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1.
In this paper,the frontogenesis forced by dust radiative heating and the radiative effects of an isolated duststorrn on a frontal circulation system are examined by means of two-and three-dimensional numerical models.Results indicate that as a duststorm breaks out,frontogenesis is caused in by dust radiative heating in the lower atmosphere.A marked isentropic potential temperature layer is formed in the middle troposphere.The low-level convergence occurs along the direction of the front movement.Atnight,dust radiative cooling results in frontolysis in the lower atmosphere.An obvious vertical circulation is forced by radiative heating of an isolated duststorm along the direction of the prevailing wind.It is stronger at day,weaker and reverse at night.The response of the horizontal wind field to dust radiative forcing is different at different levels.  相似文献   

2.
沙尘辐射强迫锋生过程的数值模拟   总被引:4,自引:1,他引:4       下载免费PDF全文
申绍华  陈受钧 《气象学报》1993,51(3):283-294
本文分别利用二和三维数值模式研究了沙尘暴辐射强迫的锋生过程和孤立的沙尘暴单体辐射加热对锋面环流系统的影响。结果表明:沙尘爆发时,沙尘辐射加热在大气低层导致锋生,在大气中层产生一明显的等熵位温层。水平速度场在沿锋面移动方向表现出明显的辐合(散)特征。晚上,沙尘辐射冷却导致大气低层锋消。 孤立的沙尘暴单体辐射加热在盛行风方向强迫出一个明显的垂直环流圈,它在白天较强,晚上较弱和反向。水平风场对沙尘的辐射强迫响应在不同高度上是不同的。  相似文献   

3.
沙尘暴辐射强迫的锋生过程分析   总被引:6,自引:0,他引:6       下载免费PDF全文
申绍华  陈受钧 《气象学报》1993,51(4):425-433
本文利用锋面方程结合数值模式结果讨论了在沙尘辐射强迫下,影响锋生过程的物理机制,计算了不同的沙尘分布对这种锋生过程的影响。计算和分析结果表明:白天锋生主要是由非绝热加热和水平速度变形场共同产生的,垂直速度场对锋生的影响较弱,主要起锋消作用。水平温度梯度的平流对锋生(消)的影响都很小。晚上影响低层锋消的主要因子是非绝热加热项。 当沙尘降低时,沙尘辐射强迫的锋面强度和坡度都相应地减小。沙尘暴区中心上空的等熵混合层厚度也随之减少。  相似文献   

4.
中国西北地区1993年5月5日黑风暴的机理探讨   总被引:16,自引:0,他引:16       下载免费PDF全文
该文用天气学、诊断分析方法对1993年5月5日我国西部地区黑风暴天气过程的发生发展及形成机理进行研究。结果表明,这次黑风暴是由强寒潮爆发,在特定季节(春季)和裸露、疏松的下垫面(沙漠、戈壁)条件下形成的中尺度现象。在对流层中低层垂直方向上存在很强的风切变,利于湍流发展;非地转强迫作用对次级环流贡献大于地转强迫作用;黑风暴前后显著的辐射加热不均匀分布所形成的热力正反馈作用,造成近地层局地锋生,并使热力正环流大大加强。  相似文献   

