首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到17条相似文献,搜索用时 125 毫秒
1.
利用CloudSat卫星资料2B-CLDCLASS和2B-CWC-RVOD数据集,分别揭示了层云与层积云的云粒子等效半径、数浓度及含水量等微物理属性的垂直分布特征及其季节变化规律。结果表明:层云所在的云层高度比层积云高,特别是春季,层云可以延伸到11.0 km处,而层积云云层所在高度最高出现在夏季,最高延伸到8.5 km处。层云中的冰水分布在1.0~11.0 km,液态水分布在0~9.0 km,而层积云的冰水和液态水均分布在0~9.0 km。层云与层积云的冰粒子等效半径、水云粒子数浓度、液态水含量呈现随云层高度的增加而减小的趋势,冰粒子数浓度随云层高度增加呈增大趋势,冰水含量呈峰值分布,峰值出现在6~10 km范围内。各季节层积云粒子等效半径、粒子数浓度及水含量的最大值均大于层云的对应值,从这方面看,层积云更适合作人工增水对象。  相似文献   

2.
天山山脉是新疆重要的水源地,分析这一区域降水云的宏观和微观物理属性的垂直和水平分布,对于科学高效地开展人工增水作业具有重要意义。利用CloudSat和Aqua卫星资料对天山山脉3次强降水过程云高、云厚、冰粒子等效半径和直径(IER、IED)、水粒子等效半径(LER)、冰水含量(IWC)、液态水含量(LWC)、冰水路径(IWP)、液态水路径(LWP)的分析表明:(1)天山山脉强降水云分布在0.9~9.4 km范围内,天山东、西部云底偏低、云体偏厚,而中部云底偏高、云体偏薄。降水云占有率天山中部、东部分别为5%,西部为15.6%。(2)天山山脉强降水云IER以0~60μm为主,LER以0~5μm为主,IWC和LWC集中在0~50 mg·m~(-3),强降水云从低层到高层这些微物理量的低值段占优势,天山山脉西部、中部这些微物理量的低值段随高度呈单峰分布,西部和中部峰值分别出现在云层下部和中上部;天山山脉东部这些微物理量的低值段随高度呈双峰分布,极大值出现在云层下部和上部。(3)天山南脉、天山西部强降水云的IED较小,而天山中部、东部较大;天山中部云的LER较大,天山东部、西部、天山南脉较小;IWP从大到小依次排序为中部、东部、西部、天山南脉;天山中部云的LWP略大于天山西部和东部,天山南脉最小。  相似文献   

3.
利用西北干旱半干旱区一次飞机探测资料、卫星资料,分析了层状云微物理结构以及作业前后云微物理变化,结果表明:(1) 此次层状云系垂直结构配置为冷暖两层,云层发展厚实。云的垂直和水平分布极不均匀。相对层积云,高层云小云粒子浓度低,大云粒子浓度高,液态含水量高。小云粒子浓度尤其是峰值区域与平均直径呈明显反相关。大于60个·cm-3和35个·L-1的小云、大云粒子浓度分别主要由3.5~10 μm、50~200 μm粒径段决定。(2) 不同高度云粒子谱为单峰或双峰分布,总体呈单调递减趋势,但云形成和增长条件存在差异。强可播、不可播和可播性冷云粒子谱基本符合负幂指数的单调递减规律,云粒子浓度差异较大,自然冰晶浓度不可播云较高,可播云次之,强可播云较低。(3) 作业后小云粒子浓度明显降低,在6.5~20 μm粒径段降低了2个量级左右,大云粒子浓度明显增加,谱宽增大,尤其在大于150 μm粒径段。  相似文献   

4.
利用NASA发布的2008—2015年CloudSat卫星的2B-CWC-RO、2B-CLDCLASS、2C-SNOW-PROFILE和地面气象站的观测资料,对北疆沿天山及其周边区域内21次强降雪天气降雪前和降雪期间卫星过境时云宏微观特征进行了对比分析。本文将研究区域分为了北疆沿天山西部和中部地区,分析结果表明:(1)降雪前和降雪期间的云类型以层云、积云、高层云和深对流云为主。(2)降雪前冰粒子等效半径均值分布在58.65~67.29 μm之间,冰粒子数浓度的均值在41.2~76.5 L-1之间,冰水含量的均值在25.4~135.1 mg·m-3之间,雪水含量均值在28.0~88.0 mg·m-3之间,降雪强度均值在0.08~0.36 mm·h-1之间。(3)降雪前冰粒子等效半径、冰粒子数浓度、冰水含量、雪水含量和降雪强度均值分别比降雪期间大2.9 %、6.2 %、34.4 %、36.4 %和18.7 %,且高值区主要集中在北疆沿天山西部地区。  相似文献   

