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Data release for tempest1d: Recursive Estimation of Vertical Groundwater/Surface-Water Exchange using Heat Tracing

Dates

Publication Date
Start Date
2020-06-01
End Date
2021-02-21

Citation

McAliley, W.A., Rey, D.M., and Day-Lewis, F.D., 2022, Data release for tempest1d: Recursive Estimation of Vertical Groundwater/Surface-Water Exchange using Heat Tracing: U.S. Geological Survey data release, https://doi.org/10.5066/P99DBTKT.

Summary

This data release provides a recursive-estimation framework to infer groundwater/surface-water exchange based on temperature time series collected at different vertical depths below the sediment/water interface. A heat-transport problem was formulated as a state-space model (SSM), in which the spatial derivatives in the convection/conduction equation are approximated using finite differences. The SSM is calibrated to estimate time-varying specific discharge using the Extended Kalman Filter (EKF) and Extended Rauch-Tung-Striebel Smoother (ERTSS) algorithms. This data release contains both algorithms, synthetic and field-experimental data, as well as VFLUX model results (Neversink_obs.csv, VFLUX_results.csv) used for validation and comparison. [...]

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Attached Files

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Neversink_obs.csv 924.72 KB text/csv
VFLUX_results.csv 101.18 KB text/csv
readme.txt 4.26 KB text/plain
tempest1d.py 32.96 KB text/x-python
notebooks-html.zip 3.41 MB application/zip
notebooks-ipynb.zip 3.06 MB application/zip

Purpose

Data collected were used to validate algorithms for estimating specific discharge associated with groundwater/surface-water exchange using temperature data collected below the sediment/water interface.

Additional Information

Identifiers

Type Scheme Key
DOI https://www.sciencebase.gov/vocab/category/item/identifier doi:10.5066/P99DBTKT

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