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731.
732.
利用常规资料、探空资料和雷达垂直风廓线资料,对2012年11月5-6日、11-12日吉林省东南部山区两次雨转暴雪过程进行了对比分析。结果表明,两次过程的影响系统是高空冷涡配合不同发展阶段的地面气旋东移发展,强降水性质分别为锢囚锋区降水和地面气旋的暖区降水。系统的动力抬升条件与长白山区地形抬升作用结合有利于强降水的产生和加强,当天气系统从不同路径进入山区,强降水的位置不同。低层充足的水汽是大到暴雪发生的重要条件之一,两次过程的水汽分别来自东南风带来的海上暖湿气流和槽前西南急流的水汽输送。雨转雪和纯雪持续的主要原因是系统带来的冷空气降温,气温的降低可以促使雨转雪的发生。 相似文献
733.
0103号台风"榴莲"强度变化特征及暴雨成因的分析 总被引:11,自引:5,他引:11
应用天气图、探空资料、台风年鉴,逐小时降水和TBB资料,对0103号台风登陆后强度的变化和暴雨过程进行了分析,发现0103号台风暴雨过程是由两次中尺度暴雨过程构成的,分别发生于迅速减弱和持续阶段.通过对200 hPa西风槽的发展,低空急流和热带对流云图以及台风登陆前后台风和暴雨区热力、动力场特征的分析,取得一些初步的结果,这些结果将对今后进一步的研究和预报有一定的帮助. 相似文献
734.
In this study, a coupled atmosphere-surface “climate feedback-response analysis method” (CFRAM) was applied to the slab ocean model version of the NCAR CCSM3.0 to understand the tropospheric warming due to a doubling of CO2 concentration through quantifying the contributions of each climate feedback process. It is shown that the tropospheric warming displays distinct meridional and vertical patterns that are in a good agreement with the multi-model mean projection from the IPCC AR4. In the tropics, the warming in the upper troposphere is stronger than in the lower troposphere, leading to a decrease in temperature lapse rate, whereas in high latitudes the opposite it true. In terms of meridional contrast, the lower tropospheric warming in the tropics is weaker than that in high latitudes, resulting in a weakened meridional temperature gradient. In the upper troposphere the meridional temperature gradient is enhanced due to much stronger warming in the tropics than in high latitudes. Using the CFRAM method, we analyzed both radiative feedbacks, which have been emphasized in previous climate feedback analysis, and non-radiative feedbacks. It is shown that non-radiative (radiative) feedbacks are the major contributors to the temperature lapse rate decrease (increase) in the tropical (polar) region. Atmospheric convection is the leading contributor to temperature lapse rate decrease in the tropics. The cloud feedback also has non-negligible contributions. In the polar region, water vapor feedback is the main contributor to the temperature lapse rate increase, followed by albedo feedback and CO2 forcing. The decrease of meridional temperature gradient in the lower troposphere is mainly due to strong cooling from convection and cloud feedback in the tropics and the strong warming from albedo feedback in the polar region. The strengthening of meridional temperature gradient in the upper troposphere can be attributed to the warming associated with convection and cloud feedback in the tropics. Since convection is the leading contributor to the warming differences between tropical lower and upper troposphere, and between the tropical and polar regions, this study indicates that tropical convection plays a critical role in determining the climate sensitivity. In addition, the CFRAM analysis shows that convective process and water vapor feedback are the two major contributors to the tropical upper troposphere temperature change, indicating that the excessive upper tropospheric warming in the IPCC AR4 models may be due to overestimated warming from convective process or underestimated cooling due to water vapor feedback. 相似文献
735.
Based upon the climate feedback-responses analysis method, a quantitative attribution analysis is conducted for the annual-mean surface temperature biases in the Community Earth System Model version 1 (CESM1). Surface temperature biases are decomposed into partial temperature biases associated with model biases in albedo, water vapor, cloud, sensible/latent heat flux, surface dynamics, and atmospheric dynamics. A globally-averaged cold bias of ?1.22 K in CESM1 is largely attributable to albedo bias that accounts for approximately ?0.80 K. Over land, albedo bias contributes ?1.20 K to the averaged cold bias of ?1.45 K. The cold bias over ocean, on the other hand, results from multiple factors including albedo, cloud, oceanic dynamics, and atmospheric dynamics. Bias in the model representation of oceanic dynamics is the primary cause of cold (warm) biases in the Northern (Southern) Hemisphere oceans while surface latent heat flux over oceans always acts to compensate for the overall temperature biases. Albedo bias resulted from the model’s simulation of snow cover and sea ice is the main contributor to temperature biases over high-latitude lands and the Arctic and Antarctic region. Longwave effect of water vapor is responsible for an overall warm (cold) bias in the subtropics (tropics) due to an overestimate (underestimate) of specific humidity in the region. Cloud forcing of temperature biases exhibits large regional variations and the model bias in the simulated ocean mixed layer depth is a key contributor to the partial sea surface temperature biases associated with oceanic dynamics. On a global scale, biases in the model representation of radiative processes account more for surface temperature biases compared to non-radiative, dynamical processes. 相似文献
736.