5.
塔克拉玛干沙漠不同下垫面太阳总辐射比较   总被引:2,自引:1,他引:1  
本文运用统计学方法,分析并比较了塔克拉玛干沙漠绿洲-沙漠过渡带(肖塘、哈德)与沙漠腹地(塔中)总辐射的气候学特征。结果表明:沙漠腹地(塔中)总辐射年总量高于绿洲-沙漠过渡带(肖塘、哈德),塔中、肖塘和哈德年总量分别为6 515.0 MJ·m-2、5 666.4 MJ·m-2和5 774.5 MJ·m-2。春、夏、秋、冬四季变化幅度,塔中高于肖塘和哈德,肖塘与哈德相近;3个观测点均为夏季最大、冬季最小、春季高于秋季。塔中月总量最大值出现时间(6月)早于肖塘和哈德(7月),最小值均在12月;塔中月总量最大值比肖塘和哈德分别高99.4 MJ·m-2和81.9 MJ·m-2。平均日变化表现为早晚小、正午12:00最大。沙尘暴天气下总辐射被明显削弱,日变化波动大。肖塘、哈德和塔中沙尘暴日的峰值分别减少40.3%、56.2%和53.0%;日总量分别减少41.6%、57.8%和61.2%。沙尘暴日的后续天气仍受到沙尘的明显影响,只有当整个沙尘天气过程结束其日变化曲线才恢复。沙尘天气日,小时平均值>500 W·m-2的总辐射明显被削弱,主要向低值区集中,分布在高值区的概率减少。总辐射与太阳高度角的变化一致,相同太阳高度角下晴天总辐射高于沙尘天。  相似文献   

6.
根据Aqua MODIS 2级云产品和Cloudsat的2级产品资料,结合降水数据和MODIS L1B级辐射率数据,对发生在京津冀地区夏季的三次强降水过程中冰云的宏微观物理量的特征进行分析,并探究这些物理量和降水强度的关系。结果表明:在水平分布中,强降水过程中降水强度高值区内云相为冰云,冰云云顶高度在8~17 km,冰云粒子有效半径、冰云光学厚度、冰水路径分别最高可达60 μm、 150、 5 000 g?m-2;冰云光学厚度、冰水路径、冰云云顶高度随降水强度增大而增大。在垂直分布中,冰云主要分布在3.5 km以上,发生强降水站点的冰云为深对流云,冰云粒子有效半径、冰水含量、冰云粒子数浓度分别最高可达150 μm、 3 000 mg?m-3 、 500 L-1;冰云粒子有效半径高值区存在于云层中下部,且随高度上升而减小,冰云粒子数浓度高值区存在于云层中上部,且随高度上升而增加,冰水含量高值区则存在于云层中部;冰云粒子有效半径、冰水含量、冰云粒子数浓度在9 km以上随降水强度增大而增大。  相似文献   

7.
根据天山哈密榆树沟流域地下水的pH 值、总可溶性固体(TDS)、电导率(EC)和主要化学离子的测定,运用综合特征描述法、三角图示法、相关性分析和主要离子比值法,探讨了流域地下水的水化学特征及其形成原因。分析结果表明:地下水的pH 值为中性略偏碱性;阳离子中Ca2+ 质量浓度含量最高,阴离子中HCO3-浓度最高,阳离子质量浓度序列为Ca2+ >Na+ >Mg2+ >K+,阴离子质量浓度序列为HCO3->SO42- >Cl- >NO3-;该流域地下水主要离子类型为HCO3--Ca2+ ;TDS 含量分别为104.33 mg·L-1和99 mg·L-1,属于弱矿化度水;地下水中离子组成主要受碳酸盐风化作用的影响。  相似文献   

