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1.
李力  徐芬  刘希  陈刚 《气象》2024,50(2):210-220
结合T-Matrix方法和雨滴谱仪数据反演双偏振参量,设计了一种雨滴谱反演评估方法(雨滴谱法),利用其反演结果可对双偏振天气雷达数据进行评估。将此方法应用于不同类型降水过程的雷达偏振参量数据质量评估,结果表明:满足微雨条件时,雨滴谱法与传统的微雨滴法均能有效监测由雷达系统误差导致的观测偏差,且评估结果十分接近;不满足微雨条件时,雨滴谱法评估的不同类型降水过程的雷达数据质量与满足微雨条件下的评估结果十分接近,客观证明了系统调整后雷达运行良好、数据质量稳定;不同雨强(R)情况下,雨滴谱法的评估结果具有一致性。10 mm·h-1≤R<20 mm·h-1时,雷达观测的数据质量最为稳定。该雨滴谱法适用范围广,可动态评估双偏振雷达偏振参量质量,有助于雷达调整和数据校正。  相似文献   

2.
降水回波谱参数估算雨滴谱参数的算法研究   总被引:1,自引:0,他引:1  
地基遥感雷达反演云中降水参数有助于认识降水云微物理过程,本文提出一种直接由垂直指向雷达回波谱参数估算雨滴谱参数的方法;当雨滴谱满足Gamma函数分布时,联合雷达气象方程、雨滴下降末速度与雨滴直径关系,建立雷达降水回波谱参数反演雨滴谱参数的方程组,采用隐函数显化和级数展开进行方程求解,得到雨滴谱参数估算结果。用正演方法建立检验数据库,使用平均相对误差平均值对近似求解的雨滴谱参数精度进行检验,截距参数为0.83%、斜率参数为3.04%、形状参数为13.60%。对2012年7月22-23日云南腾冲的1320 M Hz雷达垂直波束探测降水回波谱参数进行了雨滴谱参数估算,并与地面激光雨滴谱仪获取的雨滴谱参数进行了比较,两者的平均粒径基本相同。使用风廓线雷达等垂直探测雷达回波谱参数估算雨滴谱参数的方法适用于稳定层状降水云。  相似文献   

3.
X波段双偏振雷达反演雨滴谱方法研究   总被引:3,自引:1,他引:2  
X波段双偏振雷达观测参数能够完成雨滴谱反演,但是由于X波段雷达波长较短,降水观测时存在较大的衰减,本文采用自适应约束算法进行反射率和差分反射的衰减订正。通过对雨滴模型的散射模拟以及对雨滴谱进行Gamma谱拟合,建立了雨滴谱参数与双偏振雷达目标参数之间的函数关系和雨滴谱参数相互之间的关系,用于进行雨滴谱反演。将雨衰减订正前后的雷达目标参数进行雨滴谱反演并与实测雨滴谱进行对比,结果表明,所建立的X波段双偏振雷达反演雨滴谱方法能够较好地反演雨滴谱,并且经过订正后反演得到的雨滴谱在浓度、尺度和谱形上都优于订正前的反演结果,通过对距离高度扫描和平面位置扫描数据进行雨滴谱反演,可以得到雨滴谱参数的垂直结构和水平分布,可用以进行降水分析。  相似文献   

4.
垂直指向探测的C波段调频连续波雷达具有高灵敏度和高时空分辨率等特点, 以2016年5月广东两次飑线降水为例, 结合同址K波段微雨雷达和地面激光雨滴谱仪, 探究C波段调频连续波雷达两种反演大气垂直速度(Va)和雨滴谱的方法:粒子平均下落末速度(Vt)-反射率因子(Ze)关系法(简称经验关系法)和小粒子示踪法(简称示踪法)。结果表明:经验关系法和示踪法反演的上升和下沉气流的时空分布基本一致;当地面雨强R≤1 mm·h-1, 经验关系法反演的雨滴谱与雨滴谱仪观测结果更接近;当110 mm·h-1时, 两种方法反演的中雨滴数浓度与雨滴谱仪观测结果接近, 但大雨滴数浓度较低;从各物理量时序变化看, 经验关系法反演结果更接近雨滴谱仪观测结果。  相似文献   

