Scientific Paper · source-verified

Reason For Less Water Supply Shortages Under Climate Change Condition: Evaluation Of Future Rainfall Data

Jeong-Hyeok Ma; Chulsang Yoo; Wooyoung Na; Jong-Sub Lee · 2023-10-01

Future rainfall data in Korea may underestimate multi-year droughts, highlighting limitations for evaluating long-term water supply resilience, particularly in the Boryeong Dam basin.

Show citation

Jeong-Hyeok Ma; Chulsang Yoo; Wooyoung Na; Jong-Sub Lee. 2023-10-01. Reason For Less Water Supply Shortages Under Climate Change Condition: Evaluation Of Future Rainfall Data. https://doi.org/10.2166/wcc.2023.469 (AI & Environment Resource Hub; record paper-096; collection snapshot 2026-09-15).

Classification and context

Included in the original Scientific Paper collection. Labels below are metadata based suggestions. They are not verified findings, claims of effectiveness, or endorsements.

pathway

topic

lifecycle

orientation

Definitions, inclusion guidance, and examples →

Available source metadata

Author or creator
Jeong-Hyeok Ma; Chulsang Yoo; Wooyoung Na; Jong-Sub Lee
Publisher
Journal of Water and Climate Change
Publication date
2023-10-01
Date precision
day
Geographic scope
Unknown
Language
unknown
Peer review
unknown
Source status
verified
Last verified
2026-09-15T16:58:06Z
Snapshot import
2026-09-06
Legacy domain
Water & Oceans
Legacy subdomain
Evaluating Future Rainfall Data Using Climate Scenarios
journal
Journal of Water and Climate Change

Provenance and review

Source sheet: Scientific Paper · Row 100 · Original ID: paper-096.

View source spreadsheet ↗

A paper listing is not a quality assessment. Peer review and findings require source-level confirmation. Source link reachable · checked 2026-09-15. Source identity and required metadata verified. The import date is not the original date added.

Suggest a correction for this record →

Related through shared environmental topics

Ordered by the number of shared provisional topic labels. This indicates a browsing connection, not agreement between sources.

Shared topics: Climate and greenhouse gases; Water; Oceans and coasts; Weather, hazards, and adaptation

Scientific Paper · 2023-12-01

A Case Study Of An Extreme Flooding Episode In Charikar, Eastern Afghanistan

Severe flash floods in Charikar, Afghanistan, on August 26, 2020, were driven by extreme atmospheric instability, deep low-level convergence, and local topography, with climate change intensifying frontal activity and baroclinicity in the region.

Journal of Water and Climate Change

Shared topics: Climate and greenhouse gases; Water; Oceans and coasts; Weather, hazards, and adaptation

Shared topics: Climate and greenhouse gases; Water; Oceans and coasts; Weather, hazards, and adaptation

Shared topics: Climate and greenhouse gases; Water; Oceans and coasts; Weather, hazards, and adaptation