D. T. Adamson, S. Chapman, N. Mahler, C. Newell, B. Parker et al., Membrane interface probe protocol for contaminants in low-permeability zones, vol.52, pp.550-565, 2014.

M. D. Annable, K. Hatfield, J. Cho, H. Klammler, B. L. Parker et al., Field-scale evaluation of the passive flux meter for simultaneous measurement of groundwater and contaminant fluxes. Environmental science & technology, vol.39, pp.7194-7201, 2005.

M. M. Aral, J. Guan, and M. L. Et-maslia, Identification of contaminant source location and release history in aquifers, Journal of hydrologic engineering, vol.6, issue.3, pp.225-234, 2001.

M. T. Ayvaz, A hybrid simulation-optimization approach for solving the areal groundwater pollution source identification problems, Journal of Hydrology, vol.538, pp.161-176, 2016.

A. Bagtzoglou and J. Atmadja, Mathematical methods for hydrologic inversion: The case of pollution source identification. Water pollution, pp.65-96, 2005.

A. C. Bagtzoglou, D. E. Dougherty, and A. F. Et-tompson, Application of particle methods to reliable identification of groundwater pollution sources, Water Resources Management, vol.6, issue.1, pp.15-23, 1992.

S. Ballard and . The, Situ Permeable Flow Sensor: A Ground-Water Flow Velocity Meter, vol.34, pp.231-240, 1996.

S. N. Bashi-azghadi, R. Kerachian, M. R. Bazargan-lari, and M. R. Et-nikoo, Pollution source identification in groundwater systems: Application of regret theory and Bayesian networks, Iranian Journal of Science and TechnologyTransactions of Civil Engineering, vol.40, issue.3, pp.241-249, 2016.

N. B. Basu, P. S. Rao, I. C. Poyer, M. D. Annable, and K. Hatfield, Fluxbased assessment at a manufacturing site contaminated with trichloroethylene, Journal of Contaminant Hydrology, vol.86, issue.1-2, pp.105-127, 2006.

, RÉFÉRENCES

N. B. Basu, P. S. Rao, R. W. Falta, M. D. Annable, J. W. Jawitz et al., Temporal evolution of DNAPL source and contaminant flux distribution: Impacts of source mass depletion, Journal of Contaminant Hydrology, vol.95, issue.3, pp.93-109, 2008.

N. B. Basu, P. Suresh, C. Rao, I. C. Poyer, S. Nandy et al., Integration of traditional and innovative characterization techniques for flux-based assessment of Dense Non-aqueous Phase Liquid (DNAPL) sites, Journal of Contaminant Hydrology, vol.105, issue.3, pp.161-172, 2009.

C. Béland-pelletier, M. Fraser, J. Barker, and T. Et-ptak, Estimating contaminant mass discharge: A field comparison of the multilevel point measurement and the integral pumping investigation approaches and their uncertainties, Journal of Contaminant Hydrology, vol.122, issue.1-4, pp.63-75, 2011.

A. Bockelmann, T. Ptak, and G. Et-teutsch, An analytical quantification of mass fluxes and natural attenuation rate constants at a former gasworks site, Journal of Contaminant Hydrology, vol.53, issue.3, pp.177-179, 2001.

R. C. Borden, R. A. Daniel, L. E. Lebrun, and C. W. Davis, Intrinsic biodegradation of MTBE and BTEX in a gasoline-contaminated aquifer, Water Resources Research, vol.33, issue.5, pp.1105-1115, 1997.

M. C. Brooks, A. L. Wood, M. D. Annable, K. Hatfield, J. Cho et al., Changes in contaminant mass discharge from DNAPL source mass depletion: Evaluation at two field sites, Journal of Contaminant Hydrology, vol.102, issue.1-2, pp.140-153, 2008.

M. C. Brooks, A. L. Wood, M. D. Annable, K. Hatfield, J. Cho et al., Changes in contaminant mass discharge from DNAPL source mass depletion: Evaluation at two field sites, Journal of Contaminant Hydrology, vol.102, issue.1-2, pp.140-153, 2008.

M. C. Brooks, A. L. Wood, J. Cho, C. A. Williams, W. Brandon et al., Source strength functions from long-term monitoring data and spatially distributed mass discharge measurements, Journal of Contaminant Hydrology, 2018.

S. Brouyère, J. Batlle-aguilar, P. Goderniaux, and A. Et-dassargues, A new tracer technique for monitoring groundwater fluxes: The Finite Volume Point Dilution Method, Journal of Contaminant Hydrology, vol.95, issue.3-4, pp.121-140, 2008.