5.
从旋转椭球粒子散射理论出发,给出单个小旋转椭球雨滴在入射不同偏振波时的散射函数,并对其在不同仰角情况的数学图形和物理意义做了讨论,为推导基于椭球雨滴群的双基地偏振雷达方程、研究椭球雨滴群对双基地线偏振雷达探测能力的影响、处理和分析双基地偏振雷达资料,提供了理论依据.  相似文献   

6.
风廓线雷达估测雨滴谱参数   总被引:3,自引:3,他引:3  
黄伟  张沛源等 《气象科技》2002,30(6):334-337340
文章提出两种风廓线雷达资料估测雨滴谱的方法。①利用五波束风廓线雷达,通过连续方程求得各层垂直空气运动速度,根据垂直指向波束测出的功率谱导出雨滴谱;②假定雨滴谱为г分布,根据垂直指向的多普勒雷达测得的回波强度、径向速度、多普勒谱宽求得雨滴谱的三个参数。文章进行了实例计算,比较了两种方法的计算结果,并且讨论了Z-M关系的不确定性。  相似文献   

7.
风廓线雷达探测降水云体中雨滴谱的试验研究   总被引:9,自引:1,他引:8       下载免费PDF全文
对风廓线雷达探测降水时出现的双峰型功率谱密度分布的回波,进行大气返回信号和降水返回信号的剥离,由大气返回信号求出环境大气的垂直运动,导出降水质点下降末速度的功率谱密度分布,进而求出云体中的雨滴谱分布。对两次降水进行了雨滴谱反演试验,提取了不同高度上30多份雨滴谱分布,雨滴谱分布基本上呈现出指数分布形式。指数拟合后求出雨滴谱的浓度参数N0由几百到几千m-3mm-1,尺度参数λ为3.8~4.5 mm-1。试验中,还由反演的雨滴谱估算出云中含水量,得出降水云体中含水量随高度的分布,与附近多普勒天气雷达观测进行了比较。风廓线雷达与多普勒天气雷达探测到的回波强度随高度分布基本一致,云中含水量估算的均值基本相同,而风廓线雷达由雨滴谱估算出的含水量随高度分布可以反映出雨滴谱变化的影响,随高度分布更为精细。  相似文献   

8.
刘黎平  谢蕾  崔哲虎 《大气科学》2014,38(2):223-236
本文首先利用数值模拟的方法,分析了利用毫米波云雷达功率谱密度反演雨滴谱时,降水粒子米散射效应、空气湍流、空气上升速度等对雨滴谱和液态水含量等参数反演的影响;建立了功率谱密度处理及其直接反演雨滴谱、液态水含量、降水强度和空气上升速度的方法;并利用2012年7月在云南腾冲观测的二次弱降水数据,采用毫米波雷达和Ku波段微降水雷达观测的回波强度、径向速度垂直廓线以及780 m高度上的功率谱密度对比的方法,以及毫米波云雷达观测的780 m高度上功率谱密度、回波强度与地面雨滴谱计算得到的这些量的对比方法,分析了毫米波雷达数据的可靠性;并将780 m高度上毫米波雷达反演的雨滴谱与地面雨滴谱数据进行了对比,分析了毫米波雷达反演的雨滴谱的准确性;分析了毫米波雷达回波强度偏弱的原因,讨论了该高度以下降水对毫米波雷达衰减的影响。结果表明:空气湍流对弱降水微物理参数反演影响不大,而空气上升速度和米散射效应均对反演结果有一定影响;毫米波雷达观测到的径向速度和功率谱密度与微降水雷达比较一致,回波强度的垂直廓线的形状与微降水雷达也比较一致,但毫米波雷达观测的回波强度偏弱;与雨滴谱计算值相比,毫米波雷达观测的低层的回波强度也偏弱,天线上的积水是造成毫米波雷达回波强度变弱的主要原因。毫米波雷达观测的低层的功率谱密度与地面雨滴谱观测的数据形状比较一致,但有一定的位移。毫米波雷达反演的雨滴谱与地面观测的谱型和粒子大小也比较一致。这些结果初步验证了毫米波雷达观测的功率谱密度及其反演方法的可靠性。  相似文献   

