LARGE-EDDY SIMULATIONS;
DIRECT NUMERICAL-SIMULATION;
FINITE-DIFFERENCE SCHEMES;
SURFACE HETEROGENEITY;
LAND SURFACES;
LENGTH SCALES;
TEMPERATURE;
TURBULENCE;
DYNAMICS;
OSCILLATIONS;
D O I:
10.1175/JAS-D-13-0383.1
中图分类号:
P4 [大气科学(气象学)];
学科分类号:
0706 ;
070601 ;
摘要:
The heterogeneously heated free convective boundary layer (CBL) is investigated by means of dimensional analysis and results from large-eddy simulations (LES) and direct numerical simulations (DNS). The investigated physical model is a CBL that forms in a linearly stratified atmosphere heated from the surface by square patches with a high surface buoyancy flux. Each simulation has been run long enough to show the formation of a peak in kinetic energy, corresponding to the "optimal" heterogeneity size with strong secondary circulations, and the subsequent transition into a horizontally homogeneous CBL. Scaling laws for the time of the optimal state and transition and for the vertically integrated kinetic energy (KE) have been developed. The laws show that the optimal state and transition do not occur at a fixed ratio of the heterogeneity size to the CBL height. Instead, these occur at a higher ratio for simulations with increasing heterogeneity sizes because of the development of structures in the downward-moving air that grow faster than the CBL thickness. The moment of occurrence of the optimal state and transition are strongly related to the heterogeneity amplitude: stronger amplitudes result in an earlier optimal state and a later transition. Furthermore, a decrease in patch size combined with a compensating increase in patch surface buoyancy flux to maintain the energy input results in decreasing KE and a later transition. The simulations suggest that a CBL with a heterogeneity size smaller than the initial CBL height has less entrainment than a horizontally homogeneous CBL, whereas one with a larger heterogeneity size has more.
机构:
Nanjing Univ, Key Lab Mesoscale Severe Weather, Minist Educ, Nanjing, Peoples R China
Nanjing Univ, Sch Atmospher Sci, Nanjing, Peoples R ChinaNanjing Univ, Key Lab Mesoscale Severe Weather, Minist Educ, Nanjing, Peoples R China
Zhou, Bowen
Li, Yuhuan
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China Meteorol Adm, Inst Urban Meteorol, Beijing, Peoples R ChinaNanjing Univ, Key Lab Mesoscale Severe Weather, Minist Educ, Nanjing, Peoples R China
Li, Yuhuan
Miao, Shiguang
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机构:
China Meteorol Adm, Inst Urban Meteorol, Beijing, Peoples R ChinaNanjing Univ, Key Lab Mesoscale Severe Weather, Minist Educ, Nanjing, Peoples R China
机构:
KI Satpaev Kazakh Natl Res Tech Univ, 22a Satpaev Str, Alma Ata 050000, KazakhstanKI Satpaev Kazakh Natl Res Tech Univ, 22a Satpaev Str, Alma Ata 050000, Kazakhstan
Unaspekov, B. A.
Sabdenov, K. O.
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LN Gumilev Eurasian Natl Univ, 2 Satpaev Str, Nur Sultan 010008, KazakhstanKI Satpaev Kazakh Natl Res Tech Univ, 22a Satpaev Str, Alma Ata 050000, Kazakhstan
Sabdenov, K. O.
Erzada, M.
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LN Gumilev Eurasian Natl Univ, 2 Satpaev Str, Nur Sultan 010008, KazakhstanKI Satpaev Kazakh Natl Res Tech Univ, 22a Satpaev Str, Alma Ata 050000, Kazakhstan
Erzada, M.
Auelbekov, S. Sh.
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机构:
Kazakh Head Architectural & Construct Acad, Int Educ Corp, 28 Ryskulbekov Str, Alma Ata 050043, KazakhstanKI Satpaev Kazakh Natl Res Tech Univ, 22a Satpaev Str, Alma Ata 050000, Kazakhstan
Auelbekov, S. Sh.
Taubaldieva, A. S.
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Kazakh Head Architectural & Construct Acad, Int Educ Corp, 28 Ryskulbekov Str, Alma Ata 050043, KazakhstanKI Satpaev Kazakh Natl Res Tech Univ, 22a Satpaev Str, Alma Ata 050000, Kazakhstan
Taubaldieva, A. S.
Seitkaziev, O. D.
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Kazakh Head Architectural & Construct Acad, Int Educ Corp, 28 Ryskulbekov Str, Alma Ata 050043, KazakhstanKI Satpaev Kazakh Natl Res Tech Univ, 22a Satpaev Str, Alma Ata 050000, Kazakhstan