Climate’s influence on topography encoded in stream network topology and geometry

M Minhui Li H Hansjörg Seybold X Xudong Fu (College of Pharmaceutical Sciences, Liangzhu Laboratory) B Baosheng Wu P Peter A. Raymond J James W. Kirchner

Abstract

Abstract Stream networks express how Earth’s hydrologic cycle is embedded within its three-dimensional topography. In a top-down view, a stream network’s morphology is often described by its topological connectivity and branching geometry. Although these two characteristics are naturally connected, they have mostly been studied independently, leaving their co-evolution poorly understood. Here, we analyze the topology and geometry of 16,322 5 th -order real-world stream networks across the contiguous United States, showing how they are shaped by climate and the evolution of Earth’s topography. We find that ~73% of these networks show topological self-similarity in their branching patterns and that small tributaries join larger streams at systematically wider angles. Our analysis further reveals that correlations between climate and network topology observed in other studies are mainly mediated through the climate-dependence of networks’ geometric and topographic properties, such as their junction angles and channel slope ratios of merging tributaries. These findings demonstrate the co-evolution of network geometry, topography, and topology under the influence of landscape evolution driven by climatic forcing.

Article Details

Volume / Issue Vol. 17, Issue 1
Published March 03, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (6)

M

Minhui Li

H

Hansjörg Seybold

X

Xudong Fu

College of Pharmaceutical Sciences, Liangzhu Laboratory

B

Baosheng Wu

P

Peter A. Raymond

J

James W. Kirchner