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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
2.
利用黔西南州8个国家气象观测站1961~2020年的极端最高、最低和平均最高、最低气温资料,以年代为周期,分析近60年黔西南州极端最高、最低和平均最高、最低气温的时空演变特征。结果表明:夏季,北亚热带季风湿润气候区及南亚热带季风湿润气候区的平均最高气温、平均极端最高气温在60年代至80年代处于持续上升趋势,在90年代略下滑,进入21世纪后又持续上升。北亚热带季风湿润气候区,近60年平均最高气温升高0.96℃,平均极端最高气温升高0.43℃;南亚热带季风湿润气候区近60年平均最高气温升高0.73℃,平均极端最高气温升高0.62℃。冬季,北亚热带季风湿润气候区平均最低气温及平均极端最低气温在70年代至80年代处于持续上升趋势,90年代略下滑,而进入21世纪又转为上升,近60年平均最低气温升高0.92℃,平均极端最低气温升高1.64℃;南亚热带季风湿润气候区,冬季平均最低气温及平均极端最低气温近60年呈持续上升趋势,平均最低气温升高2.35℃,平均极端最低气温升高3.32℃。 相似文献
3.
利用地震前后的Landsat-8和Sentinel-2光学遥感影像数据,基于频率域互相关算法提取加利福尼亚州MW7.1及MW6.4地震的同震形变场,同时针对形变数据易受轨道误差、条带误差及时间失相干的影响,分别采用最小二乘多项式曲线拟合、改进均值相减等方法去除系统误差项。研究表明,MW7.1主震以右旋走滑为主,地表形变的断层迹线呈NNW走向,长度达55 km,最大滑移量约为2.82 m;MW6.4地震的发震断层迹线呈NE走向,长度达15 km,最大滑移量约为1.05 m,推测2次地震的发震断层分别为NNW向右旋走滑断裂及NE向左旋走滑断裂,二者形成典型的共轭关系。 相似文献
4.
疫灾是人类灾害链网中的顶级灾害。利用历史疫灾史料,建立疫灾时间序列,使用历史断面分析、因子相关分析、时间序列分析等方法,对中国过去2720年疫灾流行的时空特征及其影响因素进行研究。结果表明:① 中国疫灾流行的频度和强度有长期上升趋势,温暖期形成疫灾低谷,寒冷期形成疫灾高峰。② 中国疫灾流行总体以夏、秋季为主,但有阶段性差异,15世纪50年代以后,由于疫病种类增多,疫灾频度提高,疫灾的季节性差异逐渐不显著。③ 中国疫灾波动周期主要有620~610 a、320~310 a、230~220 a、170 a、90 a等,它们大都是12 a或11.2 a的倍数,反映了“十二地支”周期的存在和太阳黑子活动对疫灾周期的重大影响。④ 过去近3000年里,中国累积的疫灾广泛度为93.51%,疫灾厚度达16.86层,东南半壁的疫灾比西北半壁的频繁得多、严重得多。⑤ 中国疫灾区域拓展与土地开发同步,疫灾重心变迁受经济重心的牵引,南宋以前由北向南迁移,南宋以后由东向西迁移;外来疫病输入对疫灾分布格局产生重大影响。⑥ 疫灾流行既是自然生态现象,也是社会文化现象,疫灾时空分布变迁反映人地关系变迁,人口稠密区、交通沿线区、都城周边区、自然疫源区、灾害频发区都是疫灾多发区。⑦ 地理环境分异奠定疫灾空间分异,高温、高湿、低海拔地区疫灾易于流行;自然灾害对疫灾具有诱发作用,灾害频繁区也是疫灾频发区,灾害频繁期也是疫灾频繁期;气候变迁影响疫灾波动,寒冷期疫灾多发,温暖期疫灾少发;人口增加带来的土地开发和人地关系紧张,加剧疫灾的流行;疫灾与战争如影随形,战乱频繁期也是疫灾频繁期。 相似文献
5.
Houfangzi graphite deposit is located in the middle of the graphite metallogenic belt in the northern margin of North China Block in Hebei Province, which belongs to regional metamorphic type graphite deposit. In this paper, through rock-mineral determination, IP ladder sections and exploratory trench survey, the authors have discussed its metallogenic geological characteristics and ore body characteristics, and analyzed its ore genesis. The research results show that the ore bodies are mainly in the graphitic marble of Dongjingzi Formation of Hongqiyingzi Group, which are stratified and controlled by layers, with NE trend and NNW inclination. The IP anomaly shows that Houfangzi graphite deposit is characterized by low resistance and high polarization. Ore bodies are stable and of big scale, and their fixed carbon content ranges from 1.42% to 3.28%, which has the potential to be a large graphite deposit. The ore-forming material came from granulite and graphite marble, while the regional metamorphism is the main mineralization of Houfangzi graphite deposit, with the enrichment and increasement caused by late magmatic activity and migmatization. 相似文献
6.
7.
