JOURNAL OF GLACIOLOGY冰川学杂志

JOURNAL OF GLACIOLOGY(英文缩写 J GLACIOL),ISSN 0022-1430,eISSN 1727-5652,中文译名:冰川学杂志 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
3.200
JCR 分区
Q2
CAS 分区
B3
近一年发文量
3
本站 PubMed 收录统计

发文量统计区间:2025-09-24 至 2026-09-24,按本站收录文献的发表日期统计。

ISSN: 0022-1430 · eISSN: 1727-5652 · 缩写: J GLACIOL ·中文: 冰川学杂志

期刊介绍

选择期刊介绍栏目

期刊简介

《Journal of Glaciology》是国际冰川学会主办的老牌学术期刊,聚焦冰川、冰盖、积雪与冻土等冰冻圈物理过程及其与气候系统的相互作用。内容涵盖野外观测、遥感反演、数值模拟与理论分析,读者群包括冰川学、地球物理学、气候学及极地研究人员。该刊强调对冰冻圈现象机理的深入理解,是相关领域重要的交流平台。

研究方向

主要方向包括冰川与冰盖动力学、物质平衡、冰芯记录、积雪物理、冻土过程、冰架与海冰变化,以及遥感、地球物理探测和数值模拟方法。论文类型以原创研究为主,兼有方法论述、数据集介绍和综述性文章,鼓励跨学科与多尺度研究。

期刊特色

研究取向偏重物理机制与定量分析,强调观测、实验与模型结合,论文通常数据扎实、方法透明。适合从事冰冻圈科学、极地环境、气候建模及遥感应用的研究人员、研究生和业务技术人员阅读与投稿。

投稿难度

投稿难度中等偏上,对数据质量、方法严谨性和结论创新性要求较高。建议在投稿前明确科学问题,完善误差分析与不确定性讨论,并确保与已有文献充分对话;写作应突出对冰冻圈过程的实质贡献,而非仅报告区域性观测结果。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20214.278Q2
20223.400Q2
20232.800Q2
20242.600Q2
20253.200Q2

JOURNAL OF GLACIOLOGY 最新收录文献

  1. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    1. ICESat-2 land ice products resolve Greenland and Antarctic ice-sheet height changes on seasonal to multiyear time scales.

    作者:
    Benjamin E Smith, Tyler Clark Sutterley, Helen A Fricker, Laurie Padman, Matthew R Siegfried, Taryn Black, Denis Felikson, Bryony Freer, Aimée Gibbons, Susan L Howard, Benjamin Jelley, Michalea King, Brooke Medley, Mathieu Morlighem, Christine Sadlik, Wilson Sauthoff, Thomas A Neumann
    日期:
    2026-01-01

    NASA's ICESat-2 mission was launched in 2018, carrying a photon-counting laser altimeter, with a primary objective of measuring height changes across Earth's surface. ICESat-2 has provided measurement…

  2. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    2. Optimization of automated sea-ice melt-pond-depth determination in ICESat-2 altimeter data with the Density-Dimension Algorithm for bifurcating sea-ice reflectors using airborne campaign data.

    2. 使用密度维算法优化ICESat-2高度计数据中海冰融化池深度的自动确定,该算法使用机载活动数据对海冰反射器进行分叉
    作者:
    Thomas Trantow, Ute Herzfeld, Mia Vanderwilt, Kutalmis Saylam, Nathan Kurtz, Huilin Han, Rachel Tilling
    日期:
    2026-01-01

    Melt ponding on Arctic sea ice is a key indicator of the transition from a predominantly perennial to a seasonal sea-ice cover, yet quantitative data on pond depth remain limited. Here, we present the…

  3. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    3. Estimating effective pressures in active subglacial lakes with ICESat-2 satellite altimetry.

    作者:
    Aaron Stubblefield, Aleah Nicholson Sommers, Colin Meyer, Lauren Cristy Andrews
    日期:
    2026-01-01

    The difference between the ice and water pressures, or the effective pressure, influences water flow and sliding at the ice-bed interface. Effective pressure is typically quantified with subglacial hy…

  4. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    4. Initial assessment of all-season Arctic sea ice thickness from ICESat-2.

    作者:
    Alek Petty, Alex Cabaj, Jack C Landy
    日期:
    2025-01-01

    We present an initial assessment of all-season Arctic sea ice thickness estimates from ICESat-2 by combining freeboard retrievals with all-season SnowModel-LG snow loading. ICESat-2 captures the key r…

  5. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    5. Crevasse density, orientation and temporal variability at Narsap Sermia, Greenland.

    作者:
    Maximillian Van Wyk de Vries, James M Lea, David W Ashmore
    日期:
    2023-10-01

    Mass loss from iceberg calving at marine-terminating glaciers is one of the largest and most poorly constrained contributors to sea-level rise. However, our understanding of the processes controlling …

  6. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    6. Semi-automated open water iceberg detection from Landsat applied to Disko Bay, West Greenland.

    作者:
    Jessica Scheick, Ellyn M Enderlin, Gordon Hamilton
    日期:
    2019-06-01

    Changes in Greenland's marine-terminating outlet glaciers have led to changes in the flux of icebergs into Greenland's coastal waters, yet icebergs remain a relatively understudied component of the ic…

  7. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    7. Summer surface melt thins Petermann Gletscher Ice Shelf by enhancing channelized basal melt.

    作者:
    Peter Washam, Keith W Nicholls, Andreas Mühow, Laurie Padman
    日期:
    2019-01-01

    Increasing ocean and air temperatures have contributed to the removal of floating ice shelves from several Greenland outlet glaciers; however, the specific contribution of these external forcings rema…

  8. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    8. A Complete Map of Greenland Ice Velocity Derived from Satellite Data Collected over 20 Years.

    作者:
    Ian Joughin, Ben E Smith, Ian M Howat
    日期:
    2018-02-01

    While numerous maps of Greenland ice flow velocity exist, most have gaps in coverage and/or accuracy is limited. We processed a large volume of synthetic aperture radar (SAR) and Landsat 8 imagery col…

  9. JCR分区: Q2 CAS分区: B3 影响因子: 3.2

    9. {"_":"A SAR Record of Early 21 Century Change in Greenland.","sup":["st"]}

    作者:
    Ian Joughin, Ben E Smith, Ian M Howat, Twila Moon, Ted A Scambos
    日期:
    2016-02-01

    Glaciers in Greenland are changing rapidly. To better understand these changes, we have produced a series of seven synthetic-aperture-radar (SAR) backscatter mosaics for seven winters during the perio…

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指标接近的期刊