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1.
In mountainous lake areas, lake–land and mountain–valley breezes interact with each other, leading to an "extended lake breeze". These extended lake breezes can regulate and control energy and carbon cycles at different scales. Based on meteorological and turbulent fluxes data from an eddy covariance observation site at Erhai Lake in the Dali Basin,southwest China, characteristics of daytime and nighttime extended lake breezes and their impacts on energy and carbon dioxide exchange in 2015 are investigated. Lake breezes dominate during the daytime while, due to different prevailing circulations at night, there are two types of nighttime breezes. The mountain breeze from the Cangshan Mountain range leads to N1 type nighttime breeze events. When a cyclonic circulation forms and maintains in the southern part of Erhai Lake at night, its northern branch contributes to the formation of N2 type nighttime breeze events. The prevailing wind directions for daytime, N1, and N2 breeze events are southeast, west, and southeast, respectively. Daytime breeze events are more intense than N1 events and weaker than N2 events. During daytime breeze events, the lake breeze decreases the sensible heat flux(Hs) and carbon dioxide flux(FCO_2) and increases the latent heat flux(LE). During N1 breeze events, the mountain breeze decreases Hs and LE and increases FCO_2. For N2 breeze events, the southeast wind from the lake surface increases Hs and LE and decreases suppress carbon dioxide exchange.  相似文献   

2.
河谷风演变过程的数值模拟   总被引:1,自引:0,他引:1  
王浩 《高原气象》1993,12(1):1-11
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3.
We examine the climatological diurnal cycle of surface air temperature in a 6 km resolution atmospheric simulation of Southern California from 1995 to the present. We find its amplitude and phase both have significant geographical structure. This is most likely due to diurnally-varying flows back and forth across the coastline and elevation isolines resulting from the large daily warming and cooling over land. Because the region’s atmosphere is generally stably stratified, these flow patterns result in air of lower (higher) potential temperature being advected upslope (downslope) during daytime (nighttime). This suppresses the temperature diurnal cycle amplitude at mountaintops where diurnal flows converge (diverge) during the day (night). The nighttime land breeze also advects air of higher potential temperature downslope toward the coast. This raises minimum temperatures in land areas adjacent to the coast in a manner analogous to the daytime suppression of maximum temperature by the cool sea breeze in these same areas. Because stratification is greater in the coastal zone than in the desert interior, these thermal effects of the diurnal winds are not uniform, generating spatial structures in the phase and shape of the temperature diurnal cycle as well as its amplitude. We confirm that the simulated characteristics of the temperature diurnal cycle as well as those of the associated diurnal winds are also found in a network of 30 observation stations in the region. This gives confidence in the simulation’s realism and our study’s findings. Diurnal flows are probably mainly responsible for the geographical structures in the temperature diurnal cycle in other regions of significant topography and surface heterogeneity, their importance depending partly on the degree of atmospheric stratification.  相似文献   

4.
In this paper, some 2-D features of the down- and up-slope winds and sea-land-breeze generated over the com-plex terrain of the Qingdao area and the interaction between them are numerically analysed by use of a 2-Dnon-hydrostatic mesoscale model. The simulated results in the west-east vertical cross-section show that (1) when thelarge-scale wind is a southerly gentle one, the generated easterly down-slope wind is much stronger than with an oppo-site background wind, and the down-slope wind can trigger and intensify the land breeze corresponding to the easterncoast of Jiaozhou Bay; (2) a gentle westerly background wind will reduce the eastward sea breeze and up-slope windduring the daytime due to a cold advection, but shows a little effect on the mesoscale circulation formed in the nighttime.  相似文献   

5.
The daytime boundary-layer heating process and the air-land heat budget were investigated over the coastal sea-breeze region by means of observations over the Sendai plain in Japan during the summer. In this area, the onset of the sea breeze begins at the coast around 0900 LST, intruding about 35 km inland by late afternoon. The cold sea breeze creates a temperature difference of over 10°C between the coastal and inland areas in the afternoon. On the other hand, warm air advection due to the combination of the counter-sea breeze and land-to-sea synoptic wind occurs in the layer above the cold sea breeze in the coastal region. Owing to this local warm air advection, there is no significant difference in the daytime heating rate over the entire atmospheric boundary layer between the coastal and inland areas. The sensible heat flux from the land surface gradually decreases as distance from the coastline increases, being mainly attributed to the cold sea breeze. The daytime mean cold air advection due to the sea breeze is estimated asQ adv local =–29 W m–2 averaged over the sea breeze region (035 km from the coastline). This value is 17% of the surface sensible heat fluxH over the same region. The results of a two-dimensional numerical model show that the value ofQ adv local /H is strongly affected by the upper-level synoptic wind direction. The absolute value ofQ adv local /H becomes smaller when the synoptic wind has the opposite direction of the sea breeze. This condition occurred during the observations used in the present study.  相似文献   