9.
雨滴谱仪与风廓线雷达反射率对比试验   总被引:2,自引:2,他引:0  
汪学渊  阮征  李效东  黄丽芬  韩伟中 《气象》2016,42(1):107-114
针对风廓线雷达估算的反射率数据需要进行验证。开展雨滴谱仪与风廓线雷达反射率对比试验,通过两种不同探测设备观测数据的对比,以验证风廓线反射率数据的可靠性和可用性。结果表明:确定了以风廓线低模360~1440 m采样体积内的反射率与3 min雨滴谱反射率数据对比方法能最大程度的减少时空差异;在雨滴谱仪反射率小于40 dBz时,对应的风廓线雷达反射率数据是可靠和可用的;同时由于风廓线雷达有限的动态范围造成反射率低估的现象,使得风廓线雷达反射率在大气垂直结构以及微物理特性等方面应用受到一定的局限性。  相似文献   

10.
为了提高双基地偏振雷达的探测精度,从旋转椭球粒子散射和衰减的理论出发,推导出基于椭球雨滴群的双基地偏振雷达方程,并利用此方程探讨了旋转椭球雨滴群一致垂直取向情况下,主站雷达发射仰角、目标粒子群位置等因素对双基地偏振雷达探测能力的影响程度.结果表明,随着仰角的抬高,几何因子值和两种偏振状态下的回波功率比均出现了高值区和低值区面积减少的变化特征;散射截面因子值也随着仰角的抬高在水平偏振时增加,垂直偏振时减少.  相似文献   

11.
风廓线雷达主要是利用大气湍流对电磁波的散射作用,在晴空条件下对大气风场等进行探测。在降水天气下,风廓线雷达能同时接收到大气湍流回波和雨滴的散射回波信号,其探测到的回波功率谱中降水信号谱和大气湍流信号谱叠加在一起,使得大气的运动被雨滴的运动信息所掩盖,给后续的大气风场反演带来误差。而毫米波云雷达在降水天气下仅能探测到云雨粒子的回波而无法探测到大气湍流回波,基于这一差异结合毫米波云雷达资料对风廓线雷达功率谱数据进行订正,剔除其中的降水回波信息,进而获取正确的大气运动垂直速度。通过一次典型弱降水天气过程的雷达资料对该方法进行了可行性验证,并将计算得出的大气垂直速度与传统双峰法提取的大气运动垂直速度及原始风廓线雷达垂直速度进行了对比分析,显示在弱降水天气下该方法能有效消除降水对风廓线雷达垂直速度测量的影响,提高弱降水天气下测速准确率,并且在湍流谱极其微弱的情况下该方法也能准确地获取到大气运动垂直速度信息。但是云雷达回波在降水时会有衰减,虽然是弱降水也会导致在高层距离库上的订正效果变差,故目前只适用于弱降水时低距库处的降水订正。   相似文献   

12.
降雨强度,雨区衰减与双线偏振雷达观测量关系的研究   总被引:9,自引:4,他引:9  
蔡启铭  徐宝祥 《高原气象》1990,9(4):347-355
本文为了改装双线偏振雷达的需要,用扩展边界条件法计算了椭球形雨滴的后向散射截面、衰减截面及吸收截面,得出了任意谱参数情况下,可能产生的散射强度及差反射率因子Z_(DR)值的大小。给出了降雨强度、衰减系数和双线偏振雷达观测量间的关系。为双线偏振雷达定量测量降雨工作及讨论雨区对雷达波衰减打下了基础。  相似文献   

13.
To analyze the effects of gas cannons on clouds and precipitation, multisource observational data, including those from National Centers for Environmental Prediction (NCEP) reanalysis, Hangzhou and Huzhou new-generation weather radars, laser disdrometer, ground-based automatic weather station, wind profiler radar, and Lin''an C-band dual polarization radar, were adopted in this study. Based on the variational dual-Doppler wind retrieval method and the polarimetric variables obtained by the dual-polarization radar, we analyzed the microphysical processes and the variations in the macro - and microphysical quantities in clouds from the perspective of the synoptic background before precipitation enhancement, the polarization echo characteristics before, during and after enhancement, and the evolution of the fine three-dimensional kinematic structure and the microphysical structure. The results show that the precipitation enhancement operation promoted the development of radar echoes and prolonged their duration, and both the horizontal and vertical wind speeds increased. The dual-polarization radar echo showed that the diameter of the precipitation particles increased, and the concentration of raindrops increased after precipitation enhancement. The raindrops were lifted to a height corresponding to 0 to -20 ℃ due to vertical updrafts. Based on the disdrometer data during precipitation enhancement, the concentration of small raindrops (lgNw) showed a significant increase, and the mass-weighted diameter Dm value decreased, indicating that the precipitation enhancement operation played a certain“lubricating”effect. After the precipitation enhancement, the concentration of raindrops did not change much compared with that during the enhancement process, while the Dm increased, corresponding to an increase in rain intensity. The results suggest the positive effect of gas cannons on precipitation enhancement.  相似文献   