Field measurement and modelling of soil erosion provides insights into landscape systems as well as the potential for enhanced landscape management. There are a number of field and numerical methods by which soil erosion and deposition can be quantified. Here we examine the capability of the SIBERIA landscape evolution model to quantify short-term erosion and deposition on a well-managed cattle grazing landscape on the east coast of Australia. The model is calibrated by two methods (1) a geomorphological approach using a site digital elevation model (DEM) and soil data and (2) a laboratory-scale flume. The two calibration processes resulted in similar model input parameters and estimated erosion rates of 3.1 t ha−1 year−1 and 4.4 t ha−1 year−1, respectively. These were found to closely match erosion rates estimated using the environmental tracer 137Cs (2.7–4.8 t ha−1 year−1). However, erosion and deposition estimated at individual points along the hillslope was not well correlated with 137Cs at the same position due to the temporal averaging of the model and microtopography. Sensitivity analysis showed the model was more sensitive to parameterisation than sub-DEM-scale topography. This places confidence in the model's ability to estimate erosion and deposition across an entire hillslope and catchment on decadal time scales. We also highlight the robustness and flexibility of the calibration methods. 相似文献
8.
We introduce the freely available web-based Water in an Agricultural Landscape—NUčice Database (WALNUD) dataset that includes both hydrological and meteorological records at the Nučice experimental catchment (0.53 km2), which is representative of an intensively farmed landscape in the Czech Republic. The Nučice experimental catchment was established in 2011 for the observation of rainfall–runoff processes, soil erosion processes, and water balance of a cultivated landscape. The average altitude is 401 m a.s.l., the mean land slope is 3.9%, and the climate is humid continental (mean annual temperature 7.9°C, annual precipitation 630 mm). The catchment is drained by an artificially straightened stream and consists of three fields covering over 95% of the area which are managed by two different farmers. The typical crops are winter wheat, rapeseed, and alfalfa. The installed equipment includes a standard meteorological station, several rain gauges distributed across the basin, and a flume with an H-type facing that is used to monitor stream discharge, water turbidity, and basic water quality indicators. Additionally, the groundwater level and soil water content at various depths near the stream are recorded. Recently, large-scale soil moisture monitoring efforts have been introduced with the installation of two cosmic-ray neutron sensors for soil moisture monitoring. The datasets consist of observed variables (e.g. measured precipitation, air temperature, stream discharge, and soil moisture) and are available online for public use. The cross-seasonal, open access datasets at this small-scale agricultural catchment will benefit not only hydrologists but also local farmers. 相似文献
9.
Chris Soulsby Bernhard Scheliga Aaron Neill Jean-Christophe Comte Doerthe Tetzlaff 《水文研究》2021,35(6):e14206
The drought of summer 2018, which affected much of Northern Europe, resulted in low river flows, biodiversity loss and threats to water supplies. In some regions, like the Scottish Highlands, the summer drought followed two consecutive, anomalously dry, winter periods. Here, we examine how the drought, and its antecedent conditions, affected soil moisture, groundwater storage, and low flows in the Bruntland Burn; a sub-catchment of the Girnock Burn long-term observatory in the Scottish Cairngorm Mountains. Fifty years of rainfall-runoff observations and long-term modelling studies in the Girnock provided unique contextualisation of this extreme event in relation to more usual summer storage dynamics. Whilst summer precipitation in 2018 was only 63% of the long-term mean, soil moisture storage across much of the catchment were less than half of their summer average and seasonal groundwater levels were 0.5 m lower than normal. Hydrometric and isotopic observations showed that ~100 mm of river flows during the summer (May-Sept) were sustained almost entirely by groundwater drainage, representing ~30% of evapotranspiration that occurred over the same period. A key reason that the summer drought was so severe was because the preceding two winters were also dry and failed to adequately replenish catchment soil moisture and groundwater stores. As a result, the drought had the biggest catchment storage deficits for over a decade, and likely since 1975–1976. Despite this, recovery was rapid in autumn/winter 2018, with soil and groundwater stores returning to normal winter values, along with stream flows. The study emphasizes how long-term data from experimental sites are key to understanding the non-linear flux-storage interactions in catchments and the “memory effects” that govern the evolution of, and recovery from, droughts. This is invaluable both in terms of (a) giving insights into hydrological behaviours that will become more common water resource management problems in the future under climate change and (b) providing extreme data to challenge hydrological models. 相似文献
10.
利用福建重力台网7套gPhone重力仪的连续观测资料,对不同震中距和震级地震的同震响应特征及重力仪映震的最大震中距进行分析。结果表明:1)福建重力台网的映震效能受震级和震中距影响,从映震能力来看,泉州台优于莆田台,厦门台优于福州台,漳州台和龙岩台优于南平台;2)福建重力台网的仪器稳定性好和灵敏度高,与CMG-3ESP 120S地震计相比,重力仪具有较宽的地震频带,其同震响应持续时间与波幅呈高度正相关性;3)福建重力台网仪器映震的最大震中距(Δ)与震级(MS)存在对应关系,具体公式为MS=-0.218(logΔ)3+2.056(logΔ)2-4.594logΔ+6.459。 相似文献