6.
利用中尺度数值模式WRF耦合单层城市冠层模块UCM,引入2005年MODIS土地利用类型资料,在对2005年1月25—28日兰州市热岛现象进行高分辨率数值模拟的基础上,设计了去除城市下垫面敏感性试验,探讨了城市下垫面对城市边界层的影响程度。结果表明,城市下垫面能使近地层大气温度升高而风速减小,并且,在夜间表现更明显。由城市热岛强度日变化分析可知,城市下垫面对兰州市热岛强度的贡献率为44%。夜间,城市上空200 m以下的近地层大气保持了白天的混合层特征,热岛环流的上升运动促进了山风环流,使得上升气流到达地面以上600 m左右;白天,由于山峰加热效应,城市上空400—600 m存在一个脱地逆温层,城市热岛环流使得11—15时(北京时)市区近地层出现弱上升气流,抑制了谷风环流的形成及发展。城市下垫面的低反照率特性和建筑物的多次反射作用导致城市下垫面的净辐射通量大于非城市下垫面;城市下垫面由于建筑材料的不透水性,导致潜热通量远小于感热通量,而储热项所占比重明显增大。  相似文献   

7.
云贵高原洱海湖泊效应的数值模拟   总被引:3,自引:1,他引:2       下载免费PDF全文
采用耦合湖泊模型的WRF_CLM模式模拟山谷盆地中洱海的湖泊效应,并利用陆面(农田)和湖面的站点观测资料对模式进行了验证和校验。基于数值模式的模拟结果,分析了季风和非季风期间,洱海存在与否对山谷盆地局地环流及大气边界层结构的影响。发现非季风期湖泊对局地环流及大气边界层影响显著。相对于陆地,湖泊白天湍流通量输送少,湍流发展弱,大气边界层高度低。如果湖泊不存在,白天苍山山谷风只能上升至约200 m的高度,没有明显的山谷风环流形成;夜间则山风较强,两侧山风共同作用在山谷,环流高度约600 m。季风期,受降水天气影响,局地环流发展不充分。白天湖面辐散以及夜间湖泊南部的气旋式环流弱,湖泊作用没有非季风期明显。云的形成导致边界层高度较低。夜间,湖泊增强释放潜热、感热作用明显;此时湍流发展,夜间边界层反而比白天高。  相似文献   

8.
陈荣  程正泉  黄健聪 《气象》2012,38(5):623-628
利用广州地区2009年10月至2010年3月的湿球温度、干球温度、黑球温度,以及附近自动气象站相同时刻的温度、风速、湿度资料进行统计分析,在对广州地区湿球黑球温度(Wet Bulb Globe Temperature,WBGT)统计、特征分析的基础上,分别采用昼夜两段模式和分时模式构建出WBGT预报方程。利用WBGT的实测资料,对上述两种预报方程和直接引用的香港天文台WBGT预报方程一同分析预报误差,对比发现:直接引用的香港天文台的预报方程预报效果最差,分时段WBGT预报模式总体偏差最小;三种预报方法在夜间比白天预报偏差小,昼夜预报法和分时预报法预报偏差不超过1℃,两者对夜间的WBGT预报能力相当,但在白天时段分时预报法明显比昼夜预报法的预报偏差小。据此,文章选取预报效果最好的分时模式建立预报方程,文中最后针对预报方程中温度、相对湿度因子由于预报误差而导致的WBGT预报误差进行了讨论。基于此研究成果,气象部门为第16届亚洲运动会的马术比赛提供了准确、周到的气象服务,为马术比赛的赛事安排及比赛的成功举办提供了重要的决策依据。  相似文献   

9.
利用2018年1月1日至12月31日在北京国家综合气象观测实验基地获得的风廓线雷达资料和同时期在河北香河的华北香河全大气层野外科学观测研究站获得的多普勒声雷达资料,比较分析北京城区和远郊区的低层(0~600 m)大气风场特征。结果表明:水平风速随高度增加而增大,同一高度层,远郊区的平均水平风速大于城区,且受湍流活动影响,城区和远郊区水平风速日变化趋势均为白天小于夜间。春、夏季城区风向受局地山谷风影响显著,以偏西南偏南气流为主,城区和远郊区秋冬季受冷空气活动影响,以西北风为主,且水平风向日变化特征具有季节性差异。远郊区低层大气垂直速度分布特征四季相同,正、负速度出现频率相当,日变化趋势为单峰型;城区冬春季有差异,在390 m高度以下正速度出现频率明显大于负速度,且日变化趋势在四季差异较大。北京城区和郊区风场特征差异与其他特大城市相比无特殊性,主要受大气环流、局地地形、下垫面环境等因素影响。  相似文献   

