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91.
华北夏季旱涝的前期环流异常及其与北太平洋海温的关系   总被引:10,自引:1,他引:10  
文章分析了华北地区夏季旱涝的前期春季大气环流和北太平洋海温异常(SSTA)分布特征,探讨SSTA与异常环流的关系,并用OSU-AGCM进行黑潮地区热源异常强迫的数值试验.结果表明,当春季北极低涡明显减弱,欧亚大陆中高纬度地区纬向环流加强,西太平洋副高位置偏北偏西,且存在负PNA型异常环流时,华北地区夏季多雨涝;反之则少雨干旱.此时,西北太平洋和赤道东太平洋SST分别存在较大的正、负异常,它们与春季环流异常密切相关,黑潮区SSTA对北半球副热带及其以北的大气环流产生显著影响,正的SSTA是造成华北夏涝年的前期春季异常环流形势的重要因素.  相似文献   
92.
In this paper we report the results of the analysis of two 60-min wave events that occurred in a boreal aspen forest during the 1994 BOREAS (Boreal Ecosystems-Atmosphere Study) field experiment. High frequency wind and temperature data were provided by three 3-D sonic anemometer/thermometers and fourteen fine-wire thermocouples positioned within and above the forest. Wave phase speeds, estimated from information revealed by spectral analysis and linear plane wave equations, are 2.2 and 1.3 m s-1 for the two events. The wavelengths are 130 m and 65 m respectively and are much larger than the vertical wave displacements. There is strong evidence from the present analysis and from the literature supporting our postulate that these waves are generated by shear instability. We propose that wind shear near the top of the stand is often large enough to reduce the gradient Richardson number below the critical value of 0.25 and thus is able to trigger the instability. When external conditions are favorable, the instability will grow into waves.  相似文献   
93.
斜坡岩体由小变形到大变形乃至滑坡的发生,实质上是由组成斜坡的各子系统协同作用的结果.将协同学引入斜坡的稳定性预测评价中,并提出了一种新的斜坡失稳时间预测模型──协同预测模型.经实例检验,该模型预测精度较高,可用于滑坡的短期或临滑预报.  相似文献   
94.
强度折减法在评价边坡稳定性时不需要假设和搜索临界滑裂面,相对于其它方法具有一定优势,但失稳判据尚无明 确标准。滑移线场理论(SLFT) 可以计算得到的极限状态下的边坡坡面曲线(简称极限坡面曲线),已有研究表明极限坡 面曲线与边坡坡面的相对位置关系可以判断边坡稳定性。基于该结论提出一种边坡强度折减法失稳判据:不同折减系数计 算得到不同的强度参数,因此滑移线场理论计算得到的极限坡面曲线将发生变化,当极限坡面曲线与边坡坡面在坡底相离 时,判断边坡为稳定状态;当极限坡面曲线与边坡坡面相交于坡脚时,判断边坡为极限平衡状态;当极限坡面曲线与边坡 坡面相交时,判断边坡为失稳状态。对标准边坡考题的计算结果表明:提出的失稳判据收敛性较好,安全系数计算结果与 标准答案和已有失稳判据分析结论相差较小;传统失稳判据收敛指标的确定没有明确标准,当位移突变曲线光滑时很难找 到突变点,很难准确计算对应的安全系数,更重要的是传统失稳判据判断边坡极限状态受到人为主观因素的影响,而提出 的失稳判据可以实现失稳判据的客观标准化;确定的临界滑裂面形状以及在边坡中的位置都与标准答案基本一致,提出的 失稳判据适用于强度折减法。  相似文献   
95.
The atmospheric concentration of methane is steadily increasin.Lacking of precise estimates of source and sink strengths for the atmospheric methane severely limits the current understanding of the global methane cycle.Agood budget of atmospheric methane can enhance our understanding of the global carbon cycle and global climate change,The known estimates of the main source and sink strengths are gresented in this paper,In terms of carbon isotopic studies,it is evidenced that the earth‘s primodial methane,which was trapped in the earth during its formation,may be another source of methane,with extensive,earth‘s degassing which is calleld the “breathing“ process of the earth and played an important role in the formation of the promitive atmosphere,large amounts of methane were carried from the deep interior to the surface and then found its way into the atmosphere.  相似文献   
96.