I. Butera, M. G. Tanda, and A. Et-zanini, Simultaneous identification of the pollutant release history and the source location in groundwater by means of a geostatistical approach, Stochastic Environmental Research and Risk Assessment, vol.27, issue.5, pp.1269-1280, 2013.

Z. Cai, R. D. Wilson, M. A. Cardiff, and K. Et, P. K. Increasing Confidence in Mass Discharge Estimates Using Geostatistical Methods. Ground Water, vol.49, issue.2, pp.197-208, 2011.

T. J. Campbell, K. Hatfield, H. Klammler, M. D. Annable, and P. S. Rao, Magnitude and directional measures of water and Cr (VI) fluxes by passive flux meter. Environmental science & technology, vol.40, pp.6392-6397, 2006.

G. Cao, R. Qin, Y. Wu, J. Wu, Z. Xu et al., Effects of source size, monitoring distance and aquifer heterogeneity on contaminant mass discharge and plume spread uncertainty, Environmental Fluid Mechanics, vol.18, issue.2, pp.465-486, 2018.

X. Chen, M. C. Brooks, and A. L. Wood, The uncertainty of mass discharge measurements using pumping methods under simplified conditions, Journal of contaminant hydrology, vol.156, pp.16-26, 2014.

,

J. Cho, M. D. Annable, J. W. Jawitz, and K. Hatfield, Passive flux meter measurement of water and nutrient flux in saturated porous media: benchscale laboratory tests, Journal of environmental quality, vol.36, issue.5, pp.1266-1272, 2007.

F. Cupola, M. G. Tanda, and A. Et-zanini, Laboratory sandbox validation of pollutant source location methods. Stochastic environmental research and risk assessment, vol.29, pp.169-182, 2015.

B. Datta, D. Chakrabarty, and A. Et-dhar, Simultaneous identification of unknown groundwater pollution sources and estimation of aquifer parameters, Journal of Hydrology, vol.376, issue.1, pp.48-57, 2009.

A. M. Dausman, J. Doherty, C. D. Langevin, and M. C. Sukop, Quantifying data worth toward reducing predictive uncertainty, Ground Water, vol.48, issue.5, pp.729-740, 2010.

J. F. Devlin, G. Tsoflias, M. Mcglashan, and P. Et-schillig, An inexpensive multilevel array of sensors for direct ground water velocity measurement, Groundwater Monitoring & Remediation, vol.29, issue.2, pp.73-77, 2009.

W. N. Doherty, Methodologies and software for PEST-based model predictive uncertainty analysis, Watermark Numerical Computing, 2010.

W. Drost, D. Klotz, A. Koch, H. Moser, F. Neumaier et al., Point dilution methods of investigating ground water flow by means of radioisotopes, Water Resources Research, vol.4, issue.1, pp.125-146, 1968.

M. D. Einarson and D. M. Mackay, Peer Reviewed: Predicting Impacts of Groundwater Contamination, Environmental Science & Technology, vol.35, issue.3, pp.66-73, 2001.

E. Essouayed, M. Annable, M. Momtbrun, and O. Et-atteia, An innovative tool for groundwater velocity measurement compared with other tools in laboratory and field tests, Journal of Hydrology X, p.100008, 2018.

R. W. Falta, P. S. Rao, and N. Basu, Assessing the impacts of partial mass depletion in DNAPL source zones: I. Analytical modeling of source strength functions and plume response, Journal of Contaminant Hydrology, vol.78, issue.4, pp.259-280, 2005.

M. Fraser, J. Barker, B. Butler, F. Blaine, S. Joseph et al., Natural attenuation of a plume from an emplaced coal tar creosote source over 14 years, Journal of Contaminant Hydrology, vol.100, issue.3-4, pp.101-115, 2008.

R. A. Freeze, J. A. Cherry, and . Groundwater, , 1979.

R. A. Freeze, B. James, J. Massmann, T. Sperling, and L. Smith, Hydrogeological decision analysis: 4. The concept of data worth and its use in the development of site investigation strategies, Ground Water, vol.30, issue.4, pp.574-588, 1992.

J. S. Gates and C. C. Kisiel, Worth of additional data to a digital computer model of a groundwater basin, Water Resources Research, vol.10, issue.5, pp.1031-1038, 1974.

L. W. Gelhar, Stochastic subsurface hydrology, vol.390, 1993.

L. W. Gelhar, C. Welty, and K. R. Et-rehfeldt, A critical review of data on field-scale dispersion in aquifers, Water Resources Research, vol.28, issue.7, pp.1955-1974, 1992.

M. N. Goltz, M. E. Close, H. Yoon, J. Huang, M. J. Flintoft et al., Validation of two innovative methods to measure contaminant mass flux in groundwater, Journal of contaminant hydrology, vol.106, issue.1, pp.51-61, 2009.

