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11.
选取2018年夏季邵阳地区的17个雷暴单体和9个非雷暴单体,分析了单体30 dBz、35 dBz和40 dBz回波顶高及0℃、-10℃和-20℃层超过30 dBz、35 dBz和40 dBz的回波面积与闪电发生的关系,利用40 dBz回波顶高、-10℃层以上超过40 dBz的回波面积及其与单体总面积的百分比对该地区闪电...  相似文献   
12.
A detailed study was carried out on a piece of land that had been struck by lightning during the violent rainstorm that raged over the Island of S?o Miguel (Azores Archipelago) in late October 2006. Temperature and gas measurements (CO2, CO, H2S and CH4) were performed in four study trenches, dug in an area of ∼3 m2, where an underground fire had been initiated by the impact with a lightning stroke, followed by the emission of a column of gases and smoke. The soil under study was originally a well-pedogenized about 80 cm thick bed, made of volcanic clayey to silty tephra fallouts and contained 5.5–9.7% of organic matter. The underground fire was monitored for one week and revealed a peak release of 404 ppm CO and 3.4% CO2 originating from a horizon located about 45 cm under the soil surface. Measurements of temperature, performed one week after the impact, indicated a maximum value of 326°C inside the soil, while 516.5°C were measured on the surface of a lava block interred about 20 cm under the surface. Subsequently, a stratigraphic and sedimentologic study proved the role of the grain-size of the soil and of the organic matter content of the different horizons of the impact area, in determining the ratio between anoxic/oxidised combustion conditions and in the progress of the process itself. It was also noticed that combustion was not total all over in the soil bed and that the process had slightly migrated toward SW during the observation period. The combustion process went on for about ten days, in spite of several other violent rainstorms, until it was artificially extinguished through the excavations made to obtain study trenches. This particular circumstance evidenced the potential natural hazard represented by this kind of atmospheric event, especially in a land where the volcanic nature of the soil may easily mislead inexperienced observers and, consequently, delay proper action.  相似文献   
13.
Information on fatalities from lightning strikes has been extracted from a specially compiled database on natural hazards in Australia. Records dating from 1803–1991 indicate that at least 650 persons have been killed by lightning strikes. Maps and charts show the percentages of victims with respect to age, sex, locality, activity, and other circumstances of the strike. The majority of the 650 fatalities recorded have occurred along the more populous southeastern coast. The overall death rate, from 1910–1989, is 0.08 per 100 000 population. The annual number of lightning fatalities has decreased with time, from a death rate of 0.21 in 1910–1919 to 0.01 in 1980–1989. This trend is more pronounced when population figures are taken into account. The group that has been most at risk in Australia is that of males aged 15–19, followed by males aged 20–34. The male:female ratio of victims has decreased with time but is not approaching equality, being 11.6 in 1910–1919 and 5.3 in 1980–1989. The diurnal and monthly occurrences of lightning fatalities peak at 12.00–18.00 hours and November-February respectively. About 86% of fatalities have occurred outdoors and 14% have occurred indoors. Approximately three-fifths of fatalities have been work-related, and the group of workers that has traditionally been most at risk is that of land-workers. Approximately one-fifth of fatalities have been recreation-related, although this proportion has been increasing with time. The recreational activities of water sports, golf, and cricket have had the greatest number of lightning fatalities. Comparisons are made between these data and the results of other similar studies, both in Australia and overseas.  相似文献   
14.