8.
甘肃河西山地土壤有机碳储量及分布特征   总被引:1,自引:0,他引:1  
山地土壤具有强异质性和较高的碳密度,研究山地土壤有机碳的储量、空间分布特征和影响因素,对理解未来气候变化情景下该区土壤碳-大气反馈具有重要意义。河西山地地形复杂,水热梯度明显,是研究土壤有机碳空间格局的理想区域。利用河西山地126个土壤剖面数据,分析了0~100 cm土壤有机碳的储量、空间分布特征及其与环境因素的关系。结果表明:河西山地0~100 cm土壤有机碳密度均值15.04±7.24 kg·m-2,区域土壤有机碳储量1.37±0.66 Pg,其中50%储存在高寒草甸和亚高山灌丛草甸。研究区土壤有机碳密度从高到低依次为亚高山灌丛草甸(41.15±18.47 kg·m-2)、山地草甸草原(40.26±9.59 kg·m-2)、山地森林(34.57±14.52 kg·m-2)、高寒草甸(29.19±14.58 kg·m-2)、山地草原(19.28±11.33 kg·m-2)、荒漠草原(9.83±4.14 kg·m-2)、高寒草原(8.59±2.47 kg·m-2)、高寒荒漠(5.89±3.18 kg·m-2)、草原化荒漠(5.16±3.06 kg·m-2)、温带荒漠(5.00±3.35 kg·m-2)。土壤有机碳的空间分布与地形和气候因子显著相关。土壤有机碳密度随着海拔的升高呈现出先增加后减少的趋势,阴坡土壤有机碳密度显著高于阳坡和半阴坡。土壤有机碳密度随年平均降水量增多而增多,随年平均温度的升高呈现出先增加后减少的趋势。  相似文献   

9.
以黄土高原典型草原为对象,采用静态箱-红外分析仪联用法进行野外原位试验,研究氮添加对生态系统CO2通量的影响。设置6个氮添加水平,分别为N0(0)、N1(1.15 g·m-2·a-1)、N2(2.3 g·m-2·a-1)、N3(4.6 g·m-2·a-1)、N4(9.2 g·m-2·a-1)和N5(13.8 g·m-2·a-1),氮素类型为尿素((NH22CO)。结果表明:氮添加处理没有改变生态系统碳交换的季节动态趋势,但是增加了生态系统净碳交换能力(NEE)、生态系统呼吸(ER)和总生态系统生产力(GEP)的峰值。N2、N3、N4、N5处理的NEE生长季绝对累积量分别比对照增加62%、45%、72%和48%;ER累积量分别增加66%、69%、78%、70%;GEP累积量分别增加65%、66%、77%、68%。氮添加处理增强了黄土高原典型草原植物生长季的碳汇功能。0~10 cm层土壤温度和湿度是影响黄土高原典型草原生态系统净碳交换的重要因素。  相似文献   

10.
海冰生物群落是北极生态系统的重要组成部分,在北冰洋初级生产和碳循环中扮演着重要角色。本文利用荧光显微分析技术对2012年度夏季采集于北冰洋中心区的浮冰生物群落进行了分析,结果显示:柱总生物量平均为105.85±53.41 mgC •m-2,其中细菌占生物量的47.2%,而后依次是硅藻(26.7%),鞭毛虫(18.2%),鞭毛藻(6.9%)和纤毛虫(1.0%)。最高纬站位(123°43.454′E 87°39.598′N)出现冰底鞭毛藻藻华现象,生物量可达329.6 μg C•L-1,该站位生物群落处于硅藻藻华后期,海冰上层存在较大程度的融冰作用,底部冰芯营养盐N/P比较高,可能形成有利于鞭毛藻生长的小生境。与已有研究结果的对比表明,近年来夏季北极海冰的快速融化对浮冰生物群落结构产生了明显影响,异养类群生物量升高,细菌取代硅藻成为优势类群。  相似文献   

11.
Autotrophic and heterotrophic flagellates, microalgae and ciliates sampled at four stations in the White Sea in April 2002 were studied using epifluorescence microscopy. The concentrations of phototrophic 1.5 μm algae in the middle and lower part of the ice core were very high: up to 6.1 ± 108 cells I−1 and 194 μg C I−1. Heterotrophic algae made up the largest proportion of the nanoplankton (2-20 μm) and microplankton (20-200 μm) at depths 10-25 m below the ice. The proportion of ciliates ranged from about 0.01% to 18% at different stations and depths. Most of the ciliate biomass in the ice was made up of typical littoral zone species, whereas the water under the ice was dominated by phototrophic Myrionecta rubra . Ice algae, mainly flagellates in the upper ice layer and diatoms in the bottom ice layer, supported the proliferation of heterotrophs, algae and ciliates in early spring. Small heterotrophs and diatoms from the ice may provide food for early growth and development of pelagic copepods. Mass development of the ice algae in early spring appears typical for the seasonal ice of the White Sea. Ice algae differ in species composition from the spring pelagic community and develop independently in time and space from the spring phytoplankton bloom.  相似文献   

