Controlling Factors and Characteristics of Peak Runoff in an Alpine Headwater Under the Asian Monsoon Climate

IF 1.7 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES
K. Sakakibara, Keisuke Suzuki
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引用次数: 1

Abstract

Understanding the mountain hydrological cycle, including runoff processes, is important for water-related disaster prevention. Although the process of peak runoff generation is closely related to water hazards, this process has not been clarified in alpine headwaters with large amounts of precipitation. In this study, we conducted hydrological observations to clarify runoff characteristics and factors that determine peak runoff in an alpine headwater under the Asian monsoon climate. Total precipitation during the summer period (3 months) was 1581.4 mm, and the water runoff responded quickly and clearly to rainfall events. Focusing on baseflow, the runoff was terminated when the snow cover area decreased. This suggested that snowmelt water plays an important role in maintaining baseflow in alpine headwaters under the Asian monsoon climate, like other alpine areas worldwide. In addition, peak runoff was not significantly correlated with soil wetness (as indicated by the antecedent precipitation index), whereas it was correlated with the amount of rainfall just before the generation of peak runoff. Therefore, the amount of rainfall before peak runoff in a single event was important in determining peak runoff. Focusing on the snowmelt season, we confirmed that the runoff increased even during small rainfall events. This indicated that snowpack melting is another factor determining peak runoff when the snowpack remains in the catchment. Considering the immediate runoff generation after rainfall events, direct observation of hydrometeorological data in situ is crucial to predict water-related disasters and consider countermeasures in alpine regions.
亚洲季风气候下高寒源区峰值径流控制因素及特征
了解山区水文循环,包括径流过程,对于预防与水有关的灾害非常重要。尽管峰值产流过程与水危害密切相关,但在降水量大的高山源头,这一过程尚未得到澄清。在这项研究中,我们进行了水文观测,以阐明亚洲季风气候下高山源头的径流特征和决定峰值径流的因素。夏季(3个月)的总降水量为1581.4毫米,径流对降雨事件的反应迅速而明显。以基流为重点,当积雪面积减少时,径流终止。这表明,与世界其他高山地区一样,融雪水在亚洲季风气候下维持高山源头的基本流量方面发挥着重要作用。此外,峰值径流与土壤湿度没有显著相关性(如前期降水指数所示),而与峰值径流产生前的降雨量相关。因此,在确定峰值径流时,单个事件中峰值径流前的降雨量很重要。以融雪季节为重点,我们确认,即使在小范围降雨期间,径流量也会增加。这表明,当积雪留在集水区时,积雪融化是决定峰值径流的另一个因素。考虑到降雨事件后会立即产生径流,现场直接观测水文气象数据对于预测与水有关的灾害和考虑高山地区的应对措施至关重要。
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来源期刊
Mountain Research and Development
Mountain Research and Development 地学-环境科学
CiteScore
3.10
自引率
18.80%
发文量
36
审稿时长
4.5 months
期刊介绍: MRD features three peer-reviewed sections: MountainDevelopment, which contains “Transformation Knowledge,” MountainResearch, which contains “Systems Knowledge,” and MountainAgenda, which contains “Target Knowledge.” In addition, the MountainPlatform section offers International Mountain Society members an opportunity to convey information about their mountain initiatives and priorities; and the MountainMedia section presents reviews of recent publications on mountains and mountain development. Key research and development fields: -Society and culture- Policy, politics, and institutions- Economy- Bio- and geophysical environment- Ecosystems and cycles- Environmental risks- Resource and land use- Energy, infrastructure, and services- Methods and theories- Regions
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