14.
This paper investigates spatial and temporal distributions of the microphysical properties of precipitating stratiform clouds based on Doppler spectra of rain particles observed by an L-band profiler radar.The retrieval of raindrop size distributions(RSDs) is accomplished through eliminating vertical air motion and isolating the terminal fall velocity of raindrops in the observed Doppler velocity spectrum.The microphysical properties of raindrops in a broad stratiform region with weak convective cells are studied using data collected from a 1320-MHz wind profiler radar in Huayin,Shaanxi Province on 14 May 2009.RSDs and gamma function parameters are retrieved at altitudes between 700 and 3000 m above the surface,below a melting layer.It is found that the altitude of the maximum number of raindrops was closely related to the surface rain rate.The maximum number of large drops was observed at lower altitudes earlier in the precipitation event but at higher altitudes in later periods,suggesting decreases in the numbers of large and medium size raindrops.These decreases may have been caused by the breakup of larger drops and evaporation of smaller drops as they fell.The number of medium size drops decreased with increasing altitude.The relationship between reflectivity and liquid water content during this precipitation event was Z = 1.69×10~4M~(1.5),and the relationship between reflectivity and rain intensity was Z = 256I~(1.4).  相似文献   

15.
The polarimetric radar network in Jiangsu Province has just been operationalized since 2020. The first intense precipitation event observed by this polarimetric radar network and disdrometer occurred during August 28-29, 2020 and caused severe flooding and serious damage in eastern Jiangsu Province. The microphysics and kinetics for this heavy precipitation convective storm is diagnosed in this study, in order to promote the application of this polarimetric radar network. Drop size distribution (DSD) of this event is estimated from measurements of a ground disdrometer, and the corresponding three-dimensional atmospheric microphysical features are obtained from the multiple polarimetric radars. According to features of updraft and lighting, the evolution of the convective storm is divided into four stages: developing, mature with lightning, mature without lightning and dissipating. The DSD of this event is featured by a large number of raindrops and a considerable number of large raindrops. The microphysical characteristics are similar to those of warm-rain process, and ice-phase microphysical processes are active in the mature stages. The composite vertical structure of the convective storm indicates that deep ZDR and KDP columns coincide with strong updrafts during both mature stages. The hierarchical microphysical structure retrieved by the Hydrometeor Identification Algorithm (HID) shows that depositional growth has occurred above the melting level, and aggregation is the most widespread ice-phase process at the -10℃ level or higher. During negative lightning activity, the presence of strongest updrafts and a large amount of ice-phase graupel by riming between the 0℃ and -35℃ layers generate strong negative electric fields within the cloud. These convective storms are typical warm clouds with very high precipitation efficiency, which cause high concentration of raindrops, especially the presence of large raindrops within a short period of time. The ice-phase microphysical processes above the melting layer also play an important role in the triggering and enhancing of precipitation.  相似文献   

16.
雨滴谱的垂直变化特征对于认识降水过程、改进模式和雷达定量估计降水等具有重要意义。利用2016年6月1日-9月30日雨量筒、微雨雷达(micro rain radar,简称MRR)和PARSIVEL雨滴谱仪连续4个月的观测数据,在对比3种仪器观测结果的基础上,研究了层状云降水不同降水强度下微物理特征量和雨滴谱垂直演变特征。结果表明:MRR与PARSIVEL雨滴谱仪观测降水强度相关性较好,且两种仪器观测的雨滴谱在中等粒子段(0.5~2.5 mm)表现出较好的一致性,而对于小粒子段(雨滴直径小于0.5 mm)PARSIVEL雨滴谱仪观测的数浓度明显低于MRR。对于弱降水(降水强度R ≤ 0.2 mm·h-1),液水含量和降水强度随高度降低减小,雨滴在下落过程中蒸发明显。对于较强降水(R>2 mm·h-1),随高度降低,雷达反射率因子增大,小滴数浓度减小的同时大滴数浓度增加明显,雨滴下落过程碰并作用明显。所有高度直径不超过0.5 mm的小滴对数浓度贡献均为最大。高层雨滴直径不小于1 mm的小粒子对降水强度的贡献可达50%,小粒子对降水强度贡献随高度降低减小。  相似文献   