5.
沙尘气溶胶对半干旱区微气象学特征影响的初步研究   总被引:3,自引:1,他引:2  
沙尘气溶胶通过改变地表—大气间的短波及长波辐射从而对地气间热量传输产生影响,进而影响到地表能量收支平衡以及近地面层气象要素的分布。半干旱区是我国干旱化表现最为剧烈的地区,也是沙尘暴频发地区和主要源区之一。本文利用吉林通榆半干旱区国际协调强化观测计划基准站2006年4~6月近地层微气象、地表辐射通量和沙尘气溶胶浓度观测资料,对比分析了该地区在典型沙尘暴天气、扬沙天气和晴朗天气等不同天气状况下近地层各气象要素、地表能量平衡及辐射收支的变化特征。结果表明,沙尘气溶胶对半干旱地区地面微气象学特征及辐射收支具有明显的影响,且表现出不同于干旱区的若干特性:半干旱区沙尘天气下的平均风速比晴天高约2m.s-1,而相对湿度则降低了约35%。相对而言,气温和浅层地温的变化对沙尘的影响响应较弱。半干旱区在沙尘天气时地表净辐射小于晴天,感热/潜热通量分别约占净辐射的55%和30%,分别远大于/远小于晴天时的情形。该地区气溶胶质量浓度与日均感热、相对湿度、潜热等要素具有明显的相关,相关系数分别高达0.70、-0.75和-0.62。相比之下,干旱区沙尘天气时的感热通量要小于晴天时的值,而且气象要素的响应更加剧烈。  相似文献   

6.
Summary The problem of along-stream ageostrophic frontogenesis is studied by employing a numerical model at meso-alpha and meso-beta scales in simulations of the downstream circulations over the Front Range of the Rocky Mountains. Three-dimensional real data simulations at these two scales of motion are used to diagnose the transition from semigeostrophic cross-stream frontogenesis accompanying a propagating baroclinic upper-level jet streak to midtropospheric along-stream ageostrophic frontogenesis. This along-stream ageostrophic frontogenesis results from the perturbation of the jet streak by the Rocky Mountain range. The case study represents an example of internal wave dynamics which are forced by the drag of the Rocky Mountains on a strong jet streak in the presence of a low-level inversion.The simulation results indicate that, unlike semi-geostrophic frontogenesis, a front (which is alligned perpendicular to the axis of the jet stream) may form when significant adiabatic heating occurs within a stratified shear flow over horizontal length scales shorter than the Rossby radius of deformation. The mechanism responsible for the frontogenesis is the growth of the divergent along-stream wind velocity component which becomes coupled to the front's along-stream pressure gradient force. This nonlinear interaction produces hydrostatic mesoscale frontogenesis as follows: 1) vertical wind shear in the along-stream plane strengthens resulting in the increasingly nonuniform vertical variation of horizontal temperature advection as the ageostrophic wind component grows in magnitude downstream of the meso-scale terrain-induced adiabatic heating, 2) increasing along-stream differential vertical motions (i.e., along-stream thermally indirect circulation with warm air sinking to the west and cold air rising to the east) tilt the vertical gradient of isentropes into the horizontal as the vertical temperature gradient increases due to the previous process in proximity to horizontal gradients in the along-stream component of the ageostrophic wind, 3) as tilting motions act to increase the along-stream horizontal temperature gradient, the along-stream confluence acts to nonuniformly increase the along-stream frontal temperature gradient which increases the along-stream pressure gradient force resulting in further accelerations, ageostrophy, and frontal steepening as part of a scale contraction process.The evolution of the aforementioned processes results in the three-dimensional hydrostatic frontogenesis accompanying the overturning of isentropic surfaces. These adjustments act to turn air parcels to the right of the southwesterly geostrophic wind vector at successively lower atmospheric levels as the scale contraction continues. This simulated along-stream front is verified from diagnostic analysis of the profiler-derived temperature and wind fields.With 17 Figures  相似文献   

7.
高空急流加速与低层锋生   总被引:27,自引:10,他引:27  
本文从动力学上找到了低层锋生函数同急流区内纬向平均风加速的关系,指出高空急流加速有利于大气低层锋生,并从天气学的角度给出了高空急流加速同低层大气锋生的环流形态特征。即高空波的动量和热量通量在急流区的辐合,促使高空急流加速,并引起急流入口区上下层之间的质量调整,在急流轴高度以下出现一个反环流,反环流的上升支同其下原有的弱锋前的上滑爬升气流发生耦合,造成上滑气流加强,低层锋面坡度变陡,冷暖对比明显,引起大气低层锋生。  相似文献   

