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Using Heat to Trace Vertical Water Fluxes in Sediment Experiencing Concurrent Tidal Pumping and Groundwater Discharge
- Source :
- Water Resources Research, 57(2), Water Resources Research 57 (2021) 2
- Publication Year :
- 2021
-
Abstract
- Heat has been widely applied to trace groundwater-surface water exchanges in inland environments, but it is infrequently applied in coastal sediment where head oscillations induce periodicity in water flux magnitude/direction and heat advection. This complicates interpretation of temperatures to estimate water fluxes. We investigate the convolution of thermal and hydraulic signals to assess the viability of using heat as a tracer in environments with tidal head oscillations superimposed on submarine groundwater discharge. We first generate sediment temperature and head time series for conditions ranging from no tide to mega-tidal using a numerical model (SUTRA) forced with periodic temperature and tidal head signals. We then analyze these synthetic temperature time series using heat tracing software (VFLUX2 and 1DTempPro) to evaluate if conventional terrestrial approaches to infer fluxes from temperatures are applicable for coastal settings. We consider high-frequency water flux variability within a tidal signal and averaged over tidal signals. Results show that VFLUX2 analytical methods reasonably estimated the mean discharge fluxes in most cases but could not reproduce the flux variability within tidal cycles. The model results further reveal that high-frequency time series of water fluxes varying in magnitude and direction can be accurately estimated if paired temperatures and hydraulic heads are analyzed using numerical models (e.g., 1DTempPro) that consider both dynamic hydraulic gradients and thermal signals. These results point to the opportunity to incorporate pressure sensors within heat tracing instrumentation to better assess sub-daily flux oscillations and associated reactive processes.
- Subjects :
- WIMEK
benthic exchange
Advection
Instrumentation
Sediment
submarine groundwater discharge
Atmospheric sciences
Hydrology and Quantitative Water Management
Submarine groundwater discharge
Physics::Geophysics
heat as a groundwater tracer
analytical solutions
Flux (metallurgy)
numerical modeling
TRACER
Environmental science
Head (vessel)
groundwater-surface water interactions
Groundwater discharge
Water Science and Technology
Hydrologie en Kwantitatief Waterbeheer
Subjects
Details
- Language :
- English
- ISSN :
- 00431397
- Volume :
- 57
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Water Resources Research
- Accession number :
- edsair.doi.dedup.....bf8f0ae942f4a478e6249130838db01e