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排序方式: 共有126条查询结果,搜索用时 15 毫秒
1.
Tomoki Oda Tomohiro Egusa Nobuhito Ohte Norifumi Hotta Nobuaki Tanaka Mark B. Green Masakazu Suzuki 《水文研究》2021,35(5):e14177
Understanding changes in evapotranspiration during forest regrowth is essential to predict changes of stream runoff and recovery after forest cutting. Canopy interception (Ic) is an important component of evapotranspiration, however Ic changes and the impact on stream runoff during regrowth after cutting remains unclear due to limited observations. The objective of this study was to examine the effects of Ic changes on long-term stream runoff in a regrowth Japanese cedar and Japanese cypress forest following clear-cutting. This study was conducted in two 1-ha paired headwater catchments at Fukuroyamasawa Experimental Watershed in Japan. The catchments were 100% covered by Japanese coniferous plantation forest, one of which was 100% clear-cut in 1999 when the forest was 70 years old. In the treated catchment, annual runoff increased by 301 mm/year (14% of precipitation) the year following clear-cutting, and remained 185 mm/year (7.9% of precipitation) higher in the young regrowth forest for 12–14 years compared to the estimated runoff assuming no clear-cutting. The Ic change was −358 mm/year (17% of precipitation) after cutting and was −168 mm/year (6.7% of precipitation) in the 12–14 years old regrowth forest compared to the observed Ic during the pre-cutting period. Stream runoff increased in all seasons, and the Ic change was the main fraction of evapotranspiration change in all seasons throughout the observation period. These results suggest that the change in Ic accounted for most of the runoff response following forest cutting and the subsequent runoff recovery in this coniferous forest. 相似文献
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3.
An analysis is undertaken to develop techniques to remotely sense relative evapotranspiration outputs in the distal Okavango Delta using enhanced thematic mapper and ground based techniques to help quantify water loss. Much of this work focuses on riparian woodlands which, especially in the distal portion of the Delta, are regarded as being significant in terms of groundwater removal by transpiration. This was confirmed as vegetation cover mapping led to the identification of two riparian classes which, by association with high resistivity aeromagnetic data, were found to be rooted in near surface fresh groundwater. This paper indicates that riparian trees which remain green year long, partly sustain their growth as a result of groundwater uptake. A comparison of frequently flooded and dry floodplains with distinct riparian zones was undertaken using spectral techniques (pixel radiance values and leaf water content indices) to determine whether flooding and lateral groundwater flow stimulated growth (and therefore transpiration rate) following dormancy. Results indicate a basic similarity between the two systems with mixed evidence of assumed leaf growth. Related phenological observations in the riparian zone of the dry floodplain show that renewal of leaf growth is primarily related to rainfall, not flood events in the distal Delta. The results of this work should help effect both surface and groundwater management in the vicinity of population centres in the distal Delta. 相似文献
4.
根据不同作物不同发育阶段的需水特性,建立了作物蒸腾耗水模型。利用水分平衡方程。根据降水量及前期土壤水分储存量与作物蒸散耗水量的差,确定作物不同生育期水分满足程度的时间变化曲线,用以衡量水分的满足程度。 相似文献
5.
东北大部旱情缓解粤闽局地暴雨成灾—1997年5月—徐良炎(国家气候中心,北京100081)5月份,东北大部、华北北部及黄淮等地普降喜雨,旱情缓解;西北东部、华北西部等地降水偏少,旱情持续或发展。南方大部地区雨水比较调匀,无大范围旱涝发生,但华南局地遭... 相似文献
6.
麦田蒸腾需水量的计算模式 总被引:7,自引:0,他引:7
本文依据Penman-Monteith方法对小麦田田间蒸腾需水量计算方法进行了探讨,得出了一个改进的小麦蒸腾需水量计算模式,对模式中某些参数作了修订;并用中国科学院禹城综合试验站的观测资料对模式进行了计算,结果表明,采用本模式计算充分湿润麦田的蒸腾需水量效果良好 相似文献
7.