江苏沿海对虾亲虾入室期规律分析及其预报 总被引:1,自引:0,他引:1
根据多年的生产试验,分析总结了江苏沿海对虾适宜入室的气象指标的分布特征以及不同地区最早、最适、最迟入室指标出现时间之间的相关性,并以射阳县、南通市为代表建立起预报方程,为江苏沿海做好亲虾入室的气象服务工作提供了理论依据和新的途径。 相似文献
737.
选取2014年11月6—11日一次典型污染过程,以北京城区为重点关注的目标区域,基于印痕分析技术判别对该区域影响较大的敏感源区,设计重点区域减排试验和敏感源区逐日动态减排试验,利用区域化学传输模式WRF-Chem进行模拟对比。结果显示:上述两种方案对源强较高的减排当地PM2.5浓度降低均有明显的改善作用,且在传输作用下会辐射影响到下游地区;但仅就目标区域而言,敏感源区减排方案的减排效率要远远高于重点区域减排方案。为了验证基于敏感源分析的动态减排方法的适用性,进一步开展了不同季节以及不同背景浓度的个例模拟。结果表明:基于敏感源区分析结果制定动态逐日减排措施,可降低削减成本、提高减排效率,以达到最具经济环境效益的减排效果。 相似文献
738.
上海城市二氧化碳排放空间特征 总被引:1,自引:0,他引:1
构建上海1 km CO2排放网格,分析市域(UB1)、市辖区(UB2)、建成区(UB3)和城区(UB4)4个城市范围的CO2排放特征。上海市域CO2排放空间格局是以中心城区为核心,排放水平向外递减,形成了3个梯度。空间自相关分析表明,排放在空间上存在显著的集聚效应,部分地区高强度的经济活动和能源活动对周边区域的排放有显著影响。UB4是上海城市的最佳表征,2007年UB4内CO2排放达到1.89亿t,人均排放12.04 t;UB4排放占UB1排放的75.40%,UB1人均排放比UB4人均排放高12%。上海城市化和工业化在空间上的高度重合,导致高排放源集聚于UB4内,形成UB4的高排放特征。个别网格的排放量已经占到区域或者城市总排放量的10%~20%;前10高和前100高排放网格,其累积排放总量分别占据了3个城市范围(UB1、UB3和UB4)总排放量的60%和80%以上。 相似文献
739.
不同边界层参数化方案在暴雨数值模拟中的对比分析 总被引:3,自引:1,他引:3
本文利用非静力平衡的中尺度模式(MM5),通过对一次华南锋前暖区暴雨的数值模拟,比较了3种边界层参数化方案的作用。结果表明:从24小时累积降水的分布来看,MRF方案的预报与实况对比效果最好,其次是Blaekadar高分辨率PBL模式,最差是no PBI,方案。分析MRF方案的输出结果,发现对应每个时刻的累积雨团上空,925hPa都有较强的辐合辐散偶极子与之相配合,而在300hPa则有较强的辐散。不同边界层方案模拟的辐散场有一定的差别,导致了降水的不同预报效果。 相似文献
740.
It is well known that during an El Niño-Southern Oscillation (ENSO) warm event, drought occurs in regions of northeastern (NE) Australia, leading to anomalously low annual rainfall. The present study explores fluctuations of this ENSO-rainfall relationship. It is found that the relationship tends to weaken when the linearly detrended global mean temperature is rising or particularly high, as in the period of 1931–45 period and since the late 1970s. Prior to a weakening, a correlation pattern of increased rainfall during El Niño events is seen first in northwestern Australia, then in eastern and southeastern Australia, and eventually in NE Australia. The 1931–45 period was particularly intriguing, when in terms of rainfall variability over NE Australia, the interannual ENSO-rainfall relationship went through a process of weakening, reversal, and rapid recovery. Features associated with the reversal are therefore examined and these features are: (1) the global background anomaly pattern (upon which internnal ENSO events operate) is ENSO-like; (2) ENSO sea surface temperature (SST) anomalies in tropical Pacific are weaker compared with those averaged over all ENSO events, whereas SST anomalies in the mid- to-high latitude Pacific (which have opposing polarity to those in tropical Pacific) are larger; (3) there is strong coherence between ENSO and variability in northern mid- to high-latitudes; and (4) the relationship that an El Niño event contributes to a warming anomaly of global mean SST weakens. Possible interrelationship among these features are discussed. 相似文献