S. M. Gorelick, B. Evans, and I. Et-remson, Identifying sources of groundwater pollution: an optimization approach, Water Resour. Res, vol.19, issue.3, pp.779-790, 1983.

M. A. Guilbeault, B. L. Parker, and J. A. Cherry, Mass and Flux Distributions from DNAPL, Ground Water, vol.43, issue.1, pp.70-86, 2005.

A. Gutierrez, T. Klinka, D. Thiéry, E. Buscarlet, S. Binet et al., TRAC, a collaborative computer tool for tracer-test interpretation, EPJ Web of Conferences, vol.50, p.3002, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00830238

G. Gzyl, A. Zanini, R. Fraczek, and K. Et-kura, Contaminant source and release history identification in groundwater: a multi-step approach, Journal of contaminant hydrology, vol.157, pp.59-72, 2014.

K. Hatfield, Demonstration and validation of a fractured rock passive flux meter, pp.1-179, 2015.

K. Hatfield, M. Annable, J. Cho, P. S. Rao, and H. Et-klammler, A direct passive method for measuring water and contaminant fluxes in porous media, Journal of Contaminant Hydrology, vol.75, issue.3, pp.155-181, 2004.

M. C. Hill, C. C. Faunt, W. R. Belcher, D. S. Sweetkind, C. R. Tiedeman et al., Knowledge, transparency, and refutability in groundwater models, an example from the Death Valley regional groundwater flow system, Physics and Chemistry of the Earth, pp.105-116, 2013.

D. Huntley and G. D. Beckett, Persistence of LNAPL sources: relationship between risk reduction and LNAPL recovery, Journal of Contaminant Hydrology, vol.59, issue.1, pp.73-79, 2002.

I. T. Itrc, Use and measurement of mass flux and mass discharge, 2010.

B. R. James and R. A. Et-freeze, The worth of data in predicting aquitard continuity in hydrogeological design, Water Resources Research, vol.29, issue.7, pp.2049-2065, 1993.

B. R. James and S. Gorelick, Aquifer Remediation Design, vol.30, pp.3499-3513, 1994.

P. Jamin, P. Goderniaux, O. Bour, T. Le-borgne, A. Englert et al., Contribution of the finite volume point dilution method for measurement of groundwater fluxes in a fractured aquifer, Journal of Contaminant Hydrology, vol.182, pp.244-255, 2015.
URL : https://hal.archives-ouvertes.fr/insu-01200777

J. Jarsjo, M. Bayer-raich, and T. Et-ptak, Monitoring groundwater contamination and delineating source zones at industrial sites: Uncertainty analyses using integral pumping tests, Journal of Contaminant Hydrology, vol.79, issue.3-4, pp.107-134, 2005.

C. M. Kao and Y. S. Wang, Field investigation of the natural attenuation and intrinsic biodegradation rates at an underground storage tank site, Environmental Geology, vol.40, issue.4-5, pp.622-631, 2001.

C. Kao and C. Wang, Control of BTEX migration by intrinsic bioremediation at a gasoline spill site, Water Research, vol.34, issue.13, pp.3413-3423, 2000.

P. M. Kearl, Observations of particle movement in a monitoring well using the colloidal borescope, Journal of Hydrology, vol.200, issue.1, pp.323-344, 1997.

P. M. Kearl, N. E. Korte, and T. A. Cronk, Suggested modifications to ground water sampling procedures based on observations from the colloidal borescope, Groundwater Monitoring & Remediation, vol.12, issue.2, pp.155-161, 1992.

P. M. Kearl, K. Roemer, E. B. Rogoff, and R. M. Et-renn, Characterization of a fractured aquifer using the colloidal borescope, Advances in Environmental Research, vol.3, issue.1, pp.49-57, 1999.

W. B. Kerfoot and V. A. Et-massard, Monitoring well screen influences on direct flowmeter measurements, Groundwater Monitoring & Remediation, vol.5, issue.4, pp.74-77, 1985.

M. W. King, J. F. Barker, J. F. Devlin, and B. J. Butler, Migration and natural fate of a coal tar creosote plume: 2. Mass balance and biodegradation indicators, Journal of Contaminant Hydrology, vol.39, issue.3-4, pp.281-307, 1999.

H. Klammler, K. Hatfield, and M. D. Et-annable, Concepts for measuring horizontal groundwater flow directions using the passive flux meter, Advances in water resources, vol.30, issue.4, pp.984-997, 2007.