地下水浅埋区土壤水的矿化度变化规律及其影响因素浅析 总被引:7,自引:0,他引:7
土壤水的研究对农田水利、水文地质、生态与环境等都具有很重要的意义 ,本文概略介绍了在黄河三角洲地区开展包气带水分运移试验研究过程中 ,野外获取土壤水的方法及设备。在对水样分析结果进行总结的基础上 ,对试验点土壤水的矿化度变化规律及其影响因素进行了初步的分析。主要结论为 ,在地下水浅埋区 ,地下水与土壤水矿化度变化关系密切 ;蒸发作用与蒸腾作用对土壤水矿化度的影响效果是不同的 ,蒸发作用使上层土壤水的矿化度加大 ,而植被在其生长期降低土壤水的矿化度 ;地下水、植被和土壤性质是影响土壤水矿化度的重要因素 相似文献
8.
Photosynthesis-transpiration coupling model at canopy scale in terrestrial ecosystem 总被引:1,自引:0,他引:1
At the hypothesis of big leaf, an ecosystem photosynthesis-transpiration coupling cycle model was established by the scaled SMPT-SB model from single leaf to canopy, and model parameterization methods were discussed. Through simulating the canopy light distribution, canopy internal conductance to CO2 can be scaled from single leaf to canopy by integrating to canopy using the relationship between single internal conductance and photosynthetic photon flux density. Using the data observed by eddy covariance method from the Changbai Mountains site of ChinaFLUX, the application of the model at the canopy scale was examined. Under no water stress, the simulated net ecosystem photosynthesis rate fitted with the observed data very well, the slope and R2 of the line regression equation of the observed and simulated values were 0.7977 and 0.8892, respectively (n = 752), and average absolute error was 3.78 μmol CO2 m-2s-1; the slope, R2 and average absolute error of transpiration rate were 0.7314, 0.4355 and 1.60mmol H2O m-2 s-1, respectively (n = 752). The relationship between canopy photosynthesis,transpiration and external environmental conditions was discussed by treating the canopy as a whole and neglecting the comprehensive feedback mechanism within canopy, and it was noted that the precipitation course affected the transpiration rate simulation badly. Compared to the models based on eco-physiological processes, the SMPT-SB model was simple and easy to be used. And it can be used as a basic carbon and water coupling model of soil-plant-atmosphere continuum. 相似文献
9.
Street and garden trees in urban areas are often exposed to advection of strong vapour pressure deficit (VPD) air that can raise the whole‐tree transpiration rate (ET), known as the oasis effect. However, urban trees tend to have small soil volume compared with natural conditions, and so they are believed to strongly regulate stomata. ET characteristics of such urban trees have not been well understood because of a lack of reliable measurement methods. Therefore, we propose a novel weighing lysimeter method and investigate the whole‐tree water balance of an isolated container‐grown Zelkova serrata to examine (a) which biotic and abiotic factors determine ET and (b) which spatial and temporal information is needed to predict ET under urban conditions. Whole‐tree water balance and environmental conditions were measured from 2010 to 2012. Although leaf area substantially increased in the study period, daily ET did not vary much. ET increased with VPD almost linearly in 2010 but showed saturation in 2011 and 2012. Root water uptake lagged ET by 40 min in 2012. These results suggest that the small planter box interfered with root growth and that hydraulic supply capacities did not increase sufficiently to support leaf area increase. From analysis of water balance, we believe that neglecting soil drought effects on street trees without irrigation in Japan will overestimate ET over 4–5 sunny days at the longest. This is unlike previous studies of forest. 相似文献
10.
冬小麦蒸腾速率在不同土壤水分条件下的修正 总被引:1,自引:1,他引:0
为找到不同土壤含水量对蒸腾速率的影响程度,通过对L1-6200便携式作物生理测定仪在不同土壤水分处理下的蒸腾速率观测值与气象条件计算得出的理论值进行比较,确定不同土壤水分条件下的蒸腾速率修正系数.分析发现:①在不同的土壤含水量下,未考虑修正系数的情况时,土壤含水量越小,理论计算误差越大;土壤含水量越大,理论计算误差越小.②土壤含水量小时蒸腾速率计算值的修正系数大,而土壤含水量偏大时修正系数小.③考虑修正系数后,计算误差显著减小,除了土壤含水量为14.89%稍有偏差外,其它土壤含水量状态下的理论计算值非常接近实际观测值.同时验证了不同土壤水分下的修正系数足显著的. 相似文献