JOURNAL OF HYDRAULIC RESEARCH

JOURNAL OF HYDRAULIC RESEARCH期刊基本信息

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官方网站:http://www.tandfonline.com/toc/tjhr20/current

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PMC链接:http://www.ncbi.nlm.nih.gov/nlmcatalog?term=0022-1686%5BISSN%5D

JOURNAL OF HYDRAULIC RESEARCH中文简介

《水利研究杂志》(JHR)是国际水环境工程与研究协会(IAHR)的旗舰期刊。它发表理论、实验和计算水力学和流体力学方面的研究论文,特别涉及河流、湖泊、河口、海岸、人工河道和一些内部流动,如管道流动。为了反映当前水研究的趋势,特别邀请具有强流体力学成分的跨学科水环境研究成果。虽然优先考虑的是基本问题,但也欢迎侧重于具有广泛兴趣的重要非常规或新兴应用的论文。六种类型的论文被考虑:研究论文,技术说明,教育和论坛文章,案例研究,讨论,和最先进的论文,审查特定领域的水力研究和突出重要的研究事项。一些最先进的论文是由编辑直接征求和准备的世界领先的权威机构在特定领域的液压和流体力学。这些“愿景”文件讨论了未来10年要解决的关键挑战、新领域的出现以及与其他学科接口的发展。JHR主题JHR涵盖的主题反映了IAHR的remits,主要与自然和人工水生环境有关。它们包括:层流流动;流不稳定;涡旋动力学与旋转流体;湍流(壁面有界和无边界剪切流);混合和运输过程;二次电流;水动力波;多相分层流动;阻力和水力阻力;在明渠和管道内流动;浅流;流经多孔介质;振荡流;空气-水界面和水-沉积物界面的水动力学形态动力学;泥沙动力学(如侵蚀、输移、再悬浮、湍流-泥沙相互作用、沉积、絮凝、河床动力学);流-生物相互作用的流体动力学;运用生态;水生环境的再自然化;水工建筑物;流结构的相互作用;工业流;可再生能源系统的水力方面;流体力学与水环境研究中的计算方法实验设备、方法和仪器。上述清单应视为指示性的,而不是完全详尽的。还可考虑与水环境研究有关但未提及的主题。

JOURNAL OF HYDRAULIC RESEARCH英文简介

The Journal of Hydraulic Research (JHR) is the flagship journal of the International Association for Hydro-Environment Engineering and Research (IAHR). It publishes research papers in theoretical, experimental and computational hydraulics and fluid mechanics, particularly relating to rivers, lakes, estuaries, coasts, constructed waterways, and some internal flows such as pipe flows. To reflect current tendencies in water research, outcomes of interdisciplinary hydro-environment studies with a strong fluid mechanical component are especially invited. Although the preference is given to the fundamental issues, the papers focusing on important unconventional or emerging applications of broad interest are also welcome.Six types of papers are considered: Research papers, Technical notes, Educational and Forum articles, Case studies, Discussions, and State-of-the-art papers, which review particular areas of hydraulic research and highlight important research matters. Some State-of-the-art papers are directly solicited by the Editor and prepared by world-leading authorities in particular areas of hydraulics and fluid mechanics. These solicited ‘vision’ papers discuss key challenges to address in the next decade, emergence of new areas, and developments at the interfaces with other disciplines.JHR topicsThe topics covered by JHR reflect the IAHR remits and are mainly related to the natural and built aquatic environments. They include:Laminar flows; Flow instabilities; Vortex dynamics and rotating fluids; Turbulent flows (both wall-bounded and boundary-free shear flows); Mixing and transport processes; Secondary currents; Hydrodynamic waves; Multiphase and stratified flows; Drag and hydraulic resistance;Flows in open channels and pipes; Shallow flows; Flows through porous media; Oscillatory flows; Hydrodynamics of air-water interfaces and water-sediment interfaces;Morphodynamics; Sediment dynamics (e.g., erosion, transport, re-suspension, turbulence-sediment interactions, deposition, flocculation, bedform dynamics);Hydrodynamics of flow-biota interactions; Eco-hydraulics; Re-naturalisation of aquatic environments;Hydraulic Structures; Flow-structure interactions; Industrial flows;Hydraulic aspects of renewable energy systems;Computational methods in fluid dynamics and hydro-environment research;Experimental facilities, methods and instrumentation.The list above should be treated as indicative rather than fully exhaustive. Topics not mentioned above but still related to hydro-environment research may also be considered.

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