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HYDROLOGY AND EARTH SYSTEM SCIENCES

HYDROLOGY AND EARTH SYSTEM SCIENCES

水文學(xué)和地球系統(tǒng)科學(xué)

期刊周期:Bimonthly
研究方向:地學(xué)
影響因子:4.936
通訊地址:COPERNICUS GESELLSCHAFT MBH, BAHNHOFSALLEE 1E, GOTTINGEN, GERMANY, 37081
官網(wǎng):http://www.hydrology-and-earth-system-sciences.net/home.html
投稿地址:http://www.hydrology-and-earth-system-sciences.net/for_authors/submit_your_manuscript.html
審稿速度:約24.0個(gè)月

  中文簡介

《水文與地球系統(tǒng)科學(xué)》(HESS)是一本國際兩期開放獲取的水文原創(chuàng)性研究期刊。提交論文的討論和同行評(píng)審將在開放訪問的討論論壇HESSD中進(jìn)行。最終論文,在接受,出現(xiàn)在HESS(見互動(dòng)審查過程)。HESS鼓勵(lì)并支持促進(jìn)對(duì)水文系統(tǒng)、水文系統(tǒng)在為生態(tài)系統(tǒng)和社會(huì)提供水方面的作用以及水循環(huán)在地球系統(tǒng)運(yùn)作方面的作用的理解的基礎(chǔ)和應(yīng)用研究。鼓勵(lì)采用多學(xué)科方法,通過與其他相關(guān)科學(xué)的融合和跨學(xué)科邊界的交叉施肥,拓寬水文視角,促進(jìn)水文科學(xué)的發(fā)展。因此,赫斯不僅旨在為水文科學(xué)社區(qū),所有地球和生命科學(xué)家、工程師、水和水經(jīng)理,那些希望發(fā)布原始發(fā)現(xiàn)管理流程之間的交互和反饋水循環(huán)和流程管理的大氣環(huán)流和氣候,bio-geochemical自行車、動(dòng)力學(xué),以及生態(tài)系統(tǒng)和社會(huì)的應(yīng)變能力。HESS的范圍包括:物理、化學(xué)和生物過程在從土壤水的微觀過程到支持水文氣候?qū)W的全球過程的所有尺度的大陸水的所有階段,包括溶解物質(zhì)和顆粒物質(zhì)的循環(huán)中所起的作用;研究地球系統(tǒng)所有分區(qū)(大氣、海洋、河口、河流、湖泊和陸塊)的全球水資源(固體、液體和蒸汽)和有關(guān)預(yù)算的時(shí)空特征,包括水儲(chǔ)量、停留時(shí)間、界面通量和各分區(qū)之間的通道;研究上述所有過程、預(yù)算、流量和途徑與人類活動(dòng)的相互作用,以及以可持續(xù)方式影響這些過程、預(yù)算、流量和途徑的選擇,特別是在洪水、干旱、沙漠化、土地退化、富營養(yǎng)化和全球變化的其他方面。該雜志發(fā)表研究論文、技術(shù)注釋、意見論文、書評(píng)、關(guān)于高級(jí)科學(xué)失敗的文章、前沿案例研究、簡要通信、地球科學(xué)教育和通信研究,以及對(duì)以前在HESS上發(fā)表的論文的評(píng)論(見手稿類型)。論文應(yīng)有助于水文模型、水文監(jiān)測(cè)和數(shù)據(jù)分析、過程概念、實(shí)驗(yàn)設(shè)計(jì)和技術(shù)或理論基礎(chǔ)的發(fā)展。

  英文簡介

Hydrology and Earth System Sciences (HESS) is an international two-stage open-access journal for the publication of original research in hydrology. The discussion and peer review of submitted papers are handled in the open-access discussion forum HESSD. Final papers, upon acceptance, appear in HESS (see interactive review process).HESS encourages and supports fundamental and applied research that advances the understanding of hydrological systems, their role in providing water for ecosystems and society, and the role of the water cycle in the functioning of the Earth system. A multi-disciplinary approach is encouraged that broadens the hydrological perspective and the advancement of hydrological science through integration with other cognate sciences and cross-fertilization across disciplinary boundaries. HESS, therefore, aims to serve not only the hydrological science community but all earth and life scientists, water engineers, and water managers, who wish to publish original findings on the interactions and feedbacks between the governing processes of the water cycle and processes governing atmospheric circulation and climate, bio-geochemical cycling, dynamics, and resilience of ecosystems and socio-economy.The scope of HESS encompasses the following:the role of physical, chemical, and biological processes in the cycling of continental water in all its phases, including dissolved and particulate matter, at all scales, from the micro-scale processes of soil water to the global-scale processes underpinning hydro-climatology;the study of the spatial and temporal characteristics of the global water resources (solid, liquid, and vapour) and related budgets, in all compartments of the Earth system (atmosphere, oceans, estuaries, rivers, lakes, and land masses), including water stocks, residence times, interfacial fluxes, and the pathways between various compartments;the study of interactions with human activity of all the processes, budgets, fluxes, and pathways as outlined above, and the options for influencing them in a sustainable manner, particularly in relation to floods, droughts, desertification, land degradation, eutrophication, and other aspects of global change.The journal publishes research articles, technical notes, opinion papers, book reviews, articles on high-level scientific failures, cutting-edge case studies, brief communications, studies on earth science education and communication, and comments on papers published previously in HESS (see manuscript types). Papers should contribute to the advancement of hydrological modelling, hydrological monitoring and data analysis, process concepts, experimental design and technology, or theoretical foundations.

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