8.
Based on daily precipitation data from 212 stations in East China and NCEP/NCAR daily global final analysis data in June and July from 2000 to 2010, the climatological characteristics of frontogenesis and related circulations have been analyzed. The results demonstrate that frontogenesis function distributes nonuniformly in East China. The different terms of the kinematic frontogenesis show different intensities and distributions of frontogenesis. The strongest frontogenesis integrated from different kinematic frontogenesis terms is observed in the Jianghuai area. Frontogenesis events are separated into four types as per the different shear and convergence types of horizontal wind along the strong frontogenesis band at 850 hPa. The four types include the warm shear type, cold shear type (with two subtypes), west wind convergence type, and east wind convergence type. The events in different frontogenesis types occur with different frequencies over the past decade. The warm shear type occurs most frequently. Different types of frontogenesis have distinctive horizontal and vertical structures. Strong frontogenesis is featured with 340-K contour of θse parallel to the frontal zone in the vertical. Varied large-scale circulation patterns manifested in shifted location and strength of cyclone or anticyclone, wind convergence, as well as vertical circulation structure are associated with different types of frontogenesis. Moreover, a strong positive correlation between frontogenesis and precipitation is found, i.e., the stronger the frontogenesis, the more precipitation there is. Daily precipitation related to the warm shear type frontogenesis is the largest, and often occurs inside the frontal zone with the same orientation with the strong frontogenesis belt. The second largest daily precipitation occurs with the cold shear type frontogenesis, and related rainfall is usually observed to the south of the frontal zone, with the rain belt extending northeastward. Precipitation related to the west wind convergence type frontogenesis is the third largest, occurring mostly in the south of the frontal zone.  相似文献   

9.
中国北方沙尘暴频数演化及其气候成因分析   总被引:35,自引:2,他引:35  
张莉  任国玉 《气象学报》2003,61(6):744-750
利用地面气象观测资料 ,分析了中国北方 195 4~ 2 0 0 1年年、季沙尘暴发生日数的演变规律及其与风速、相对湿度、降水、气温和干燥度的相关关系。结果表明 ,中国北方沙尘暴发生日数在 195 4~ 2 0 0 1年呈波动下降的趋势 ,春季下降趋势最明显。沙尘源区的气候要素对北方沙尘暴发生日数具有比较明显的影响 ,其中风是影响较大的因子。平均风速和大风频率增加 (减少 )均有 (不 )利于沙尘暴天气的形成。气温与沙尘暴日数呈显著的反相关关系 ,反映了北方温度升高可能通过大气环流间接地抑制了沙尘暴的发生。降水增加对沙尘暴发生也有一定抑制作用 ,尤其春季和前冬沙尘源区降水多寡对沙尘暴的发生有着重要的影响。北方沙尘暴频数与沙尘源区的相对湿度或干燥指数也存在较明显的相关关系。在过去的近 5 0a内 ,造成中国北方沙尘暴频率显著下降趋势的直接自然原因是 :沙尘源区和发生区平均风速和大风日数的减少、主要沙尘源区降水量特别是春季和前冬降水量的增加、以及由于源区降水增加引起的大气和土壤湿润程度的改善。  相似文献   

10.
We investigate the dust radiative forcing and its feedback on the Arabian Peninsula’s wet season climate using the International Centre for Theoretical Physics-Regional Climate Model (ICTP-RegCM4). We have found that the dust plumes exert a negative (positive) radiative forcing at the surface (top of the atmosphere) by reducing incoming solar radiation reaching the ground and locally heating up the atmosphere column. Consequently, the surface air temperature is cooler, hence indicating a decrease in the warm bias and an increase in the temperature gradient. This reduces the geopotential heights and enhances the low-level wind convergence, suggesting stronger upward motion. These changes increase evaporation, the difference between precipitation and evaporation in the atmosphere and rainfall over the Peninsula, indicating an intensification of the hydrologic cycle. The decrease in the precipitation dry bias and the large reduction in the temperature warm bias caused by the impact of dust over the entire Peninsula represent a significant success for the RegCM4 simulation. Therefore, the inclusion of dust in the simulation of the Arabian Peninsula’s climate for the wet season contributes to an improved performance of this regional climate model over the region.  相似文献   