10.
本文利用四川地区1961~2016年141个气象站降水资料,分析了四川地区四季夜间和白天降水时空变化分布特征,结果表明:(1)四季夜间降水量占总降水量超过60%和夜间降水次数占总降水次数50%以上的区域分布相似且占四川大部分地区,盆地西部沿山地带以及川东南部分地区四季的夜间降水量和降水次数比值皆较大,攀西地区和川西高原部分地区在多数季节比值也相对较大,而川东北四季的夜间降水同白天降水基本相当。(2)四季的昼夜降水量、春季昼夜以及冬季白天的降水次数的气候趋势系数总体呈现为以盆地西部沿山边缘为分界,川西增加川东减少,增加和减少趋势的分布范围在不同季节有所增减;夏季和秋季的昼夜以及冬季夜间的降水次数除了高原部分地区为弱增加趋势外,四川地区整体表现为减少趋势,且秋季整个降水次数在四川东部以及攀西地区通过99%显著性检验水平。(3)整个四川地区白天和夜间降水次数呈线性减少而降水量在白天和夜间不同季节增减趋势不一致;总的来说,四季夜间降水的年代际变化较白天相对更明显,不同季节昼夜降水在不同年代的线性增减表现不一致,但秋季夜间和白天降水量和降水次数基本在2000年左右之前为线性减少趋势,之后为增加。   相似文献   

11.
This paper analyzes seasonal and diurnal variations of MODerate resolution Imaging Spectroradiometer (MODIS) land surface temperature (LST) data at ~1.1 km for the period of 2003–2011 over a region in West-Central Texas, where four of the world’s largest wind farms are located. Seasonal anomalies are created from MODIS Terra (~10:30 a.m. and 10:30 p.m. local solar time) and Aqua (~1:30 a.m. and 1:30 p.m. local solar time) LSTs, and their spatiotemporal variability is analyzed by comparing the LST changes between wind farm pixels (WFPs) and nearby non wind farm pixels (NNWFPs) using different methods under different quality controls. Our analyses show consistently that there is a warming effect of 0.31–0.70 °C at nighttime for the nine-year period during which data was collected over WFPs relative to NNWFPs, in all seasons for both Terra and Aqua measurements, while the changes at daytime are much noisier. The nighttime warming effect is much larger in summer than winter and at ~10:30 p.m. than ~1:30 a.m. and hence the largest warming effect is observed at ~10:30 p.m. in summer. The spatial pattern and magnitude of this warming effect couple very well with the geographic distribution of wind turbines and such coupling is stronger at nighttime than daytime and in summer than winter. Together, these results suggest that the warming effect observed in MODIS over wind farms are very likely attributable to the development of wind farms. This inference is consistent with the increasing number of operational wind turbines with time during the study period, the diurnal and seasonal variations in the frequency of wind speed and direction distribution, and the changes in near-surface atmospheric boundary layer (ABL) conditions due to wind farm operations. The nocturnal ABL is typically stable and much thinner than the daytime ABL and hence the turbine enhanced vertical mixing produces a stronger nighttime effect. The stronger wind speed and the higher frequency of the wind speed within the optimal power generation range in summer than winter and at nighttime than daytime likely drives wind turbines to generate more electricity and turbulence and consequently results in the strongest warming effect at nighttime in summer. Similarly, the stronger wind speed and the higher frequency of optimal wind speed at ~10:30 p.m. than that at ~1:30 a.m. might help explain, to some extent, why the nighttime LST warming effect is slightly larger at ~10:30 p.m. than ~1:30 a.m. The nighttime warming effect seen in spring and fall are smaller than that in summer and can be explained similarly.  相似文献   

12.
滇池区域性环流的数值模拟   总被引:3,自引:0,他引:3  
为了开发云南省滇池地区的磷资源,对云南滇池湖畔的中尺度环流状况进行了三维数值模拟,模式比较详细地考虑了各种物理过程,模拟结果与实测资料较吻合;滇池区域湖南白天为冷中心,夜间为暖中心;白天的垂直环流比夜间大得多,湖风比陆风影响范围也大得多,系统风对湖风影响较大。  相似文献   

