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51.
藏北高原地区地表辐射出支和能量平衡的季节变化   总被引:15,自引:5,他引:10  
马伟强  马耀明  李茂善  Z.   《冰川冻土》2005,27(5):673-679
对青藏高原地区地表能量的研究是一个十分重要的问题.基于中日合作项目"全球协调加强观测计划之亚澳季风青藏高原试验"(CAMP/Tibet)在2001年8月至2002年9月的观测数据资料,分析研究了青藏高原藏北地区地表能量,即净辐射通量、感热通量、潜热通量和土壤热通量等的变化规律,获得了有关藏北高原地表能量的新认识.  相似文献   
52.
The current work examines the impact of the snow cover extent (SCE) of the Tibetan Plateau (TP) on the interannual variation in the summer (June?July?August) surface air temperature (SAT) over Central Asia (CA) (SAT_CA) during the 1979?2019 period. The leading mode of the summer SAT_CA features a same-sign temperature anomalies in CA and explains 62% of the total variance in SAT_CA. The atmospheric circulation associated with a warming SAT_CA is characterized by a pronounced high-pressure system dominating CA. The high-pressure system is accompanied by warm advection as well as descending motion over CA, favoring the warming of the SAT_CA. Analysis shows that the interannual variation in the summer SAT_CA is significantly positively correlated with the April SCE over the central-eastern TP. In April, higher than normal SCE over the central-eastern TP has a pronounced cooling effect on the column of the atmosphere above the TP and can persist until the following early summer. Negative and positive height anomalies appear above and to the west of the TP. In the following months, the perturbation forcing generated by the TP SCE anomalies lies near the western center of the Asian subtropical westerly jet (SWJ), which promotes atmospheric waves in the zonal direction guided by the Asian SWJ. Associated with this atmospheric wave, in the following summer, a significant high-pressure system dominates CA, which is a favorable condition for a warm summer SAT_CA.  相似文献   
53.
Diabatic heating by convection in the eyewall often produces an annular region of high potential vorticity (PV) around the relatively low PV eye in a strong tropical cyclone (TC). Such a PV ring is barotropically unstable and can encourage the exponential growth of PV waves. In this study, such instability and the subsequent nonlinear evolution of three TC-like vortices having PV rings with different degrees of hollowness on an f-plane are first examined using an unforced, inviscid shallow-water-equation model. Results show that the simulated eyewalls evolve similarly to those in the nondivergent barotropic model. It is also found that the polygonal eyewall structure can be decomposed into vortex Rossby waves (VRWs) of different wavenumbers with different amplitudes, allowing for wave-wave interactions to produce complicated behaviors of mesovortices in the TC eyewall. The same set of PV rings has been examined on a beta-plane. Although the beta effect has been rendered unimportant to the eyewall evolution due to the relatively small scale of the inner-core circulation, this study shows that the beta effect may erode the coherent structure of mesovortices in the eyewall of an initially hollow PV-ring vortex. Mesovortices modeled on the beta-plane with a greater beta parameter tend to experience an earlier breakdown and enhanced radial gradients of the basic-state (azimuthally mean) angular velocity, followed by wave-wave, wave-flow interactions, leading to earlier merger and axisymmetrization processes. This result implies that the beta effect could be one of the forcings that shorten the lifetime of quasi-steady mesovortices in the eyewall of real TCs.  相似文献   
54.
The seasonal and diurnal variations of cloud systems are profoundly affected by the large-scale and local environments. In this study, a one-year-long simulation was conducted using a two-dimensional cloud-resolving model over the Eastern Tibetan Plateau (ETP) and two subregions of Eastern China: Southern East China and Central East China. Deep convective clouds (DCCs) rarely occur in the cold season over ETP, whereas DCCs appear in Eastern China throughout the year, and the ETP DCCs are approximately 20%?30% shallower than those over Eastern China. Most strong rainfall events (precipitation intensity, PI> 2.5 mm h?1) in Eastern China are related to warm-season DCCs with ice cloud processes. Because of the high elevation of the ETP, the warm-season freezing level is lower than in Eastern China, providing favorable conditions for ice cloud processes. DCCs are responsible for the diurnal variations of warm-season rainfall in all three regions. Warm-season DCCs over the ETP have the greatest total cloud water content and frequency in the afternoon, resulting in an afternoon rainfall peak. In addition, rainfall events in the ETP also exhibit a nocturnal peak in spring, summer, and autumn due to DCCs. Strong surface heat fluxes around noon can trigger or promote DCCs in spring, summer, and autumn over the ETP but produce only cumulus clouds in winter due to the cold and dry environment.  相似文献   
55.