The lightning frequency model developed by Baker et al. [Baker, M.B., Christian, H.J., Latham, J., 1995. A computational study of the relationships linking lightning frequency and other thundercloud parameters, Q. J. R. Meteorol. Soc., 121, 1525–1548] has been refined and extended, in an effort to provide a more realistic framework from which to examine computationally the relationships that might exist between lightning frequency f (which is now being routinely measured from a satellite, using the NASA/MSFC Optical Transient Detector (OTD)) and a variety of cloud physical parameters. Specifically, superior or more comprehensive representations were utilised of: (1) glaciation via the Hallett–Mossop (H–M) process; (2) the updraught structure of the model cloud; (3) the liquid-water-content structure of the model cloud; (4) the role of the reversal temperature Trev in influencing lightning characteristics; (5) the critical breakdown field for lightning initiation; and (6) the electrical characteristics of the ice crystal anvil of the model cloud. Although our extended studies yielded some new insights into the problem, the basic pattern of relationships between f and the other parameters was very close to that reported by Baker et al. (1995). The more elaborate treatment of Trev restricted somewhat the range of conditions under which reverse-polarity lightning could be produced if the cloud glaciated via H–M, but confirmed the earlier conclusion that such lightning would not occur if the glaciation was of the Fletcher type. The computations yielded preliminary support for the hypothesis that satellite measurements of f might be used to determine values of the ice-content of cumulonimbus anvils: a parameter of climatological importance. The successful launch and continuing satisfactory functioning of the OTD [Christian, H.J., Goodman, S., 1992. Global observations of lightning from space, Proc. 9th Int. Conf. on Atmospheric Electricity, St. Petersburg, pp. 316–321; Christian, H.J., Blakesee, R.J., Goodman, S.J., 1992. Lightning imaging sensor (LIS) for the earth observing system. NASA Tech. Memorandum, 4350] make it possible—with a high degree of precision—to measure lightning location, occurrence time and frequency f over extensive areas of the Earth's surface. Measured global distributions of lightning and associated lightning stroke radiance demonstrate that: lightning activity is particularly pronounced over the tropics, much greater over land than over the oceans, and exhibits great seasonal variability; lightning radiance tends to be greater over the oceans, less when lightning activity is high, and greater in the Northern Hemisphere winter than summer.  相似文献   
15.
热带测雨卫星对淮河一次暴雨降水结构与闪电活动的研究   总被引:13,自引:8,他引:13  
文中利用热带测雨卫星 (TRMM )搭载的测雨雷达 (PR)、闪电成像仪 (LIS)、GOES卫星红外通道辐射亮温(TBB)对 2 0 0 3年淮河汛期一锋面气旋系统的两个时次的探测结果 ,分析研究了降水结构及闪电活动 ,并与“98.7.2 0”武汉附近地区中尺度强降水的结构和闪电活动进行了比较。GOES的TBB、降水系统中的对流降水与层云降水比例、闪电活动频数随时间的变化均能表征锋面气旋系统的发展。TRMMPR探测结果表明 :冷锋降水狭窄细长 ,且均为强对流降水 (特别在冷锋加强时 ) ;暖锋宽广 ,且为大片层云降水 ,但其中存在面积不等的强对流降水云团 ;与“98.7.2 0”武汉附近地区中尺度强降水垂直结构的比较表明 ,锋面气旋降水的最大降水率出现在近地面 ,而中尺度强降水的最大降水率出现在低空 (3.0~ 3.5km) ,表明两者之间的降水微物理过程存在差别。TRMMLIS探测结果表明 :闪电活动均发生在冷锋的强对流降水云团中 ,暖锋中虽有强对流降水 ,但无闪电活动 ;闪电活动频数高所对应的降水廓线中、上部存在大量的冰相粒子。  相似文献   
16.
中小尺度强对流天气具有极强的破坏力,了解其气候学特征对于预测、预报和影响评价都具有实际意义。利用1961~2015年的2332个高密度逐月国家级气象站观测资料,分析了中国大陆3种常见中小尺度强对流天气(雷暴、闪电、冰雹)在年、季、月尺度上发生日数的时间变化规律和空间分布特征。结果表明:全国年平均雷暴、闪电和冰雹发生频率分别为39.23 d/a、20.56 d/a和1.07 d/a;雷暴和闪电主要发生在夏季3个月,雷暴日数7月最多,闪电日数8月最多;冰雹主要发生每年5~9月,6月发生频率最高;雷暴和闪电的高发区分布基本一致,主要集中在华南和西南,青藏高原也是雷暴的高发区域之一;冰雹的高发区主要集中在青藏高原、内蒙古高原东部以及中西部山地,而东南沿海地区发生频率则较低。进一步分析发现,我国雷暴和冰雹出现频率随海拔高度增加而明显增加,冰雹和海拔高度有更好的对应关系,二者增加速率分别为2.87 d/500 m和1.80 d/500 m,表明地势高度对这两种强对流天气形成和发展具有重要影响。  相似文献   
17.