11.
Presented is a review of quantitative characteristics of atmospheric frontogenesis that describe it as the process of variations of the vector of the horizontal temperature gradient (both in value and in direction) in an individual particle. The frontogenesis that strives for recovering the thermal wind balance disturbed in the case of inhomogeneous advection, generates vertical circulation which is both thermally direct (warm air ascends relative to cold air) and thermally opposite (upward motions in the cold air). Given are the expressions for computing frontogenesis using the data on temperature, pressure, and wind. Used is the resolution of the frontogenetic vector function into components along the isoline of potential temperature both on and across the constant-pressure surface. The first component describes the change in the temperature gradient vector due to the rotation of isotherms (rotational frontogenesis), and the second component, the variations of the absolute value of the gradient (scalar frontogenesis). Quantitative characteristics of frontogenesis are efficient diagnostic parameters both for understanding weather processes and weather forecast specification and for the verification and enhancement of numerical models.  相似文献   

12.
The present study investigates the characteristics of turbulent transfer and the conditions for dust emission and transport using the dust concentration and micrometeorological data obtained during dust events occurring in the spring of 2004 over the Hunshandake desert area. The turbulent exchange coefficients and turbulent fluxes of momentum and heat are calculated. The relationships between dust flux, friction velocity, and wind speed are also explored. The results show that thermal turbulence is dominant during daytime of non-dusty days. The dynamic turbulence increases obviously and the sensible heat flux reduces by different degrees during dust events. There is an efficient downward transfer of momentum before duststorm occurrence, and both the dynamic turbulence and the thermal turbulence are important in the surface layer. The dynamic turbulence even exceeds the thermal turbulence during severe duststorm events. The values of dust flux vary in the range of -5 5, -30 30, and -200-300 μg m^-2 s^-1 during non-dusty days, blowing dust, and duststorm events, respectively. A slight upward transport of dust is observed during non-dusty days. The dust flux gradually varies from positive to negative during duststorm periods, which indicates the time evolution of dust events from dust rising to stably suspending and then deposition. The dust flux is found to be proportional to u*^3. The threshold values of wind speed and friction velocity are about 6 and 0.4 m s^-1, respectively.  相似文献   

13.
王宏  石广玉  王标 《大气科学》2007,31(3):515-526
针对2001年春季中国沙漠和北太平洋上空沙尘气溶胶的空间分布情况,利用辐射传输模式,分别计算了沙尘气溶胶对沙漠和海洋大气的辐射加热(冷却)率,并讨论了低云、中云、高云对辐射加热率的影响。结果表明:春季,位于中国沙漠和太平洋上空的沙尘层对大气具有明显的加热作用。当沙漠上空光学厚度为1.0,海洋上空光学厚度为0.3时,取春季平均太阳高度角,沙尘层对应的净辐射加热率分别为2.8 K/d和0.4 K/d。由于WMO推荐的沙尘模型比东亚沙尘模型对太阳辐射吸收强,采用该模型计算得到的中国沙漠和海洋上空的加热率比采用东亚沙尘模型分别高1.5 K/d和0.2 K/d。沙尘对大气的加热率很大程度上依赖于沙尘的大气载荷。这种依赖性首先受太阳高度角的影响, 其次也受地表反照率的影响。云对沙尘层辐射加热(冷却)率的影响与云的高度和厚度有关。低云能够加热沙漠和海洋上空的沙尘大气,冷却地面和洋面。中、高云冷却沙漠上空的沙尘层。在海洋上空,中云对云层以上的沙尘层有加热作用,对云层以下的沙尘层有冷却作用。高云对海洋上空沙尘层的辐射加热(冷却)率的影响比较小,加热还是冷却,取决于云的厚度,当云层较薄时,加热沙尘层,而当云层较厚的时候,有可能冷却沙尘层。  相似文献   