12.
罗贤  何大明  季漩  陆颖  李运刚 《地理科学》2016,36(1):107-113
利用长序列观测记录,分析怒江流域中上游1960~2009年枯季气温和降水的变化规律,探讨近50 a来该流域中上游枯季径流变化特征及其对气候变化的响应规律。结果表明:怒江流域中上游冬季和春季气温均有上升趋势; 怒江流域中上游春季和冬季降水量均有增加的趋势;怒江干流道街坝站冬季和春季平均流量都有显著的增加趋势;无论是年最小1、7、30及90 d流量等枯季极值流量,还是75%,90%,95%等不同保证率枯水径流特征值,1990 s和2000 s均远高于其他年代,说明20世纪90年代以来怒江流域枯水径流有较为明显的增长。  相似文献   

13.
他念他翁山中段位于横断山脉西部,保留着良好的第四纪冰川遗迹,论文以该地区第四纪冰川沉积物为主要研究对象,通过光释光(Object-source lighting, OSL)测年、粒度、磁化率、矿物及化学元素分析等方法,探讨研究区第四纪冰川沉积物在不同时期的沉积学、矿物学、环境磁学以及元素地球化学特征,结合相关环境指标分析该区的环境特点。研究表明:① 冰川沉积物总体沉积特征是大小混杂、无层理、无分选、风化程度由倒数第二次冰期到新冰期依次减弱。② 研究区冰川沉积物细粒部分在粒度频率曲线上主要呈现双峰或多峰,反映出沉积物的物质来源复杂、形成动力多样。冰碛物的平均粒径在空间上表现出距冰川作用源头越远粒径越小的规律,主要是受冰川作用强度和风化时间长短的影响。③ 冰川沉积物的磁化率值为8.72×10-8~298.00×10-8 m3·kg-1,其中冰水沉积物磁化率的平均值(178.51×10-8 m3·kg-1)和波动幅度(17.43×10-8~298.00×10-8 m3·kg-1)要大于冰碛物(平均值19.82×10-8 m3·kg-1,波动幅度8.72×10-8~42.95×10-8 m3·kg-1),反映出磁铁矿集中分布的粒级与冰水沉积物组成的粒级相似。④ 地球化学和矿物学指标反映青古隆地区古气候的总体特征为寒冷干燥,其中在末次冰盛期时气候最为干旱,末次冰期中冰阶时气候较为干旱、降水量相对于末次冰盛期有所增加,倒数第二次冰期降水量相对于末次冰盛期和末次冰期中冰阶较多,但气温较低。  相似文献   

14.
Monica Sund 《Polar research》2006,25(2):115-122
Surging glaciers are common in Svalbard yet relatively few glaciers have been observed during a surge. This paper presents observations of the currently surging glacier Skobreen, in southern Spitsbergen. The study is based on examinations of new and archival photographs and maps. Skobreen, an 18 km2 valley glacier terminating into the lower part of the glacier Paulabreen, has not been registered previously as a surging glacier. Skobreen experienced a build-up in its upper part, while there has been a lowering of the surface in the terminal region. Photographs from 1990 show incipient crevassing in the upper part. Photographs from 2003 show a slight advance of the terminus and marginal crevassing, indicating an initiation period of about 15 years for a surge of this glacier. In June 2005 transverse crevassing appeared in the upper part of the glacier, while the middle section moved as a block with strong shear margins and a pronounced drawdown of the ice surface. No traces of a surge front could be seen in the crevasse pattern. However, the crevasse pattern indicates an initiation area in the transition zone between the transverse crevassing in the upper part and the block of ice in the middle region.  相似文献   

