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刊·见 | SCIE期刊Hydrological Sciences Journal,探索水文科学国际研究前沿 精选

已有 2345 次阅读 2025-5-12 15:09 |个人分类:环境与农林|系统分类:科研笔记

数千年来,科学界对地球上水的起源、存在形态、分布格局、循环机制及变化规律的研究从未停歇。如今,面对全球水资源日益严峻的挑战,科研人员正以空前的热情与创新精神,致力于探寻可持续的解决方案,以应对这一关乎人类未来的重大课题。

本期刊·见为大家介绍国际水文科学协会官方期刊—Hydrological Sciences Journal。除了对期刊进行详尽的介绍外,还将向您介绍刊内近三年高被引文章,以及近一年高阅读文章:

https://www.tandfonline.com/journals/thsj20

  • ISSN: 0262-6667

  • Online ISSN: 2150-3435

Hydrological Sciences Journal是国际水文科学协会(International Association of Hydrological Sciences, IAHS)的官方期刊,旨在就全球水文学的重大发展交流信息和观点,期刊的研究范围包括:

  • 水文循环

  • 地表水、地下水、雪和冰的所有物理、化学和生物过程及其相互关系,以及它们与地理因素、大气过程和气候以及包括侵蚀和沉积在内的地球过程的关系

  • 极端水文现象及其影响

  • 水文过程的测量、数学表示和计算方面

  • 水资源利用和管理的水文方面及其在人类活动影响下的变化

  • 水资源系统,包括应用水文学的规划、工程、管理和经济方面

该期刊已被SCIE, Scopus等数据库收录。

影响因子

根据JCR显示,Hydrological Sciences Journal

  • 2023年影响因子为2.8

  • 在水资源领域排名为45/128

CiteScore

根据Scopus显示, Hydrological Sciences Journal

  • 2023年CiteScore为6.6

  • 在环境科学:水科学与技术领域排名48/2361

作者须知

接收文章类型

Hydrological Sciences Journal主要发表以下类型的稿件:

  • Research Article

  • Technical Note

  • Rapid Communication

  • Opinion Paper

  • Discussion and Reply to Discussion

  • Special Issue Paper

  • Review Article

审稿周期

  • 从提交稿件到获取初审意见,平均需要33

  • 稿件一旦接受后,在线出版平均需要27

Hydrological Sciences Journal为混合开放获取期刊,支持作者以开放获取的模式发表文章,提升研究影响力。

编辑团队

Hydrological Sciences Journal的主编由意大利博洛尼亚大学( University of Bologna)的Attilio Castellarin教授担任。期刊的副主编团队由来自美国、中国、德国、意大利等多地的行业翘楚组成。

主编介绍

Attilio Castellarin

Attilio Castellarin,意大利博洛尼亚大学土木、化学、环境与材料工程系教授,研究兴趣包括:高级水文建模和数据同化;变化环境中洪水风险评估和管理;极端事件频率分析及其归因;水文数据收集和分析创新;土地规划和管理工具和方法的发展。

中国副主编

彭定志

彭定志,北京师范大学水科学研究院教授,主要研究领域:流域水文过程、气候变化、遥感。

张斐章

张斐章,台湾大学特聘教授,长期致力于研发人工智能技术在水文水资源相关研究中的应用。

周研来

周研来,武汉大学水利水电学院教授,研究方向为:水文智能预报模型方法、水库群调度理论与方法、“水-风-光-储”多能互补调度。

杨龙

杨龙,南京大学地理与海洋科学学院教授,现任国际水文科学协会中国国家委员会水资源系统分会副主席、秘书长,陆气关系分委会委员。主要从事流域洪涝过程机理与预测研究。

赵铜铁钢

赵铜铁钢,中山大学土木工程学院教授,智慧河海工程团队负责人,从事流域水文预报、水文气象预报和水资源调度方面的教学和研究工作。

作者分布

根据JCR显示,近三年在Hydrological Sciences Journal发文的国家中,发文前三的国家/地区有:

  • 印度

  • 中国

  • 美国

近三年,在Hydrological Sciences Journal全球高校和科研机构中,发文数量排名前三位的是:

  • 印度理工学院系统

  • 法国国家科学研究中心

  • 法国国家农业食品与环境研究院

文章推荐

近三年内高被引文章

RUSLE模型在全球范围内的应用:全面回顾

作者:Mithlesh Kumar et al.

文章摘要:

The Revised Universal Soil Loss Equation (RUSLE) is the most widely used global soil erosion model. The poor performance of the RUSLE is solely dependent on the inherent structure of the RUSLE model to account for the soil erosion phenomena under varying topographic and climatic conditions. Considering the extensive global application of the RUSLE model, it is high time in research to identify the suitability of the RUSLE model under varying conditions. In this context, a global-scale review of the RUSLE model application was carried out to identify the best possible conditions for its reliable application and the conditions where it yielded poor performance. RUSLE is still the most frequently operational erosion simulation model despite its numerous deficiencies, weaknesses, and limitations. Nevertheless, the application over large and ungauged areas remains a real challenge due to the non-availability and quality of the required inputs.

用于连续监测短时溪流水位的低成本舞台相机系统

作者:Simone Noto et al.

文章摘要:

Monitoring ephemeral and intermittent streams is a major challenge in hydrology. On-site inspections may be impractical in difficult-to-access environments. Motivated by the latest advancements in digital cameras and computer vision techniques, in this work, we describe the development and application of a stage-camera system to monitor the water level in ungauged headwater streams. The system encompasses a consumer-grade wildlife camera with near-infrared (NIR) night vision capabilities and a white pole that serves as reference object in the collected images. The feasibility of the approach is demonstrated through a set of benchmark experiments performed in natural settings. Maximum mean absolute errors between stage-camera and reference data are approximately equal to 2 cm in the worst scenario that corresponds to severe storms with intense rainfall and fog. Our preliminary results are encouraging and support the scalability of the stage-camera in future implementations in a wide range of natural settings.

Figure 1. Left, stage-camera system including a wildlife camera installed on a river bank (enclosed in the bottom left dashed circle) and a steel pole fixed in the stream (enclosed in the top right dashed ellipse).

近一年内高阅读量文章

国际水文科学协会(IAHS)解决方案十年计划:水文科学在全球与地方互动中助力可持续发展(HELPING)

作者: Berit Arheimer et al.

文章摘要:

The new scientific decade (2023-2032) of the International Association of Hydrological Sciences (IAHS) aims at searching for sustainable solutions to undesired water conditions – whether it be too little, too much or too polluted. Many of the current issues originate from global change, while solutions to problems must embrace local understanding and context. The decade will explore the current water crises by searching for actionable knowledge within three themes: global and local interactions, sustainable solutions and innovative cross-cutting methods. We capitalise on previous IAHS Scientific Decades shaping a trilogy; from Hydrological Predictions (PUB) to Change and Interdisciplinarity (Panta Rhei) to Solutions (HELPING). The vision is to solve fundamental water-related environmental and societal problems by engaging with other disciplines and local stakeholders. The decade endorses mutual learning and co-creation to progress towards UN sustainable development goals. Hence, HELPING is a vehicle for putting science in action, driven by scientists working on local hydrology in coordination with local, regional, and global processes.

Figure 7. Some societal sectors that should share the water resources in wise decision making based on hydrological decision support to fulfil the UN Sustainable Development Goals.

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