Precipitation over the Tibetan Plateau (TP) is important to local and downstream ecosystems. Based on a weighting method considering model skill and independence, changes in the TP precipitation for near-term (2021–40), mid-term (2041–60) and long-term (2081–2100) under shared socio-economic pathways (SSP1-1.9, SSP1-2.6, SSP2-4.5, SSSP3-7.0, SSP5-8.5) are projected with 27 models from the latest Sixth Phase of the Couple Model Intercomparison Project. The annual mean precipitation is projected to increase by 7.4%–21.6% under five SSPs with a stronger change in the northern TP by the end of the 21st century relative to the present climatology. Changes in the TP precipitation at seasonal scales show a similar moistening trend to that of annual mean precipitation, except for the drying trend in winter precipitation along the southern edges of the TP. Weighting generally suggests a slightly stronger increase in TP precipitation with reduced model uncertainty compared to equally-weighted projections. The effect of weighting exhibits spatial and seasonal differences. Seasonally, weighting leads to a prevailing enhancement of increase in spring precipitation over the TP. Spatially, the influence of weighting is more remarkable over the northwestern TP regarding the annual, summer and autumn precipitation. Differences between weighted and original MMEs can give us more confidence in a stronger increase in precipitation over the TP, especially for the season of spring and the region of the northwestern TP, which requires additional attention in decision making.  相似文献   
56.
A closed-cell marine stratocumulus case during the Aerosol and Cloud Experiments in the Eastern North Atlantic (ACE-ENA) aircraft field campaign is selected to examine the heterogeneities of cloud and drizzle microphysical properties and the aerosol-cloud-precipitation interactions. The spatial and vertical variabilities of cloud and drizzle microphysics are found in two different sets of flight legs: Leg-1 and Leg-2, which are parallel and perpendicular to the cloud propagation, respectively. The cloud along Leg-2 was close to adiabatic, where cloud-droplet effective radius and liquid water content linearly increase from cloud base to cloud top with less drizzle. The cloud along Leg-1 was sub-adiabatic with lower cloud-droplet number concentration and larger cloud-droplet effective, but higher drizzle droplet number concentration, larger drizzle droplet median diameter and drizzle liquid water content. The heavier drizzle frequency and intensity on Leg-1 were enhanced by the collision-coalescence processes within cloud due to strong turbulence. The sub-cloud precipitation rate on Leg-1 was significantly higher than that along Leg-2. As a result, the sub-cloud accumulation mode aerosols and CCN on Leg-1 were depleted, but the coarse model aerosols increased. This further leads to a counter-intuitive phenomenon that the CCN is less than cloud-droplet number concentration for Leg-1. The average CCN loss rates are ?3.89 \begin{document}$\mathrm{c}{\mathrm{m}}^{-3}\;{\mathrm{h}}^{-1}$\end{document} and ?0.77 \begin{document}$\mathrm{c}{\mathrm{m}}^{-3}\;{\mathrm{h}}^{-1}$\end{document} on Leg-1 and Leg-2, respectively. The cloud and drizzle heterogeneities inside the same stratocumulus can significantly alter the sub-cloud aerosols and CCN budget. Hence it should be treated with caution in the aircraft assessment of aerosol-cloud-precipitation interactions.  相似文献   
57.
甲藻孢囊可以为赤潮提供种源, 还可用于指示海区富营养化状态。以往对甲藻孢囊分布的研究多集中于开放性水域和自然形成的海湾中, 在半封闭性人工海湾中的研究较少。梅山湾原属南北开放水域, 但于2012~2017年在向陆侧建设了北坝和南坝, 使其成为半封闭式人工海湾。通过对梅山湾内外海域采集到的6份表层沉积物样品分析, 共鉴定出37种甲藻孢囊, 其丰度介于237~1 054 cysts/g。甲藻孢囊平均丰度湾内高于湾外, 推测是筑堤后湾内水动力减弱, 悬浮物质浓度降低, 水体透明度升高, 水中颗粒物质沉积速率降低和水体富营养化所导致。调查海域甲藻孢囊物种多样性指数介于1.63~2.47, 均匀度指数介于0.58~0.82, 两者湾外均显著高于湾内, 反映出湾内生态系统稳定性更弱, 发生赤潮的可能性更高。研究共检出16种赤潮种和9种有毒甲藻孢囊, 产毒种及赤潮种丰度和种类占比湾内都高于湾外, 优势种有原多甲藻(Protoperidinium sp.)、美利坚原多甲藻(Protoperidinium americanum)、透镜翼甲藻(Diplopsalis lenticula)、微小亚历山大藻(Alexandrium minutum)、链状裸甲藻(Gymnodinium catenatum)和锥状斯氏藻(Scrippsiella trochoidea)。“筑堤效应”加剧了湾内外表层沉积物中甲藻孢囊分布的差异性, 也加重了湾内有毒有害赤潮发生的风险, 故应重视对湾内有毒有害甲藻的监测。  相似文献   
58.
