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碘化银焰剂是人工影响天气作业中重要的冷云催化剂,目前国内使用的碘化银焰剂有多种配方,有必要对它们的成冰性能进行统一评估。本研究采用1m^3等温云室,对我国人影作业中使用的7种碘化银焰剂(编号为1~7号)进行了统一检测。结果表明:7种焰剂成核率的量级按每克催化剂计算在10^(10)~10^(13)g^(-1)(-8^-18℃)之间,用指数函数拟合能较好地反映成核率随温度的变化;在低温段(≤-16℃),各焰剂成核率较高,不同焰剂之间的成核率差异相对于高温段(>-16℃)要小;在高温段,3、4、7号焰剂也具有较高的成核率,成冰性能要好于其他焰剂;7种焰剂的核化速率不同,-8℃时90%的冰核完成核化的时间在7.8~18min之间,推断该温度下的成核机制以接触核化等慢过程为主。 相似文献
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人工冰核的核化速率实验 总被引:2,自引:1,他引:1
如同成冰总数一样,核化速率也是催化剂性能的关键参数之一,对于科学设计和指导人工影响天气试验和作业有非常重要的意义,以前很少引起人们的关注。通过借鉴DeMott等使用的化学动力学方法,利用催化剂检测实验中时间特征等资料展开核化速率研究。结果表明,对于其他实验条件相同时,不同样品核化速率不同;同一样品不同温度动态特征明显不同:对于低温段(-16℃),形成冰晶对应快过程,主要表现是凝结冻结核化、凝华核化;而较高温度(≥-12℃)时形成冰晶是慢过程(接触核化、浸入核化机制)起主要作用。建议人工影响天气外场试验和作业中选择催化剂应关注其核化速率差异,根据实验目的优选具有不同核化速率的催化剂。 相似文献
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碘化银(AgI)类催化剂是人工影响天气外场试验和业务作业中使用最广泛的催化剂,其核化效率和核化机制在很大程度上影响催化效果。在总结美国、中国和欧洲多个国家利用云室和风洞研究AgI类催化剂的核化机制、核化阈温及成核率的室内实验成果的基础上,梳理利用室内实验成果发展的AgI数值催化模式,旨在为下一步优选新型高效AgI类催化剂和改进数值催化模式提供借鉴。AgI类催化剂核化机制包括凝华核化、接触冻结核化、凝结冻结核化和浸没冻结核化,其核化过程受大气温湿条件、催化剂粒子大小、成分等多种因素影响,并与催化剂粒子的燃烧溶液法、燃烧焰剂法和爆炸法等发生方式有关。目前国内外使用的AgI类催化剂含有不同成分,有多种催化剂粒子产生方式,催化剂粒子的核化机制和成核率有很大差异。将来应重点基于高性能云室和风洞,分析不同催化剂配方的核化机制和成核率,优选新型高效催化剂,改进AgI数值催化模式。 相似文献
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为深入认识当前人工影响天气作业中广泛使用的AgI焰剂的成冰特性, 利用电子显微镜对含AgI焰剂产生的人工冰核粒子尺度特征进行分析研究。利用环境场扫描电镜对焰剂颗粒的尺度分布和形态学特征进行研究, 利用场发射高分辨透射电镜纳米区域的X射线成分分析 (EDS) 对实验样品的颗粒结构特点和主要组成成分进行研究。实验结果表明:不同配方焰剂燃烧产生的颗粒谱分布特征有明显差异, 所取5种焰剂产生的颗粒平均谱分布, 其直径在0.02~0.50 μm之间的粒子数占98.96%, 即产生粒子绝大部分都可直接参加云内的成冰核化过程, 但其谱宽、峰值直径, 分布特征都不相同。透射电镜结果表明:焰剂颗粒的主要组成是KCl, 其表面附着AgI小颗粒, 该结构特征可能更有利于焰剂颗粒的成冰核化。利用中国气象科学研究院1 m3等温冷云室对AgI焰剂阈温对比实验表明:5种焰剂的成冰阈温在-3.5~-4.4 ℃范围内, 不同焰剂配方的阈温不同, 最大相差1 ℃。焰剂成冰核化速率主要由颗粒的大小 (均立方根直径) 决定, 同时受到谱宽、主峰位置等多种分布特征量影响, 改进配方时应综合考虑。同时, 由于高于-4.4 ℃时, 焰剂产生颗粒接触过冷水滴缺少活性, 即含AgI焰剂不适于云中较暖区的催化。 相似文献
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为了研究吸湿性催化剂、碘化银催化剂及两者的联合催化效果,利用双参数三维对流云催化模式,对浙江南部一次对流云降雨过程分别进行盐粉暖云催化、碘化银冷云催化和冷暖混合催化试验,对比研究不同催化方案对对流云降雨的可能影响。结果表明:盐粉催化导致先增雨后减雨,主要通过盐溶滴与云滴碰并增长,及雨滴碰并和霰粒子碰冻过程消耗。在上升气流区和降雨前期进行催化的增雨效果更好,30 μm粒径的盐粉催化剂量为12.5/L时,可增加降雨量17.8%。在降雨过程的不同发展阶段进行AgI催化,表现出先减雨后增雨的催化效果。盐粉和碘化银的联合催化,由于两者催化效果的不同步,使得不同吸湿性催化剂和碘化银催化剂量配置会导致不同的催化效果。当30 μm的盐粉,催化剂量12.5/L,联合碘化银100/L的冷区催化,可取得19%的增雨效果。 相似文献
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Observed daily precipitation data from the National Meteorological Observatory in Hainan province and daily data from the National Centers for Environmental Prediction/National Center for Atmospheric Research (NCEP/NCAR) reanalysis-2 dataset from 1981 to 2014 are used to analyze the relationship between Hainan extreme heavy rainfall processes in autumn (referred to as EHRPs) and 10–30 d low-frequency circulation. Based on the key low-frequency signals and the NCEP Climate Forecast System Version 2 (CFSv2) model forecasting products, a dynamical-statistical method is established for the extended-range forecast of EHRPs. The results suggest that EHRPs have a close relationship with the 10–30 d low-frequency oscillation of 850 hPa zonal wind over Hainan Island and to its north, and that they basically occur during the trough phase of the low-frequency oscillation of zonal wind. The latitudinal propagation of the low-frequency wave train in the middle-high latitudes and the meridional propagation of the low-frequency wave train along the coast of East Asia contribute to the ‘north high (cold), south low (warm)’ pattern near Hainan Island, which results in the zonal wind over Hainan Island and to its north reaching its trough, consequently leading to EHRPs. Considering the link between low-frequency circulation and EHRPs, a low-frequency wave train index (LWTI) is defined and adopted to forecast EHRPs by using NCEP CFSv2 forecasting products. EHRPs are predicted to occur during peak phases of LWTI with value larger than 1 for three or more consecutive forecast days. Hindcast experiments for EHRPs in 2015–2016 indicate that EHRPs can be predicted 8–24 d in advance, with an average period of validity of 16.7 d. 相似文献
