Atmosphere-Korea

Scope & Guideline

Unveiling the Secrets of Climate and Weather

Introduction

Delve into the academic richness of Atmosphere-Korea with our guidelines, detailing its aims and scope. Our resource identifies emerging and trending topics paving the way for new academic progress. We also provide insights into declining or waning topics, helping you stay informed about changing research landscapes. Evaluate highly cited topics and recent publications within these guidelines to align your work with influential scholarly trends.
LanguageKorean
ISSN1598-3560
PublisherKOREAN METEOROLOGICAL SOC
Support Open AccessNo
Country-
Type-
Converge-
AbbreviationATMOS-KOREA / Atmos.-Korea
Frequency6 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address1510 RENAISSANCE TOWER BLDG, 14, MALLIJAE-RO, MAPO-GU, SEOUL 04195, SOUTH KOREA

Aims and Scopes

The journal "Atmosphere-Korea" focuses on advancing the understanding of atmospheric sciences, meteorology, and climate change, particularly in the context of the Korean Peninsula. It aims to provide a platform for innovative research that integrates theoretical, observational, and modeling approaches to address pressing atmospheric and environmental issues.
  1. Meteorological Research and Forecasting:
    The journal emphasizes studies related to weather forecasting and numerical weather prediction (NWP) models, including advancements in observational data assimilation and model improvements.
  2. Climate Change and Environmental Impact:
    Research addressing the impacts of climate change on various sectors, including agriculture, urban development, and natural disasters, is a core focus area.
  3. Atmospheric Phenomena Analysis:
    The journal publishes work on atmospheric phenomena such as typhoons, monsoons, and heat waves, with a focus on their mechanisms, prediction, and impacts.
  4. Urban Meteorology and Air Quality:
    Studies investigating urban meteorological effects and air quality issues, particularly in metropolitan areas like Seoul, are highlighted, reflecting ongoing environmental challenges.
  5. Innovative Technologies in Meteorology:
    The journal supports research that incorporates advanced technologies, such as unmanned aerial vehicles (UAVs) and machine learning, for atmospheric observations and modeling.
Recent publications in "Atmosphere-Korea" reveal emerging themes that reflect current research priorities and the evolving landscape of atmospheric science, particularly in the context of climate change and technology.
  1. Climate Risk Assessment:
    An increasing number of studies are focusing on the assessment of physical climate risks, particularly regarding their economic impacts on sectors like banking and insurance.
  2. Integration of AI and Machine Learning:
    There is a notable trend towards utilizing artificial intelligence and machine learning techniques for weather forecasting, data analysis, and improving predictive models.
  3. Extreme Weather Events Studies:
    Research on extreme weather events, such as heat waves and heavy precipitation, has gained prominence, highlighting the urgency of understanding and mitigating climate change effects.
  4. Urban Climate Adaptation Strategies:
    Emerging themes include studies on urban meteorology that focus on adapting to climate change, particularly in densely populated areas and smart city applications.
  5. Advanced Remote Sensing Technologies:
    The application of remote sensing and UAV technologies for atmospheric studies is becoming increasingly important, reflecting advancements in observational capabilities.

Declining or Waning

While "Atmosphere-Korea" continues to cover a wide range of atmospheric science topics, certain themes have shown a decline in publication frequency, indicating a potential shift in focus or research interest.
  1. Historical Climate Studies:
    There appears to be a diminishing focus on retrospective studies of historical climate data, as more emphasis is placed on predictive modeling and current climate impacts.
  2. Long-Term Trend Analysis:
    Research centered on long-term climatological trends and historical weather events has decreased, possibly in favor of more immediate and applied research outcomes.
  3. Traditional Meteorological Instruments:
    Studies based solely on traditional meteorological instruments are less frequent, suggesting a shift towards integrating modern technology and methods in atmospheric research.

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