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基于衡水市多元气象站的桃晚霜冻害气象指标分析
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作者 王荣英 陈瑞敏 +1 位作者 魏瑞江 韩建广 《湖北农业科学》 2023年第S01期64-69,共6页
基于21世纪以来发生在衡水市的多次晚霜冻害实况,结合国家气象站、区域气象站和农田(果园)小气候站的气象数据,按照桃的发育时段和降温类型,初步确定了适用于平原地区的桃露红-现蕾期、开花期和幼果期晚霜冻害发生的部分气象指标以及启... 基于21世纪以来发生在衡水市的多次晚霜冻害实况,结合国家气象站、区域气象站和农田(果园)小气候站的气象数据,按照桃的发育时段和降温类型,初步确定了适用于平原地区的桃露红-现蕾期、开花期和幼果期晚霜冻害发生的部分气象指标以及启动/升级相应发育时段晚霜冻害预报预警的部分服务指标。在确定桃晚霜冻害预报预警服务指标时,充分考虑了最低气温、地表最低温度、积雪、降水和降温类型的影响;基于生产实际和春季果园内近地面夜间普遍存在的逆温现象,在表征冻害发生程度时引入了冻害发生高度的概念。 展开更多
关键词 气象站 晚霜冻害 气象指标 降温类型 地表最低温度 衡水市
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Precipitation Type Estimation and Validation in China 被引量:13
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作者 CHEN Ren-sheng LIU Jun-feng SONG Yao-xuan 《Journal of Mountain Science》 SCIE CSCD 2014年第4期917-925,共9页
The results from three methods aimed at improving precipitation type (e.g., rain, sleet, and snow) estimation are presented and compared in this paper. The methods include the threshold air temperature (AT), thres... The results from three methods aimed at improving precipitation type (e.g., rain, sleet, and snow) estimation are presented and compared in this paper. The methods include the threshold air temperature (AT), threshold wet bulb temperature (WBT) and Koistinen and Saltikoff (KSS) methods. Dot graphs are plotted to acquire the threshold air temperature or the threshold wet bulb temperature using daily averaged air temperature, wet bulb temperature and precipitation data at 643 stations from 1961 to 1979 (precipitation types are not labeled in the database from 1980 to present) in China. The results indicate that the threshold AT or WBT methods are not able to differentiate rain, sleet and snow in the most regions in China; sleet is difficult to differentiate from other precipitation types based on the two threshold methods. Therefore, one threshold AT and WBT method was used in this study to differentiate rain and snow. Based on Gaussian- Kriging interpolation of threshold air temperature (To) and wet bulb temperature (Tw), the To and Tw contour lines and contour surfaces are calculated for China. Finally, a comparison between the KSS, AT and WBT methods are provided in which the KSS method is calculated based on air temperature and relative humidity. The results suggest that the KSS method is more appropriate for water phase estimation than are the other methods; the maximum precision for rain and snow is 99% and 94%, respectively. The AT method performs better than the WBT method when the critical air temperature is 2℃. 展开更多
关键词 Threshold temperature Wet bulbtemperature Precipitation type Hydrologicalprocesses
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