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Based on the measurements obtained at 64 national meteorological stations in the Beijing–Tianjin–Hebei (BTH) region between 1970 and 2013, the potential evapotranspiration (ET0) in this region was estimated using the Penman–Monteith equation and its sensitivity to maximum temperature (Tmax), minimum temperature (Tmin), wind speed (Vw), net radiation (Rn) and water vapor pressure (Pwv) was analyzed, respectively. The results are shown as follows. (1) The climatic elements in the BTH region underwent significant changes in the study period. Vw and Rn decreased significantly, whereas Tmin, Tmax and Pwv increased considerably. (2) In the BTH region, ET0 also exhibited a significant decreasing trend, and the sensitivity of ET0 to the climatic elements exhibited seasonal characteristics. Of all the climatic elements, ET0 was most sensitive to Pwv in the fall and winter and Rn in the spring and summer. On the annual scale, ET0 was most sensitive to Pwv, followed by Rn, Vw, Tmax and Tmin. In addition, the sensitivity coefficient of ET0 with respect to Pwv had a negative value for all the areas, indicating that increases in Pwv can prevent ET0 from increasing. (3) The sensitivity of ET0 to Tmin and Tmax was significantly lower than its sensitivity to other climatic elements. However, increases in temperature can lead to changes in Pwv and Rn. The temperature should be considered the key intrinsic climatic element that has caused the "evaporation paradox" phenomenon in the BTH region. 相似文献
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Storms that occur at the Bay of Bengal (BoB) are of a bimodal pattern, which is different from that of the other sea areas. By using the NCEP, SST and JTWC data, the causes of the bimodal pattern storm activity of the BoB are diagnosed and analyzed in this paper. The result shows that the seasonal variation of general atmosphere circulation in East Asia has a regulating and controlling impact on the BoB storm activity, and the “bimodal period” of the storm activity corresponds exactly to the seasonal conversion period of atmospheric circulation. The minor wind speed of shear spring and autumn contributed to the storm, which was a crucial factor for the generation and occurrence of the “bimodal pattern” storm activity in the BoB. The analysis on sea surface temperature (SST) shows that the SSTs of all the year around in the BoB area meet the conditions required for the generation of tropical cyclones (TCs). However, the SSTs in the central area of the bay are higher than that of the surrounding areas in spring and autumn, which facilitates the occurrence of a “two-peak” storm activity pattern. The genesis potential index (GPI) quantifies and reflects the environmental conditions for the generation of the BoB storms. For GPI, the intense low-level vortex disturbance in the troposphere and high-humidity atmosphere are the sufficient conditions for storms, while large maximum wind velocity of the ground vortex radius and small vertical wind shear are the necessary conditions of storms. 相似文献
