TY - JOUR
T1 - The Fragility of Bedform-Induced Hyporheic Zones
T2 - Exploring Impacts of Dynamic Groundwater Table Fluctuations
AU - Wu, L.
AU - Gomez-Velez, J. D.
AU - Li, L.
AU - Carroll, K. C.
N1 - Publisher Copyright:
© 2024. The Author(s).
PY - 2024/7
Y1 - 2024/7
N2 - Hyporheic zones are commonly regarded as resilient and enduring interfaces between groundwater and surface water in river corridors. In particular, bedform-induced advective pumping hyporheic exchange (bedform-induced exchange) is often perceived as a relatively persistent mechanism in natural river systems driving water, solutes, and energy exchanges between the channel and its surrounding streambed sediments. Numerous studies have been based on this presumption. To evaluate the persistence of hyporheic zones under varying hydrologic conditions, we use a multi-physics framework to model advective pumping bedform-induced hyporheic exchange in response to a series of seasonal- and event-scale groundwater table fluctuation scenarios, which lead to episodic river-aquifer disconnections and reconnections. Our results suggest that hyporheic exchange is not as ubiquitous as generally assumed. Instead, the bedform-induced hyporheic exchange is restricted to a narrow range of conditions characterized by minor river-groundwater head differences, is intermittent, and can be easily obliterated by minor losing groundwater conditions. These findings shed light on the fragility of bedform-induced hyporheic exchange and have important implications for biogeochemical transformations along river corridors.
AB - Hyporheic zones are commonly regarded as resilient and enduring interfaces between groundwater and surface water in river corridors. In particular, bedform-induced advective pumping hyporheic exchange (bedform-induced exchange) is often perceived as a relatively persistent mechanism in natural river systems driving water, solutes, and energy exchanges between the channel and its surrounding streambed sediments. Numerous studies have been based on this presumption. To evaluate the persistence of hyporheic zones under varying hydrologic conditions, we use a multi-physics framework to model advective pumping bedform-induced hyporheic exchange in response to a series of seasonal- and event-scale groundwater table fluctuation scenarios, which lead to episodic river-aquifer disconnections and reconnections. Our results suggest that hyporheic exchange is not as ubiquitous as generally assumed. Instead, the bedform-induced hyporheic exchange is restricted to a narrow range of conditions characterized by minor river-groundwater head differences, is intermittent, and can be easily obliterated by minor losing groundwater conditions. These findings shed light on the fragility of bedform-induced hyporheic exchange and have important implications for biogeochemical transformations along river corridors.
KW - disconnection
KW - dynamic
KW - hyporheic zone
KW - intermittent river
KW - river corridor connectivity
KW - surface water-groundwater interaction
UR - http://www.scopus.com/inward/record.url?scp=85198531788&partnerID=8YFLogxK
U2 - 10.1029/2023WR036706
DO - 10.1029/2023WR036706
M3 - Article
AN - SCOPUS:85198531788
SN - 0043-1397
VL - 60
JO - Water Resources Research
JF - Water Resources Research
IS - 7
M1 - e2023WR036706
ER -