TY - JOUR
T1 - A novel approach for disentangling the contributions of different soil and water conservation measures to streamflow reduction on the Loess Plateau, China
AU - Sun, Pengcheng
AU - Li, Miaoyu
AU - Li, Qiang
AU - Wang, Jingshu
AU - Jiao, Peng
AU - Wu, Yiping
AU - Xiao, Peiqing
N1 - Publisher Copyright:
© 2026 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license. http://creativecommons.org/licenses/by-nc-nd/4.0/
PY - 2026/10
Y1 - 2026/10
N2 - Study region: The Yanhe River Basin (YHRB) in the middle reaches of the Yellow River typifies the loess hill and gully region of the Loess Plateau, characterized by severe soil erosion and the extensive implementation of soil and water conservation measures (SWCMs). Study focus: Climate change and anthropogenic activities, particularly SWCMs, are major drivers of hydrological variability in the Loess Plateau. However, the individual effects of different measures on streamflow remain poorly disentangled. To address this issue, we developed a new attribution framework that integrates dynamic SWCM data on vegetation restoration, terraces, and check dams into the traditional Budyko framework. Using long-term hydrometeorological and SWCMs implementation data from 1976 to 2015 in the YHRB, we quantitatively assessed the contributions of specific SWCMs to streamflow reduction. New hydrological insights for the region: SWCMs (i.e., the non-climate component in our Budyko attribution) dominated streamflow reduction in the YHRB, accounting 12.5% (1976–1985) and 34.6% (2006–2015) of natural streamflow, with a strengthening influence over time. Contribution patterns also shifted: check dams dominated in earlier decades, vegetation restoration prevailed in later years, and terraces showed steadily increasing effect. These results reveal changing roles of different measures under policy and ecological restoration. The proposed method also offers practical guidance for optimizing conservation strategies, such as adaptive vegetation management and upgrading aging check dams, to balance soil conservation with sustainable water resources.
AB - Study region: The Yanhe River Basin (YHRB) in the middle reaches of the Yellow River typifies the loess hill and gully region of the Loess Plateau, characterized by severe soil erosion and the extensive implementation of soil and water conservation measures (SWCMs). Study focus: Climate change and anthropogenic activities, particularly SWCMs, are major drivers of hydrological variability in the Loess Plateau. However, the individual effects of different measures on streamflow remain poorly disentangled. To address this issue, we developed a new attribution framework that integrates dynamic SWCM data on vegetation restoration, terraces, and check dams into the traditional Budyko framework. Using long-term hydrometeorological and SWCMs implementation data from 1976 to 2015 in the YHRB, we quantitatively assessed the contributions of specific SWCMs to streamflow reduction. New hydrological insights for the region: SWCMs (i.e., the non-climate component in our Budyko attribution) dominated streamflow reduction in the YHRB, accounting 12.5% (1976–1985) and 34.6% (2006–2015) of natural streamflow, with a strengthening influence over time. Contribution patterns also shifted: check dams dominated in earlier decades, vegetation restoration prevailed in later years, and terraces showed steadily increasing effect. These results reveal changing roles of different measures under policy and ecological restoration. The proposed method also offers practical guidance for optimizing conservation strategies, such as adaptive vegetation management and upgrading aging check dams, to balance soil conservation with sustainable water resources.
KW - Check dams
KW - Climate effect
KW - Dynamic Budyko framework
KW - Streamflow reduction
KW - Terraces
KW - Vegetation restoration
UR - https://www.scopus.com/pages/publications/105045742165
U2 - 10.1016/j.ejrh.2026.103780
DO - 10.1016/j.ejrh.2026.103780
M3 - 文章
AN - SCOPUS:105045742165
SN - 2214-5818
VL - 67
JO - Journal of Hydrology: Regional Studies
JF - Journal of Hydrology: Regional Studies
M1 - 103780
ER -