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The spatial and temporal variations of daily maximum temperature(Tmax), daily minimum temperature(Tmin), daily maximum precipitation(Pmax) and daily maximum wind speed(WSmax) were examined in China using Mann-Kendall test and linear regression method. The results indicated that for China as a whole, Tmax, Tmin and Pmax had significant increasing trends at rates of 0.15℃ per decade, 0.45℃ per decade and 0.58 mm per decade,respectively, while WSmax had decreased significantly at 1.18 m·s~(-1) per decade during 1959—2014. In all regions of China, Tmin increased and WSmax decreased significantly. Spatially, Tmax increased significantly at most of the stations in South China(SC), northwestern North China(NC), northeastern Northeast China(NEC), eastern Northwest China(NWC) and eastern Southwest China(SWC), and the increasing trends were significant in NC, SC, NWC and SWC on the regional average. Tmin increased significantly at most of the stations in China, with notable increase in NEC, northern and southeastern NC and northwestern and eastern NWC. Pmax showed no significant trend at most of the stations in China, and on the regional average it decreased significantly in NC but increased in SC, NWC and the mid-lower Yangtze River valley(YR). WSmax decreased significantly at the vast majority of stations in China, with remarkable decrease in northern NC, northern and central YR, central and southern SC and in parts of central NEC and western NWC. With global climate change and rapidly economic development, China has become more vulnerable to climatic extremes and meteorological disasters, so more strategies of mitigation and/or adaptation of climatic extremes,such as environmentally-friendly and low-cost energy production systems and the enhancement of engineering defense measures are necessary for government and social publics. 相似文献
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《大气和海洋科学快报》2013,(1):67
正AIMS AND SCOPE Atmospheric and Oceanic Science Letters (AOSL) publishes short research letters on all disciplines of the atmosphere sciences and physical oceanography. Contributions from all over the world are welcome.SUBMISSIONAll submitted 相似文献
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<正>With the support of specialized funds for national science institutions,the Guangzhou Institute of Tropical and Marine Meteorology,China Meteorological Administration set up in October 2008 an experiment base for marine meteorology and a number of observation systems for the coastal boundary layer,air-sea flux,marine environmental elements,and basic meteorological elements at Bohe town,Maoming city,Guangdong province,in the northern part of the South China Sea. 相似文献
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《大气和海洋科学快报》2014,7(6):F0003-F0003
AIMS AND SCOPE
Atmospheric and Oceanic Science Letters (AOSL) publishes short research letters on all disciplines of the atmosphere sciences and physical oceanography. Contributions from all over the world are welcome. 相似文献
Atmospheric and Oceanic Science Letters (AOSL) publishes short research letters on all disciplines of the atmosphere sciences and physical oceanography. Contributions from all over the world are welcome. 相似文献
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《大气和海洋科学快报》2014,(5):F0003-F0003
AIMS AND SCOPE Atmospheric and Oceanic Science Letters (AOSL) pub- lishes short research letters on all disciplines of the atmos- phere sciences and physical oceanography. Contributions from all over the world are welcome. 相似文献
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《大气和海洋科学快报》2012,(3):273
正AIMS AND SCOPE Atmospheric and Oceanic Science Letters (AOSL) publishes short research letters on all disciplines of the atmosphere sciences 相似文献