13.
北京春季城市热岛特征及强热岛影响因子   总被引:11,自引:0,他引:11  
应用北京地区地面气象观测台1990-2004年4月的气温资料,分析了近15a北京春季城市热岛特征,结果表明:春季夜间城市热岛要强于白天。还分析了春季一个强热岛形成和减弱消失过程的气象影响因子,结果表明:北京春季夜间特定条件下存在强热岛,强热岛中心在白家庄、天安门、公主坟连线的主城区;白天强热岛会减弱消失。强热岛在夜间形成的原因是日落后郊区地面大气降温速率和幅度远大于城区地面大气。白天有日照的晴夜北京城、郊地面风场很弱(≤1.0m/s),多个测站甚至出现静风,同时城区垂直方向上15m高度以下持续存在很弱(≤1.5m/s)的风场,城区320m高度以下大气持续存在强逆温,这些因素共同促使春季强热岛的形成和维持。强热岛在白天减弱消失的原因是日出后太阳辐射的加热作用引起郊区地面大气升温速率和幅度大于城区地面大气,同时城区大气稳定度减弱、城区大气逆温消失、城郊地面风速增加。  相似文献   

14.
纳木错湖夏季典型大气边界层特征的数值模拟   总被引:9,自引:5,他引:4  
为了进一步检验分析纳木错湖对当地地方性环流、湖气能量交换及大气边界层的影响,在本文中使用美国NCAR新版MM5V3.7非静力中尺度模式,设计了有湖面、3/4湖面、1/2湖面及无湖四组试验,以NCEP再分析资料做初、边值条件,做了48 h三重嵌套模拟试验,对比中国科学院"纳木错圈层相互作用"综合观测站实测资料,说明该模式模拟性能良好。白天在纳木错湖风与念青唐古拉山北坡谷风共同作用下,在念青唐古拉山脊处汇合,形成一强水平切变及辐合上升运动,造成了该地夏季白天复杂多变的天气;夜间由于南岸湖风与山风叠加,使得整个区域为强大南风气流控制,这也补给了水汽和热量,也为白天不稳定运动提供了能量。对大气边界层特征的模拟结果表明:由于白天(夜晚)纳木错湖的存在有很好的降温(保温)作用,该湖表现出了明显的冷(暖)湖效应;纳木错湖对感热和潜热的影响有很强的日变化,白天湖面感热、潜热均小于周围陆地,夜间湖面有强潜热通量;纳木错湖使得白天湖区边界层顶低,陆区边界层顶高,夜间相反。这样的地方性环流和大气边界层特征的配合,是该地中小尺度天气剧烈变化的重要原因。  相似文献   

15.
苏州-无锡-常州城市带热岛效应个例研究   总被引:2,自引:0,他引:2  
应用WRF(weather research and forecasting)及其耦合的多层城市冠层模式BEP(building energy parameterization),对2013年8月13日长江三角洲地区一次高温天气过程进行了模拟.此次过程盛行东南风,风向与苏州-无锡-常州城市带走向一致.模拟结果表明:苏州-无锡-常州城市带热岛效应明显,热岛强度向下游城市逐渐增加;在东南风作用下,三座城市的热岛连成一片,形成了一个更强大的热岛环流.夜晚,边界层逐渐趋于稳定,热岛环流减弱,有利于热岛温度向下游地区输送.热岛效应导致城市边界层高度明显上升.白天太湖产生强盛的湖风对其周边城市影响显著,来自太湖的冷气团导致无锡和常州边界层内热岛强度明显下降,抑制城市热岛向上发展,削弱了无锡与常州两城市热岛间的联系.白天太湖使得无锡和常州边界层高度明显下降.  相似文献   

16.
苏州—无锡—常州城市带热岛效应个例研究   总被引:2,自引:1,他引:1       下载免费PDF全文
应用WRF(weather research and forecasting)及其耦合的多层城市冠层模式BEP(building energy parameterization),对2013年8月13日长江三角洲地区一次高温天气过程进行了模拟。此次过程盛行东南风,风向与苏州—无锡—常州城市带走向一致。模拟结果表明:苏州—无锡—常州城市带热岛效应明显,热岛强度向下游城市逐渐增加;在东南风作用下,三座城市的热岛连成一片,形成了一个更强大的热岛环流。夜晚,边界层逐渐趋于稳定,热岛环流减弱,有利于热岛温度向下游地区输送。热岛效应导致城市边界层高度明显上升。白天太湖产生强盛的湖风对其周边城市影响显著,来自太湖的冷气团导致无锡和常州边界层内热岛强度明显下降,抑制城市热岛向上发展,削弱了无锡与常州两城市热岛间的联系。白天太湖使得无锡和常州边界层高度明显下降。  相似文献   