The interannual variations of atmospheric heat sources and moisture sinks over the Equatorial Pacific and their relations with the SST anomalies are studied using ECMWF reanalysis data from 1979 to 1993. It is found by singular value decomposition (SVD)…  相似文献   
97.
The characteristics of atmospheric heat source associated with the summer monsoon onset in the South China Sea (SCS) are studied using ECMWF reanalysis data from 1979 to 1993. A criterion of the SCS summer monsoon onset is defined by the atmospheric hea…  相似文献   
98.
A regional atmospheric climate model is used toexamine the effect of changes in the roughnesslengths of momentum (z0m) and heat (z0h)on the structure of the lower atmosphere and on thesurface energy fluxes over Antarctica. Fourexperiments were carried out in which z0mand/or z0h were altered with respect to acontrol experiment. The changes consisted of (1) alowering of z0m from a field aggregated froma vegetation map with an orographic correction basedon the European Centre for Medium-Range WeatherForecasts z0m field, to a constant value of10-3 m; and (2) a lowering of z0h from a valueequal to z0m to a constant value of 10-3 mor a value dependent on the wind speed via a surfacerenewal model. A reduction of z0m results in theexpected increase in near-surface wind speed. It alsoresults in an increase in the depth of the layer in whichsouth-easterly near-surface winds prevail, and in adecrease in the strength of the large-scale flow overthe continent, in particular in summer. In theescarpment region a decrease of z0m is foundto result in too high wind speeds. Surface temperatureson average decrease while atmospheric temperaturesincrease, resulting in an increase of near-surfacestatic stability. Changes in roughness lengths donot significantly change the temperature profiles.The surface fluxes, on average found reduced, aremodelled best by using the z0h based on thesurface renewal method.  相似文献   
99.
In this paper, the process of oasis-desert circulation (ODC) is simulated by MM5V3.5 model through designing an ideal oasis-desert scheme and assuming that initial atmosphere is at rest (V = 0). The findings showed that the key of forming special oasis boundary structure is the difference of energy and water between oasis and desert. The evaporation of oasis surface consumes heat energy, and the low temperature of oasis causes an oasis breeze circulation (OBC), which drives an ODC with a downdraft over the oasis and an updraft over the desert. Later, the cold, dry and stable boundary over oasis is gradually formed, on the contrary,the atmospheric boundary over desert on the edge of oasis is hot, humid and unstable and its height is about 600 hPa. The updraft over the desert forms a wet ring that acts as a vertical wall weakening the low-level moisture exchange between the oasis and desert. The downdraft of OBC increases the atmospheric stability that reduces the oasis evaporation. The low-level outflow from the oasis (into the desert) prevents the dry, hot air flowing from the desert into the oasis.Thus an oasis self-preservation mechanism may be formed due to OBC. The horizontal area influenced by oasis is twice as oasis area and the vertical range is four times as oasis. The ODC is strong in the daytime and reaches the strongest at 17:00, and the influenced area is the largest at 20:00.  相似文献   
100.
用混合和扩散云室对大气冰核浓度的观测分析   总被引:3,自引:0,他引:3  
杨绍忠  王祥国  游来光  皮家雄 《气象》2004,30(12):39-43
继1963年用混合云室对春季冰核浓度观测之后,1994~1996年,在同季节、同地点用混合和静力扩散云室又做了同步观测。对取得的资料进行整理分析,得出了凝华核浓度在不同天气背景下占总冰核浓度的百分比,两种云室测值的对应关系;分析了扩散云室的容积效应及冰核浓度随气压、能见度等气象因子的变化。  相似文献   
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