14.
通过求取定常线性准地转位涡模式的数值解,研究了感热型垂直非均匀分布的冷、热源强迫所激发的副热带环流的结构特征,讨论了副热带背景风场和洋面辐射冷却对洋面副热带高压“三角形偏心”结构形成的重要作用。结果表明,基本流对感热加热强迫的副热带环流有重要影响,当基本流为常数时,感热加热强迫的气旋和反气旋主要集中在对流层中下层,且地面系统远强于中高层。当基本流为非常数时,其经向切变能改变气旋和反气旋中心的经向位置,使它移至0风速所在纬度附近;其垂直变化加强了中高层气旋和反气旋,中心位于对流层上层,与南亚高压的位置基本一致。研究结果还表明,在大洋东部洋面辐射冷却与副热带地区背景风场的共同作用下,形成了洋面副热带高压特有的“三角形偏心”结构。副热带高纬度的西风使感热强迫的洋面副热带高压东移,低纬度的东风使其西移,形成东北—西南走向的“平行四边形”结构,且中心位于大洋西部。大洋东部强洋面辐射冷却激发的洋面反气旋加强了大洋东部的副热带高压,使其中心东移至大洋东部,从而表现出东北—西南走向的“三角形偏心”结构。   相似文献   

15.
RegCM4.3, a high-resolution regional climate model, which includes five kinds of aerosols(dust, sea salt,sulfate, black carbon and organic carbon), is employed to simulate the East Asian summer monsoon(EASM) from 1995 to 2010 and the simulation data are used to study the possible impact of natural and anthropogenic aerosols on EASM.The results show that the regional climate model can well simulate the EASM and the spatial and temporal distribution of aerosols. The EASM index is reduced by about 5% by the natural and anthropogenic aerosols and the monsoon onset time is also delayed by about a pentad except for Southeast China. The aerosols heat the middle atmosphere through absorbing solar radiation and the air column expands in Southeast China and its offshore areas. As a result, the geopotential height decreases and a cyclonic circulation anomaly is generated in the lower atmosphere. Northerly wind located in the west of cyclonic circulation weakens the low-level southerly wind in the EASM region. Negative surface radiative forcing due to aerosols causes downward motion and an indirect meridional circulation is formed with the low-level northerly wind and high-level southerly wind anomaly in the north of 25° N in the monsoon area, which weakens the vertical circulation of EASM. The summer precipitation of the monsoon region is significantly reduced,especially in North and Southwest China where the value of moisture flux divergence increases.  相似文献   

16.
沙尘暴天气及其研究进展综述   总被引:36,自引:1,他引:36       下载免费PDF全文
沙尘暴是风蚀荒漠化中的一种天气现象, 它的形成受自然因素和人类活动因素的共同影响。自然因素包括大风、降水减少及其沙源。人类活动因素是指人类在发展经济过程中对植被的破坏以后, 导致沙尘暴爆发频数增加。该文重点论述自然因素对沙尘暴的影响, 拟从七个方面对沙尘暴的形成及研究现状进行评述, 即沙源分布与移动路径、时间变化、气候变化的影响、产生沙尘暴的天气系统、沙尘的物理化学性质及起沙机制、大气辐射特性及卫星遥感监测、沙尘暴的数值模拟。文章还介绍了国内外在沙尘暴方面的主要研究成果。  相似文献   