17.
增暖背景下新疆昼夜降水的变化特征   总被引:1,自引:0,他引:1  
利用新疆地区89个台站1961~2005年昼、夜降水观测数据,分析了该地区昼夜降水过程的时空演变特征,目的是认识这个地区在年降水增加背景下昼夜间降水过程的变化特征及趋势。研究结果表明:(1)1961~2005年,多年平均的降水量为夜大于昼,且昼、夜降水量均呈显著增加趋势;夜降水量增长趋势大于昼降水量,昼、夜年降水量增长趋势分别占年总降水增长趋势的49%、51%,这种变化在南、北疆存在明显的区域差异。昼、夜降水量都存在由少到多的显著突变,但两者发生突变时间不同,昼降水量发生突变的时间为1986年,而夜降水量的突变点却发生在1991年。(2)昼降水日数小于夜降水日数,且昼、夜降水日数都呈显著增加趋势,昼降水日数增加趋势大于夜降水日数。昼、夜降水强度都呈显著增大趋势,夜降水强度及其增长趋势均大于昼降水强度。降水量增加的主要原因是由于降水日数的增多,降水强度对降水量影响较小。(3)昼、夜毛毛雨日数都呈显著减少趋势,昼毛毛雨日数及其减少趋势均大于夜毛毛雨日数。而强降水的日数和强度均呈现增加趋势;昼、夜强降水量和各自的总降水量有很好的相关,强降水量对总降水量的影响很大。引起这些昼、夜间降水变化特征差异的原因有待于进一步研究。  相似文献   

18.
鄂尔多斯盆地夜暴雨多   总被引:2,自引:0,他引:2       下载免费PDF全文
贺勤  邱东平  刘正奇  白月波 《气象》1997,23(7):46-50
该文用鄂尔多斯盆地及周围干旱、半干旱及沙漠地区34个气象台站37-44年夜暴雨资料进行了研究,分析了鄂尔多斯盆地及周围地区暴雨的昼夜分布,给出了暴雨昼夜强度极值,重点讨论了地形对夜暴雨的作用。  相似文献   

19.
The 2003–2006 observations were utilized to analyze the surface characteristics of summer land-sea breezes along the coastland of Guangxi and the Weather Research and Forecast model was applied to simulate the breeze structure on August 1–2,2006.Results show that 1) the intensity and distributions of the breezes reproduced from improved urban underlying surface were close to observations.In the daytime the coastwise urban band was a convergent belt of sea breeze,corresponding to the centers of torrential rains;in the nighttime hours the surface of the Gulf of Tonkin (the Vietnamese name) or the Northern Bay (the Chinese name) acted as a convergent zone of land breezes,likely to produce convective cloud cluster;2) the experiment on urbanization showed the heat island effect enhancing (weakening) the sea (land) breeze development.Furthermore,the heat island effect mitigated the atmospheric cooling via radiation over the cities in the night,weakening sinking motion correspondingly,thereby suppressing the dominant factor responsible for the steady development of temperature inversion.As a result,the inversion vigor was reduced greatly,but nevertheless no strong effect of the decreased subsidence was found upon the inversion height.  相似文献   

20.
大理苍山—洱海局地环流的数值模拟   总被引:4,自引:2,他引:2  
许鲁君  刘辉志  曹杰 《大气科学》2014,38(6):1198-1210
利用耦合了湖泊模型的WRF_CLM模式模拟了秋季大理苍山—洱海地区的局地环流特征。结果表明:模式对近地面温度、风向、风速的模拟与观测基本一致,模拟结果能较好地再现该地区山谷风和湖陆风相互作用的局地环流特征。在秋季,大理苍山的谷风起止时间为08:00~17:00(北京时,下同),湖风起止时间为09:00~19:00。局地环流受高山地形及洱海湖面影响明显,山谷风形成早于湖陆风1 h,夜间山风、陆风强盛于白天谷风、湖风。白天苍山谷风与洱海湖风的叠加作用会驱动谷风到达2600 m的高度,而傍晚最先形成的苍山山风则会减弱洱海的湖风环流。夜间盆地南部在两侧山风、陆风的共同作用下,形成稳定而持续的气旋式环流。日出以后,对流边界层迅速发展,边界层高度逐渐增高。陆地17:00温度达到最高,边界层高度也达到峰值2000 m,之后逐渐降低。日落后形成稳定边界层,边界层高度在夜间基本保持在100 m。相对于陆地,湖面白天边界层高度低300 m,夜间边界层高度高100 m。  相似文献   

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