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顾问, 岳彩军, 陈浩君, 薛昊, 张燕燕, 孙娟. 2021: 上海移动式风廓线雷达的探测性能评估与分析. 暴雨灾害, 40(6): 637-645. DOI: 10.3969/j.issn.1004-9045.2021.06.008
引用本文: 顾问, 岳彩军, 陈浩君, 薛昊, 张燕燕, 孙娟. 2021: 上海移动式风廓线雷达的探测性能评估与分析. 暴雨灾害, 40(6): 637-645. DOI: 10.3969/j.issn.1004-9045.2021.06.008
GU Wen, YUE Caijun, CHEN Haojun, XUE Hao, ZHANG Yanyan, SUN Juan. 2021: Performance evaluation of mobile wind profiler radarin Shanghai. Torrential Rain and Disasters, 40(6): 637-645. DOI: 10.3969/j.issn.1004-9045.2021.06.008
Citation: GU Wen, YUE Caijun, CHEN Haojun, XUE Hao, ZHANG Yanyan, SUN Juan. 2021: Performance evaluation of mobile wind profiler radarin Shanghai. Torrential Rain and Disasters, 40(6): 637-645. DOI: 10.3969/j.issn.1004-9045.2021.06.008

上海移动式风廓线雷达的探测性能评估与分析

Performance evaluation of mobile wind profiler radarin Shanghai

  • 摘要: 基于2018年7月—2019年6月上海宝山移动式风廓线雷达(mobile wind profiler radar,MWPR)资料,从获取率、水平风误差和上海6类典型天气条件下测风数据的可靠性三方面,对其探测性能进行了评估与分析。结果发现:(1)获取率受湍流强度影响最大,受大气温度、湿度影响次之。获取率具有较明显的日变化和季节变化特征,边界层内夏秋季获取率高于冬春季,且有午后获取率高、深夜和清晨低的特点;自由大气中冬春季获取率高于夏秋季。以获取率80%为其业务准入标准,边界层内MWPR的获取率达标。(2)相比L波段探空测风数据,MWPR整层的水平风速均偏小,低模态时有34.4%的数据位于偏小2.0~6.0 m·s-1区间内;风向偏差超过±15°以上的水平风向数据占比为48.9%。(3)定性分析结果显示,MWPR探测到的垂直速度的指向性是合理的。雨强较大时,MWPR探测的垂直速度实际上是降水粒子的下降速度与大气湍流速度之和。MWPR的水平风数据在台风天、雪天等大气均一性强的时段内可靠性高。总体上,上海宝山MWPR的探测性能基本能满足日常监测服务之需,但其测风精度与业务准入标准相比尚有一定差距。

     

    Abstract: Based on the data from the mobile wind profile radar (MWPR) at Baoshan of Shanghai from July 2018 to June 2019, we have evaluated and analyzed the performance of MWPR in terms of acquisition rate, horizontal wind error and the reliability of wind data under six typical weather conditions. The main results are as follow. (1) The acquisition rate is most affected by turbulence intensity, followed by atmospheric temperature and humidity. It is obviously characterized by diurnal and seasonal variations. In the boundary layer, the acquisition rate in summer and autumn is higher than that in winter and spring. It also features high acquisition rate in afternoon and low acquisition rate in late night and early morning. In free atmosphere, the acquisition rate in winter and spring is higher than that in summer and autumn. Taking the acquisition rate of 80% as the operation admittance standards, the acquisition rate of MWPR within boundary layer reaches the standard. (2) Comparing with L-band radiosonde, the horizontal wind speeds detected by MWPR in all layers are relatively low. In low mode, 34.4% of the horizontal wind speed data are in the range of 2.0 m·s-1 to 6.0 m·s-1 lower. The wind direction deviation data which exceeds ±15åccounts for 48.9% of all the horizontal wind direction data. (3) Qualitative analysis shows that the directivity of vertical velocity detected by MWPR is reasonable. During heavy rainfall, the vertical velocity detected by MWPR is actually the sum of the falling velocity of precipitation particles and atmospheric turbulence velocity. The reliability of horizontal wind data from MWPR is highin typhoon, snowy and other weather days with the characteristic of strong atmospheric homogeneity. On the whole, MWPR can basically meet the needs of daily meteorological monitoring and services in terms of detection performance, but there still lies a certain gap between its wind measurement accuracy and operation admittance standards.

     

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