15.
Both interchannel wetlands and multi-channels are crucial geomorphologic units in an anastomosing river system. Planform characteristics and development of interchannel wetlands and multi-channels control the characteristics of anastomosing rivers. To understand the role that interchannel wetlands play in the development of anastomosing rivers, a study was conducted on the Maqu Reach of the Upper Yellow River(MRUYR), a gravel-bed anastomosing river characterized by highly developed interchannel wetlands and anabranches. Geomorphologic units in the studied reach were extracted from high resolution satellite imagery in Google Earth. The size distributions of interchannel wetlands and interchannel wetland clusters(IWCs), a special combination of interchannel wetlands and anabranches, were investigated. Geomorphologic parameters, including the ratio of interchannel wetland area to IWC area(P), shoreline density(D_l), and node density(D_n) were used to analyze planform characteristics of IWCs and the development of multi-channels in the studied reach. The results suggest that small or middle sized interchannel wetlands and large or mega sized IWCs are more common at the study site. The area of IWC(S_u) is highly correlated with other geomorphologic parameters. P increases with increasing S_u, and the upper limit is about 80%, which indicates that the development of interchannel wetlands and anabranches in the IWC is in the equilibrium stage. In contrast, D_l and D_n show a tendency to decrease with increasing S u due to diverse evolution processes in IWCs with different sizes. There are three main reasons leading to the formation of IWCs: varying stream power due to the meandering principal channel; development of the river corridor due to the weakening of geologic structure control; and high stability of interchannel wetlands due to conservation by shoreline vegetation.  相似文献   

16.
2012年11月—2013年4月中国第29次南极科学考察期间,针对南极夏季固定冰单轴压缩性质开展了研究。使用冰芯钻直接在平整冰层钻取力学试样,取样冰厚为149 cm,其中颗粒冰、柱状冰和片状冰分别占采样冰芯总长度的15.4%、72.5%和12.1%;单轴压缩试样只采用柱状冰部分,加工好的力学冰样尺寸为直径9 cm,长度为18 cm;共设置5个试验温度(-2、-4、-6、-8和-10℃),加载应变速率在10-6—10-2s-1。利用统计方法分析试验结果,建立了南极夏季海冰单轴压缩强度与孔隙率和应变速率的关系式,以及综合考虑应变速率和温度影响下的单轴压缩强度定量表达式;同时,基于分形理论对单轴压缩试样破碎块分布规律进行了分析,结果显示碎块长度分形维数随着温度和应变速率的降低有增大趋势。在特别低应变速率下海冰试样整体发生蠕变时,无法采用分形方法讨论海冰内部破碎程度。  相似文献   

17.
Gandaki River Basin (GRB) is an important part of the central Himalayan region, which provides habitat for numerous wild species. However, climatic changes are making the habitat in this basin more vulnerable. This paper aims to assess the potential impacts of climate change on the spatial distributions of habitat changes for two vulnerable species, Himalayan black bear (Ursus thibetanus laniger) and common leopard (Panthera pardus fusca), using the maximum entropy (MaxEnt) species distribution model. Species occurrence locations were used along with several bioclimatic and topographic variables (elevation, slope and aspect) to fit the model and predict the potential distributions (current and future) of the species. The results show that the highly suitable area of Himalayan black bear within the GRB currently encompasses around 1642 km2 (5.01% area of the basin), which is predicted to increase by 51 km2 in the future (2050). Similarly, the habitat of common leopard is estimated as 3999 km2 (12.19% of the GRB area), which is likely to increase to 4806 km2 in 2050. Spatially, the habitat of Himalayan black bear is predicted to increase in the eastern part (Baseri, Tatopani and north from Bhainse) and to decrease in the eastern (Somdang, Chhekampar), western (Burtibang and Bobang) and northern (Sangboche, Manang, Chhekampar) parts of the study area. Similarly, the habitat of common leopard is projected to decrease particularly in the eastern, western and southern parts of the basin, although it is estimated to be extended in the southeastern (Bhainse), western (Harichaur and northern Sandhikhark) and north-western (Sangboche) parts of the basin. To determine the habitat impact, the environmental variables such as elevation, Bio 15 (precipitation seasonality) and Bio 16 (precipitation of wettest quarter) highly contribute to habitat change of Himalayan black bear; while Bio 13 (precipitation of wettest month) and Bio 15 are the main contributors for common leopard. Overall, this study predicted that the suitable habitat areas of both species are likely to be impacted by climate change at different altitudes in the future, and these are the areas that need more attention in order to protect these species.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号