为掌握江苏全海域刀鲚资源状况,为后期长江禁捕效果评估提供支撑资料, 2017年5月、8月、11月与2018年2月在江苏海域(31°45′~35°00′N, 119°30′~125°00′E)分别进行了4次渔业资源调查, 并绘制了尾数资源密度与重量资源密度分布图, 利用SPSS 26软件对当年的刀鲚资源状况进行评估, 积累长江禁渔前刀鲚鱼种系统数据。结果表明: (1) 刀鲚除秋季(11月)与冬季(2月)存在部分群体分布于“机轮拖网渔业禁渔区线”(以下简称“禁渔区线”)外侧之外, 其余时间均在江苏近岸海域(江苏境内“禁渔区线”到海岸线之间的水域)栖息洄游, 江苏近岸海域是刀鲚主要栖息索饵水域; (2) 春季(5月)影响江苏海域刀鲚分布的环境因子较多, 主要有水温、盐度、溶氧、深度、透明度等, 这可能与刀鲚正处于产卵旺期, 对环境因子变化敏感有关; 夏季(8月)影响江苏海域刀鲚分布的环境因子是透明度, 此时刀鲚刚结束产卵不久, 返回近海后急需补充能量, 丰富的营养物质成为影响其分布的主要因素, 此时为北半球夏季, 江苏省境内60余条入海河流正值汛期, 入海河水携带大量的营养物质, 成为返海刀鲚优良的索饵场; 秋季水温降低, 刀鲚开始越冬洄游, 水温成为影响刀鲚分布的重要因素; 冬季, 随着刀鲚性腺再次发育成熟, 新一轮的生殖洄游开始, 刀鲚栖息水层上升, 水深成为影响冬季刀鲚分布的关键因素; (3) 与长江禁捕后其他研究者在长江口收集到的刀鲚规格、全长-体重拟合方程综合对比, 发现自“长江十年禁捕”逐步实施后, 刀鲚种群渔获规格逐渐增大, 全长、体重开始逐渐增长, 长江刀鲚种群呈现资源恢复趋势。  相似文献   
59.
大气CO2浓度增加,大气辐射平衡调整,将影响到大气的辐射加热,对季风环流的产生影响.CMIP6结果显示,大气CO2浓度增加,可减弱季风区主雨季对流层高,低层的辐射加热,加强对流层中层的辐射加热.各季风区加热响应的峰值层次不同:亚洲季风区平均层次最高(500-775 hPa),北非,南美,澳洲季风区次之(550-600 hPa),北美(600hPa)和南非季风区(600-775 hPa)较低.各季风区水云的垂直分布及其长波辐射效应的变化是形成峰值层次差异的主因.  相似文献   
60.
利用1961—2017年中国各省市701个完整时间序列逐日气象资料的台站数据,以《民用建筑供暖通风与空气调节设计规范》(GB50736—2012)中的供暖标准为指标,采用滑动5 d平均方法,从气温和体感温度两种角度,分析了中国南方地区省市供暖的必要性。结果表明:从气温计算的采暖期看,江苏省、安徽省北部、四川省西部、贵州省西部有集中供暖的必要性;从体感温度角度计算的采暖期看,江苏省、安徽省、湖北省东部和北部、湖南省中部、贵州省中部、四川省西部、浙江省北部有集中供暖的必要性。从气温和体感温度两个角度分析,不仅考虑了原有的标准,还考虑了空气湿度等其他气象要素的影响,能为中国南方地区省市冬季更好地解决取暖问题提供参考。  相似文献   
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