学
作者单位1.Pacific Northwest Natl Lab, Richland, WA 99354 USA;
2.Calif Environm Protect Agcy, Air Resources Board, Sacramento, CA USA;
3.NASA, Langley Res Ctr, Hampton, VA 23665 USA;
4.Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA
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GB/T 7714
Liu, Yi-Chin,Fan, Jiwen,Xu, Kuan-Man,et al. Analysis of Cloud-Resolving Model Simulations for Scale Dependence of Convective Momentum Transport[J]. JOURNAL OF THE ATMOSPHERIC SCIENCES,2018,75(7):2445-2472.
APA Liu, Yi-Chin,Fan, Jiwen,Xu, Kuan-Man,&Zhang, Guang J..(2018).Analysis of Cloud-Resolving Model Simulations for Scale Dependence of Convective Momentum Transport.JOURNAL OF THE ATMOSPHERIC SCIENCES,75(7),2445-2472.
MLA Liu, Yi-Chin,et al."Analysis of Cloud-Resolving Model Simulations for Scale Dependence of Convective Momentum Transport".JOURNAL OF THE ATMOSPHERIC SCIENCES 75.7(2018):2445-2472.
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