17.
导致一例强沙尘暴的若干天气因素的观测和模拟研究   总被引:34,自引:2,他引:32  
利用常规观测资料和数值模拟方法对 2 0 0 1年 4月 6~ 8日由蒙古气旋强烈发展触发的内蒙古地区强沙尘暴天气过程进行了分析研究。结果表明 :在这次“锋面气旋型”沙尘暴过程中 ,气旋冷锋是该天气系统引发沙尘暴的主要因素 ,冷锋过境对沙尘暴的触发作用远强于气旋发展。影响沙尘暴的天气因素中 ,地面大风形成主要源于气旋发展和锋后强冷平流 ,高空动量的有效下传则是另一重要原因。高空急流加强及其形成的次级环流使高空动量下传到对流层中层 ,其下方形成深厚混合层使这一动量继续下传到地面 ,是高空动量有效下传的机制。“混合层”可以从本质上反映有利沙尘暴形成的大气层结特征 ,其强度和高度很大程度决定沙尘暴的强弱。这次过程深厚混合层的形成是深厚干对流和强沙尘暴产生的主要原因。而它的形成则是长时间地面加热的结果 ,这也是特强沙尘暴仅发生在内蒙古中部偏北地区而不是下垫面条件更为适宜的内蒙古西部的原因。混合层空气的平流作用对内蒙古中部偏北地区深厚混合层的形成具有相当的贡献 ,其作用程度与地形分布密切相关。地面热通量试验证明地面加热不仅对冷锋过境产生的上升运动强度具有直接影响 ,也影响混合层形成和高空动量下传 ,并因此影响沙尘暴强度。  相似文献   

18.
本文采用欧洲中心7层网格点逐月平均全球资料和同期美国KWBC的太平洋海温资料分析了1982年1月~1983年12月ElNino期间和1988年1月 ̄1989年12月LaNina期间大气加热场的特征。结果表明,海表温度异常时,海面向上输送的感热、潜热通量变化并不大,有时甚至出现和海温距平变化相反的趋势,而另一方面,各辐射量和凝结加热量变化却很重要。进一步本文又分别以多年平均的12月、ElNino及LaNina强盛时的1982年12月和1988年12月的实测海温和实测大气资料为初值作了数值模拟,模拟的大气状况与真实大气状况一致。根据资料分析和数值模拟的结果,本文认为作大尺度中长期天气预报及研究海气相互作用时应充分考虑辐射收支和凝结加热量的变化。  相似文献   

19.
热力强迫对局地环流的扰动作用   总被引:2,自引:0,他引:2       下载免费PDF全文
用积分变换法求解了包含地面加热作用的二维不可压缩流体的Boussinesq方程组,得到一组描述地面加热作用激发的局地扰动流场的解析解,主要有垂直风、水平扰动风、扰动气压、扰动温度。进而用动力学分析的观点结合图形分析,定性讨论了热力强迫作用对局地环流的扰动作用,以及加热影响下各物理扰动场的空间分布及时间演变特征。  相似文献   

20.
The Weather Research and Forecasting model with Chemistry (WRF-Chem) is utilized to examine the radiative effects of black carbon (BC) aerosols on the Indian monsoon, for the year 2010. Five ensemble simulations with different initial conditions (1st to 5th December, 2009) were performed and simulation results between 1st January, 2010 to 31st December, 2010 were used for analysis. Most of the BC which stays near the surface during the pre-monsoon season gets transported to higher altitudes with the northward migration of the Inter Tropical Convergence Zone (ITCZ) during the monsoon season. In both the seasons, strong negative SW anomalies are present at the surface along with positive anomalies in the atmosphere, which results in the surface cooling and lower tropospheric heating, respectively. During the pre-monsoon season, lower troposphere heating causes increased convection and enhanced meridional wind circulation, bringing moist air from Indian Ocean and Bay of Bengal to the North-East India, leading to increased rainfall there. However, during the monsoon season, along with cooling over the land regions, a warming over the Bay of Bengal is simulated. This differential heating results in an increased westerly moisture flux anomaly over central India, leading to increased rainfall over northern parts of India but decreased rainfall over southern parts. Decreased rainfall over southern India is also substantiated by the presence of increased evaporation over Bay of Bengal and decrease over land regions.  相似文献   

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