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考虑降雨作用的多年冻土区不同地表土质活动层水热过程差异分析 被引量:10
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作者 张明礼 温智 +4 位作者 董建华 王得楷 岳国栋 王斌 高樯 《岩土力学》 EI CAS CSCD 北大核心 2020年第5期1549-1559,共11页
为明确气候湿化背景下多年冻土活动层对降雨的水热响应机制,探讨了考虑降雨作用的不同土质地表能水平衡差异和活动层水热过程。基于土壤–地表–大气能量平衡的冻土水–汽–热耦合模型,以青藏高原北麓河地区2013年实测气象资料为模型驱... 为明确气候湿化背景下多年冻土活动层对降雨的水热响应机制,探讨了考虑降雨作用的不同土质地表能水平衡差异和活动层水热过程。基于土壤–地表–大气能量平衡的冻土水–汽–热耦合模型,以青藏高原北麓河地区2013年实测气象资料为模型驱动数据,定量分析了高原真实野外降雨条件下3种典型地表土质(砂土、亚砂土、粉质黏土)地表水分和能量平衡差异、活动层内部水分与能量输运分量变化过程和耦合机制。结果表明:随着土壤粒径增大,地表净辐射增大、蒸发潜热增大、感热通量减少、土壤热通量减小,不同土质地表蒸发潜热和地表感热通量差异最为显著,地表能量平衡差异在暖季较大、冷季较小;土壤粒径越大,水势梯度液态水和温度梯度水汽迁移越显著,但温度梯度水汽通量减小、水势梯度液态水通量增大;随着土壤粒径增大,土壤浅表层水分减少,25~75 cm水分略有增加;随着土壤粒径增大,土壤导热系数、降雨入渗对流传热和地表蒸发量增大、热传导通量减小,土体温度梯度降低,相同深度处土壤温度更高,活动层厚度增大,不利于多年冻土稳定。研究成果可为湿化背景下多年冻土的稳定性预测和保护提供参考。 展开更多
关键词 多年冻土 活动层 热变化 土壤质地 降雨 地表能水平衡
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Estimation of clear-sky longwave downward radiation from HJ-1B thermal data 被引量:5
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作者 YU ShanShan XIN XiaoZhou LIU QinHuo 《Science China Earth Sciences》 SCIE EI CAS 2013年第5期829-842,共14页
To satisfy the requirement of surface energy budget research on the meso- and micro-scale, a parameterization is developed to calculate high spatial resolution, clear-sky downward longwave radiation (DLR) from HJ-IB... To satisfy the requirement of surface energy budget research on the meso- and micro-scale, a parameterization is developed to calculate high spatial resolution, clear-sky downward longwave radiation (DLR) from HJ-IB thermal data. The DLR algorithm is established based on extensive radiative transfer simulation and statistical analysis. To address the problem that HJ-1B has a single thermal channel and lacks atmospheric information, the brightness temperature of HJ-1B and water vapor content are used in the algorithm. An accuracy evaluation and error analysis for the algorithm is conducted using a simulated radiation da- taset. The result shows that the algorithm performs well in most circumstances, but there is obvious underestimation when wa- ter vapor content is greater than 4 g/cm2. Error analysis indicates the accuracy of estimated DLRs is affected by uncertainties in input parameters, including water vapor content and top-of-atmosphere radiance. It is also affected by the difference between ground and near-surface air temperature. The algorithm is applied to actual HJ-1B data, and validated by ground data from six stations in the Heihe River and Haihe River basins. The estimated DLRs have good consistency with measured data except at Huazhaizi, and root mean square errors at most sites are around 20 W/m2, which is slightly better than the result of MODIS. There is significant overestimation of DLR at Huazhaizi during summer, which is mainly produced by the large ground-air temperature difference. A correction process based on temperature difference is proposed and applied at Huazhaizi. The result shows that the positive bias is largely diminished after correction. 展开更多
关键词 PARAMETERIZATIONS brightness temperature MODIS water vapor ground-air temperature difference correction
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