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Estimation of ground heat flux and its impact on the surface energy budget for a semi-arid grassland 被引量:11
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作者 JinQing Zuo JieMin Wang +3 位作者 JianPing Huang WeiJing Li GuoYin Wang HongLi Ren 《Research in Cold and Arid Regions》 2011年第1期41-50,共10页
Three approaches, i.e., the harmonic analysis (HA) technique, the thermal diffusion equation and correction (TDEC) method, and the calorimetric method used to estimate ground heat flux, are evaluated by using obse... Three approaches, i.e., the harmonic analysis (HA) technique, the thermal diffusion equation and correction (TDEC) method, and the calorimetric method used to estimate ground heat flux, are evaluated by using observations from the Semi-Arid Climate and Environment Observatory of Lanzhou University (SACOL) in July, 2008. The calorimetric method, which involves soil heat flux measurement with an HFP01SC self-calibrating heat flux plate buried at a depth of 5 cm and heat storage in the soil between the plate and the surface, is here called the ITHP approach. The results show good linear relationships between the soil heat fluxes measured with the HFP01SC heat flux plate and those calculated with the HA technique and the TDEC method, respectively, at a depth of 5 cm. The soil heat fluxes calculated with the latter two methods well follow the phase measured with the HFP01SC heat flux plate. The magnitudes of the soil heat flux calculated with the HA technique and the TDEC method are close to each other, and they are about 2 percent and 6 percent larger than the measured soil heat flux, respectively, which mainly occur during the nighttime. Moreover, the ground heat fluxes calculated with the TDEC method and the HA technique are highly correlated with each other (R2= 0.97), and their difference is only about 1 percent. The TDEC-calculated ground heat flux also has a good linear relationship with the ITttP-calculated ground heat flux (R2 = 0.99), but their difference is larger (about 9 percent). Furthermore, compared to the HFP01SC direct measurements at a depth of 5 cm, the ground heat flux calculated with the HA technique, the TDEC method, and the ITHP approach can improve the surface energy budget closure by about 6 percent, 7 percent, and 6 percent at SACOL site, respectively. Therefore, the contribution of ground heat flux to the surface energy budget is very important for the semi-arid grassland over the Loess Plateau in China. Using turbulent heat fluxes with common corrections, soil heat storage between the surface and the heat flux plate can improve the surface energy budget closure by about 6 to 7 percent, resulting in a closure of 82 to 83 percent at the SACOL site. 展开更多
关键词 soil heat flux harmonic analysis tdec method self-calculating heat flux plate surface energy budget
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上海地区夏季地表热通量特征及其影响因素 被引量:1
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作者 陆一凡 李勇 +2 位作者 SHIGETOSHI Ipposhi YASUMITSU Nomura 王如竹 《上海交通大学学报》 EI CAS CSCD 北大核心 2019年第8期891-897,共7页
通过土壤温度预报校正(TDEC)法验证了地表下5 mm处测量土壤热通量的准确性,并以此代表地表热通量.总结了上海地区3种典型日(晴天、多云、雨天)地表下5 mm处土壤热通量的日变化情况,并通过控制变量法综合分析不同因素(太阳辐射量、土壤... 通过土壤温度预报校正(TDEC)法验证了地表下5 mm处测量土壤热通量的准确性,并以此代表地表热通量.总结了上海地区3种典型日(晴天、多云、雨天)地表下5 mm处土壤热通量的日变化情况,并通过控制变量法综合分析不同因素(太阳辐射量、土壤含水量、云量等)对土壤热通量的影响.结果表明:土壤热通量的波动晴天时最剧烈,波动范围为-23.62~111.81 W/m^2;随着土壤深度的递减,土壤热通量在多云和雨天的波动范围依次减小;未下雨时太阳辐射量与土壤热通量之间的相关性较强(R^2>0.74);土壤热通量的波动范围随土壤含水量的增加而缩小;在不同典型日,土壤热通量受到不同因素的影响. 展开更多
关键词 地表热通量 太阳辐射量 土壤含水量 土壤温度预报校正法 典型日
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青藏高原东缘峨眉山地区冬季地表能量交换特征研究 被引量:6
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作者 吕钊 李茂善 +5 位作者 刘啸然 阴蜀城 宋兴宇 伏薇 王灵芝 舒磊 《高原气象》 CSCD 北大核心 2020年第3期445-458,共14页
利用青藏高原东缘峨眉山站2018年11月至2019年2月的观测数据,分析了峨眉山地区近地层气象要素的变化特征,并运用涡动相关法、土壤温度预报校正法(TDEC)和最小二乘法等,讨论了地表能量交换特征,并与藏东南丹卡站和排龙站进行对比分析。... 利用青藏高原东缘峨眉山站2018年11月至2019年2月的观测数据,分析了峨眉山地区近地层气象要素的变化特征,并运用涡动相关法、土壤温度预报校正法(TDEC)和最小二乘法等,讨论了地表能量交换特征,并与藏东南丹卡站和排龙站进行对比分析。结果表明:在峨眉山地区冬季感热通量占主导。地表辐射各分量日变化均呈单峰结构,短波辐射的峰值在峨眉山地区于13:00(北京时,下同)左右出现,而长波辐射到达峰值的时间段要晚于短波辐射,在14:00左右出现。地表反照率月变化明显,日变化呈“U”型,即日出后和日落前较大,日间较小的趋势,但在日出后和日落前的值并不相等。峨眉山站冬季地表反照率均值为0.29。峨眉山区域地表能量不闭合现象十分显著,日间和夜间的能量闭合程度差异很大。在考虑地表0~5 cm处的热量储存的条件下,白天闭合程度最好为67.22%,夜间闭合程度最差为65.09%。与藏东南丹卡站和排龙站对比分析表明:丹卡、排龙站地表辐射各分量达日峰值时间晚于峨眉山站。峨眉山站冬季的地表反照率高于丹卡、排龙站,月变化更加显著。峨眉山属于青藏高原东缘地区,其地表能量闭合程度大于青藏高原上部分站点。 展开更多
关键词 峨眉山地区 涡动相关法 tdec 地表能量交换 能量平衡
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