17.
崔云扬  周毓荃  蔡淼 《大气科学》2019,43(3):618-633
本文利用河北邢台测站Ka波段微雨雷达(MRR)观测到的一次冷锋云系降水过程分析降水的垂直分布及演变特征。将MRR观测结果与天气雷达、地面雨滴谱仪、雨量计观测结果进行对比以检验MRR数据的可靠性。同时将MRR与雨滴谱仪和激光云高仪结合,研究了不同相对湿度阶段特征量、雨滴谱的平均垂直分布特征和降水特征量随时间、高度的演变特征。结果表明:MRR与雨量计及雨滴谱仪累计雨量结果较为接近,趋势一致。MRR 200 m雨强值与地面雨滴谱仪雨强值偏差最小,平均偏差为0.05 mm h?1,相关系数为0.93。相比雨滴谱仪,MRR观测到的小滴数浓度出现高估,大滴数浓度出现低估,中滴数浓度较为一致。降水在云内和云外受不同微物理过程影响,垂直变化特征不同。降水初期平均反射率和雨强在云底以下明显减小,小滴和中滴平均数浓度明显减小,蒸发作用影响较强。而在其余时间段在云内随高度降低平均反射率和雨强略有增加,小滴平均数浓度变化较小,中滴大滴平均数浓度增加,表明云内有云滴与雨滴间的碰并发生。而在云外低层,随高度降低平均有效直径明显增加,平均雨滴总数浓度明显减小,小滴平均数浓度显著减小,大滴平均数浓度显著增加,表明在云外低层雨滴间的碰并作用较强。  相似文献   

18.
利用双线偏振雷达识别冰雹区方法初探   总被引:15,自引:14,他引:15  
刘黎平  张鸿发 《高原气象》1993,12(3):333-337
  相似文献   

19.
Polarimetric radar and 2D video disdrometer observations provide new insights into the precipitation microphysical processes and characteristics in the inner rainband of tropical cyclone(TC)Kajiki(2019)in the South China Sea for the first time.The precipitation of Kajiki is dominated by high concentrations and small(<3 mm)raindrops,which contribute more than 98%to the total precipitation.The average mass-weighted mean diameter and logarithmic normalized intercept are 1.49 mm and 4.47,respectively,indicating a larger mean diameter and a lower concentration compared to the TCs making landfall in eastern China.The ice processes of the inner rainband are dramatically different among different stages.The riming process is dominant during the mature stage,while during the decay stage the aggregation process is dominant.The vertical profiles of the polarimetric radar variables together with ice and liquid water contents in the convective region indicate that the formation of precipitation is dominated by warm-rain processes.Large raindrops collect cloud droplets and other raindrops,causing reflectivity,differential reflectivity,and specific differential phase to increase with decreasing height.That is,accretion and coalescence play a critical role in the formation of heavy rainfall.The melting of different particles generated by the ice process has a great influence on the initial raindrop size distribution(DSD)to further affect the warm-rain processes.The DSD above heavy rain with the effect of graupel has a wider spectral width than the region without the effect of graupel.  相似文献   

20.
Cores of high radar reflectivity (>50 dBZ) and raindrops larger than 4 mm in diameter were occasionally reported in warm clouds, offshore from Hawaii. A kinematic numerical model with detailed microphysics was used to study the formation of these cores and the development of the giant drops. The role of collisional and spontaneous breakup of drops was evaluated. Our results show that spontaneous breakup of raindrops restricts the formation of giant drops (D>4 mm). This could be a result of the poor parameterization of the fragment size distribution, and the probabilities of the spontaneous breakup. The inclusion of only binary breakup mechanism explained the observed radar echoes and the drop spectra. These results corroborate the hypothesis that the updrafts in the Hawaiian clouds sort out different size drops in such a way that millimeter size drops are allowed to fall in an environment deficient of smaller raindrops. In this way, the large raindrops continue to grow by collection of small cloud droplets, but have a smaller chance for collisional breakup (the efficiency for this type of breakup is small for collisions with cloud droplets). The collisional breakup of big raindrops was also found to play a significant role in the formation of giant drops. Such drops are formed following collision–breakup of large raindrops in which one of the fragments is larger than the original drops.  相似文献   

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