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中国西天山季节性积雪热力特征分析 被引量:10
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作者 高培 魏文寿 刘明哲 《高原气象》 CSCD 北大核心 2012年第4期1074-1080,共7页
利用中国天山积雪雪崩站干、湿雪雪层内每隔5min一次的10层雪温数据,探讨了一次降雪过程后干、湿雪的雪层温度特征,对比分析了干、湿雪的雪面能量平衡方程中各分量的差异。结果表明:(1)整个冬半年积雪各层温度基本<0℃,雪温日变化振... 利用中国天山积雪雪崩站干、湿雪雪层内每隔5min一次的10层雪温数据,探讨了一次降雪过程后干、湿雪的雪层温度特征,对比分析了干、湿雪的雪面能量平衡方程中各分量的差异。结果表明:(1)整个冬半年积雪各层温度基本<0℃,雪温日变化振幅由雪面向下逐渐减小,积雪深层温度的波峰(谷)值稍滞后于积雪浅层温度极值1~2天。(2)湿雪冷中心的出现时间早于干雪,暖中心的出现时间晚于干雪,太阳辐射对湿雪的穿透深度大于干雪。(3)雪层温度振幅变化与能量吸收随雪深都呈指数衰减分布。积雪密度越大,吸收系数越小,穿透深度越大。(4)干雪雪面的感热通量和潜热通量几乎都为负值,积雪积累。湿雪雪面的潜热通量与感热通量方向相反,互相抵消,所以净辐射是导致湿雪消融的主要因素。 展开更多
关键词 中国西天山 雪层温度 净辐射 感热通量 潜热通量
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农田水分蒸散计算方法的比较 被引量:6
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作者 刘树华 《北京大学学报(自然科学版)》 CAS CSCD 北大核心 1989年第5期594-604,共11页
本文采用波文比法;能量平衡法;空气动力学法和蒙蒂斯综合法计算了农田水分散失。并进行了比较。波文比在-0.4<β<0.4范围内,结果清楚地表明:(1)空气动力学方法的计算结果比波文比方法所得结果有偏小趋势(空气动力学方法计算中假设... 本文采用波文比法;能量平衡法;空气动力学法和蒙蒂斯综合法计算了农田水分散失。并进行了比较。波文比在-0.4<β<0.4范围内,结果清楚地表明:(1)空气动力学方法的计算结果比波文比方法所得结果有偏小趋势(空气动力学方法计算中假设Kh/Kw=1);(2)能量平衡方法的计算结果与波文法的计算结果吻合的相当好,并且能量平衡方法的最大优点是不用观测湿度梯度,(3)蒙蒂斯综合法的计算结果与波文比法的结果也比较一致。文中就各种方法的误差也做了分析。 展开更多
关键词 农田 水分 蒸散 波文比法
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Causes of the Intraseasonal SST Variability in the Tropical Indian Ocean 被引量:2
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作者 Tim Li Francis Tam +2 位作者 Xiouhua Fu ZHOU Tian-Jun ZHU Wei-Jun 《Atmospheric and Oceanic Science Letters》 2008年第1期18-23,共6页
Satellite observations reveal a much stronger intraseasonal sea surface temperature (SST) variability in the southern Indian Ocean along 5-10 o S in boreal winter than in boreal summer. The cause of this seasonal depe... Satellite observations reveal a much stronger intraseasonal sea surface temperature (SST) variability in the southern Indian Ocean along 5-10 o S in boreal winter than in boreal summer. The cause of this seasonal dependence is studied using a 2 -layer ocean model forced by ERA-40 reanalysis products during 1987-2001. The simulated winter-summer asymmetry of the SST variability is consistent with the observed. A mixed-layer heat budget is analyzed. Mean surface westerlies along the ITCZ (5-10 o S) in December-January-February (DJF) leads to an increased (decreased) evaporation in the west- erly (easterly) phase of the intraseasonal oscillation (ISO), during which convection is also enhanced (suppressed). Thus the anomalous shortwave radiation, latent heat flux and entrainment effects are all in phase and produce strong SST signals. During June-July-August (JJA), mean easterlies prevail south of the equator. Anomalies of the shortwave radiation tend to be out of phase to those of the latent heat flux and ocean entrainment. This mutual cancellation leads to a weak SST response in boreal summer. The resultant SST tendency is further diminished by a deeper mixed layer in JJA compared to that in DJF. The strong intraseasonal SST response in boreal winter may exert a delayed feedback to the subsequent opposite phase of ISO, implying a two-way air-sea interaction scenario on the intraseasonal timescale. 展开更多
关键词 印度洋 短波辐射 海洋雾沫 海面温度
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