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新研究阐释地球神秘D层的形成机理 快报文章
地球科学快报,2024年第11期
作者:  王晓晨
Microsoft Word(17Kb)  |  收藏  |  浏览/下载:554/0  |  提交时间:2024/06/10
Earth's D layer  Earth's core-mantle boundary  
Study of the planetary boundary layer height in an urban environment using a combination of microwave radiometer and ceilometer 期刊论文
ATMOSPHERIC RESEARCH, 2020, 240
作者:  de Arruda Moreira, Gregori;  Luis Guerrero-Rascado, Juan;  Antonio Bravo-Aranda, Juan;  Foyo-Moreno, Inmaculada;  Cazorla, Alberto;  Alados, Inmaculada;  Lyamani, Hassan;  Landulfo, Eduardo;  Alados-Arboledas, Lucas
收藏  |  浏览/下载:28/0  |  提交时间:2020/08/18
Planetary boundary layer  Ceilometer  Microwave radiometer  Remote sensing  
Evaluation of land-atmosphere processes of the Polar WRF in the summertime Arctic tundra 期刊论文
ATMOSPHERIC RESEARCH, 2020, 240
作者:  Kim, Jeongwon;  Lee, Junhong;  Hong, Je-Woo;  Hong, Jinkyu;  Koo, Ja-Ho;  Kim, Joo-Hong;  Yun, Juyeol;  Nam, Sungjin;  Jung, Ji Young;  Choi, Taejin;  Lee, Bang Yong
收藏  |  浏览/下载:14/0  |  提交时间:2020/08/18
Polar WRF  Arctic tundra  Land-atmosphere interaction  Surface energy balance  Soil moisture  Planetary boundary layer  
Rapid growth of new atmospheric particles by nitric acid and ammonia condensation 期刊论文
NATURE, 2020, 581 (7807) : 184-+
作者:  Liang, Guanxiang;  Zhao, Chunyu;  Zhang, Huanjia;  Mattei, Lisa;  Sherrill-Mix, Scott;  Bittinger, Kyle;  Kessler, Lyanna R.;  Wu, Gary D.;  Baldassano, Robert N.;  DeRusso, Patricia;  Ford, Eileen;  Elovitz, Michal A.;  Kelly, Matthew S.;  Patel, Mohamed Z.;  Mazhani, Tiny;  Gerber, Jeffrey S.;  Kelly, Andrea;  Zemel, Babette S.;  Bushman, Frederic D.
收藏  |  浏览/下载:17/0  |  提交时间:2020/05/20

A list of authors and their affiliations appears at the end of the paper New-particle formation is a major contributor to urban smog(1,2), but how it occurs in cities is often puzzling(3). If the growth rates of urban particles are similar to those found in cleaner environments (1-10 nanometres per hour), then existing understanding suggests that new urban particles should be rapidly scavenged by the high concentration of pre-existing particles. Here we show, through experiments performed under atmospheric conditions in the CLOUD chamber at CERN, that below about +5 degrees Celsius, nitric acid and ammonia vapours can condense onto freshly nucleated particles as small as a few nanometres in diameter. Moreover, when it is cold enough (below -15 degrees Celsius), nitric acid and ammonia can nucleate directly through an acid-base stabilization mechanism to form ammonium nitrate particles. Given that these vapours are often one thousand times more abundant than sulfuric acid, the resulting particle growth rates can be extremely high, reaching well above 100 nanometres per hour. However, these high growth rates require the gas-particle ammonium nitrate system to be out of equilibrium in order to sustain gas-phase supersaturations. In view of the strong temperature dependence that we measure for the gas-phase supersaturations, we expect such transient conditions to occur in inhomogeneous urban settings, especially in wintertime, driven by vertical mixing and by strong local sources such as traffic. Even though rapid growth from nitric acid and ammonia condensation may last for only a few minutes, it is nonetheless fast enough to shepherd freshly nucleated particles through the smallest size range where they are most vulnerable to scavenging loss, thus greatly increasing their survival probability. We also expect nitric acid and ammonia nucleation and rapid growth to be important in the relatively clean and cold upper free troposphere, where ammonia can be convected from the continental boundary layer and nitric acid is abundant from electrical storms(4,5).


  
Aircraft observed diurnal variations of the planetary boundary layer under heat waves 期刊论文
ATMOSPHERIC RESEARCH, 2020, 235
作者:  Zhang, Yuanjie;  Wang, Liang;  Santanello, Joseph A.;  Pan, Zaitao;  Gao, Zhiqiu;  Li, Dan
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/02
Planetary boundary layer  Heat wave  AMDAR  WVSS  Atmospheric circulation  
Mountain Waves Produced by a Stratified Boundary Layer Flow. Part I: Hydrostatic Case 期刊论文
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2020, 77 (5) : 1683-1697
作者:  Lott, Francois;  Deremble, Bruno;  Soufflet, Clement
收藏  |  浏览/下载:7/0  |  提交时间:2020/07/02
Atmosphere  Dynamics  Mountain waves  Boundary layer  
Understanding Atypical Midlevel Wind Speed Maxima in Hurricane Eyewalls 期刊论文
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2020, 77 (5) : 1531-1557
作者:  Stern, Daniel P.;  Kepert, Jeffrey D.;  Bryan, George H.;  Doyle, James D.
收藏  |  浏览/下载:18/0  |  提交时间:2020/07/02
Hurricanes  Boundary layer  Wind  Friction  Aircraft observations  Mesoscale models  
Turbulence Adjustment and Scaling in an Offshore Convective Internal Boundary Layer: A CASPER Case Study 期刊论文
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2020, 77 (5) : 1661-1681
作者:  Jiang, Qingfang;  Wang, Qing;  Wang, Shouping;  Gabersek, Sasa
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02
Coastal flows  Turbulence  Boundary layer  Air-sea interaction  Large eddy simulations  Mesoscale models  
Estimating the Shallow Convective Mass Flux from the Subcloud-Layer Mass Budget 期刊论文
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2020, 77 (5) : 1559-1574
作者:  Vogel, Raphaela;  Bony, Sandrine;  Stevens, Bjorn
收藏  |  浏览/下载:7/0  |  提交时间:2020/07/02
Cumulus clouds  Marine boundary layer  Mixed layer  Mass fluxes  transport  Dropsondes  Large eddy simulations  
Influence of Swell on Marine Surface-Layer Structure 期刊论文
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2020, 77 (5) : 1865-1885
作者:  Jiang, Qingfang
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02
Atmosphere  Coastal flows  Boundary layer  Air-sea interaction  Atmosphere-ocean interaction  Large eddy simulations