2009年6月九江一次典型雷击事故原因分析   总被引:1,自引:0,他引:1  
根据2009年6月江西省九江一次雷击事故现场的勘察结果,利用雷电监测数据和剩磁检测数据对雷电流大小进行了对比分析,认为造成雷击事故的可能原因有三方面,分别是电源SPD的保护级别不够、SPD的容量太小、接地引下线过长和截面积太小。最后,提出了相应的整改建议。  相似文献   
18.
利用2006-2017年黑龙江省闪电定位资料和日平均地面相对湿度资料,采用数理统计、Pearson相关分析、GIS空间分析技术,研究了闪电密度和强度对地面相对湿度(RH)的响应关系。结果表明:地面RH过小或过大都不利于闪电活动产生;当RH < 25%时,几乎无闪电发生,当RH < 77%时,RH增加有利于闪电活动发生,当RH>79%时,随着RH增加,闪电活动减少;当RH < 77%时,闪电密度与之呈正相关,闪电强度与之呈负相关;当RH>79%时,闪电密度与之呈负相关,闪电强度与之呈正相关;地面RH的临界值域约为77%-79%;70%≤ RH ≤ 90%区间为闪电易发湿度区间,在闪电密度与湿度相关度高的区域,闪电更趋于集中发生在闪电易发湿度区间。  相似文献   
19.
杨丽丽  杨毅  张廷龙  王莹 《高原气象》2015,34(2):546-555
为进一步了解多普勒雷达及闪电资料在中小尺度天气系统方面的应用以及降水系统动力结构的研究,利用合肥和阜阳两部S波段多普勒雷达资料,通过两步变分反演法反演双雷达,并采用模糊逻辑算法进行云类型识别,再结合垂直累计液态水含量VIL、降水和闪电分布特征,分析了2010年6月7-10日发生在安徽合肥和阜阳的一次持续性强降水过程。结果表明:此次持续性强降水过程与风场的低层辐合和高层辐散、风场的气旋性旋转以及水平风切变相关;此次降水过程是以层状云降水为主的积云混合云降水;另外,以降水为主的层状云,其闪电频数低且以负闪为主,闪电之后20 min左右出现强降水;此次暴雨的VIL值不是很大,强降水区对应的VIL值基本3 kg·m-2;云识别结果、降水区、VIL值与雷达回波强度之间的对应关系较好。  相似文献   
20.
利用FY-4A卫星闪电成像仪LMI、TBB、地基闪电ADTD数据和NCEP-FNL再分析资料等,以2022年5月10日广东一次暴雨过程为例,对两个不同强降水区域对流云团发展演变的观测特征进行了分析。结果表明:中北部清远至九连山南侧的强降水1区属于典型的锋面低槽型暴雨,发生在低槽前部冷暖交汇区,珠江口西侧沿海附近的强降水2区则是暖区西南和偏南气流辐合作用的结果。此个例强降水发生前TBB迅速下降,强降水主要位于对流云团TBB低值中心梯度大值区。对流发展初期TBB逐渐下降到230 K以下,TBB变率较前1 h下降幅度可达-15℃以上,局部可达-30℃,对流云团移动前方的闪电对下一时刻对流的发展移动有很好的指示意义,锋面降水中ADTD较LMI提前出现;成熟阶段TBB大范围下降到220 K以下,局部200 K以下,TBB变率减小,维持在0~-10℃,闪电达到峰值,密集闪电随着TBB≤220 K低值区移动。  相似文献   
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