H. Klammler, K. Hatfield, J. A. Guimarães-da-luz, M. D. Annable, M. Newman et al., Contaminant discharge and uncertainty estimates from passive flux meter measurements, Water Resources Research, vol.48, issue.2, p.2012

N. Korte, P. M. Kearl, R. L. Siegrist, M. T. Muck, R. M. Schlosser et al., An evaluation of horizontal recirculation using single-well tests, pumping tests, tracer tests, and the colloidal borescope, Ground Water Monitoring and Remediation, vol.20, issue.1, pp.78-85, 2000.

M. Kübert and M. Finkel, Contaminant mass discharge estimation in groundwater based on multi-level point measurements: A numerical evaluation of expected errors, Journal of Contaminant Hydrology, vol.84, issue.1-2, pp.55-80, 2006.

W. Labaky, J. F. Devlin, and R. W. Et-gillham, Probe for measuring groundwater velocity at the centimeter scale. Environmental science & technology, vol.41, pp.8453-8458, 2007.

W. Labaky, J. F. Devlin, and R. W. Et-gillham, Field comparison of the point velocity probe with other groundwater velocity measurement methods, Water Resources Research, vol.45, issue.4, 2009.

S. Lamontagne, J. Dighton, and W. Et-ullman, Estimation of groundwater velocity in riparian zones using point dilution tests, 2002.

B. Lemière, J. J. Seguin, C. Le-guern, D. Guyonnet, P. Baranger et al., Guide sur le comportement des polluants dans les sols et les nappes. Orléans: Editions du BRGM, 2001.

K. B. Li and L. M. Et-abriola, A multistage multicriteria spatial sampling strategy for estimating contaminant mass discharge and its uncertainty, Water Resources Research, vol.45, issue.6, 2009.

, RÉFÉRENCES

K. B. Li, P. Goovaerts, and L. M. Et-abriola, A geostatistical approach for quantification of contaminant mass discharge uncertainty using multilevel sampler measurements, Water Resources Research, vol.43, issue.6

T. Maddock, Management model as a tool for studying the worth of data, Water Resources Research, vol.9, issue.2, pp.270-280, 1973.

P. S. Mahar and B. Datta, Identification of pollution sources in transient groundwater systems, Water Resources Management, vol.14, issue.3, pp.209-227, 2000.

P. S. Mahar and B. Datta, Optimal monitoring network and ground-waterpollution source identification, Journal of water resources planning and management, vol.123, issue.4, pp.199-207, 1997.

P. S. Mahar and B. Datta, Optimal identification of ground-water pollution sources and parameter estimation, Journal of Water Resources Planning and Management, vol.127, issue.1, pp.20-29, 2001.

G. Marsily, De l'identification des systèmes hydrologiques, 1978.

B. Mcandrews, K. Heinze, and W. Et-diguiseppi, Defining TCE Plume Source Areas Using the Membrane Interface Probe (MIP), An International Journal, vol.12, issue.6, pp.799-813, 2003.

W. Mccall, T. M. Christy, D. Pipp, M. Terkelsen, A. Christensen et al., Field Application of the Combined Membrane-Interface Probe and Hydraulic Profiling Tool (MiHpt), vol.34, pp.85-95, 2014.

W. Mccall, T. M. Christy, and M. K. Et-evald, Applying the HPT-GWS for Hydrostratigraphy, Water Quality and Aquifer Recharge Investigations. Groundwater Monitoring & Remediation, vol.37, pp.78-91, 2017.

J. R. Meyer, B. L. Parker, and J. A. Cherry, Characteristics of high resolution hydraulic head profiles and vertical gradients in fractured sedimentary rocks, Journal of Hydrology, vol.517, pp.493-507, 2014.

J. R. Meyer, B. L. Parker, E. Arnaud, and A. C. Et-runkel, Combining High Resolution Vertical Gradients and Sequence Stratigraphy to Delineate Hydrogeologic Units for a Contaminated Sedimentary Rock Aquifer System, Journal of Hydrology, 2016.

A. M. Michalak and P. K. Et-kitanidis, Estimation of historical groundwater contaminant distribution using the adjoint state method applied to geostatistical inverse modeling, Water Resources Research, vol.40, issue.8, pp.1-14, 2004.

A. M. Michalak and P. K. Et-kitanidis, Estimation of historical groundwater contaminant distribution using the adjoint state method applied to geostatistical inverse modeling, Water Resources Research, vol.40, issue.8, pp.1-14, 2004.

H. Middlemis, N. P. Merrick, J. B. Ross, and K. L. Et-rozlapa, Groundwater modelling guidelines for Australia: an overview, Proceedings, MODSIM 2001 International Congress on Modelling and Simulation, 2001.

K. Momii, K. Jinno, and F. Et-hirano, Laboratory studies on a new laser Doppler velocimeter system for horizontal groundwater velocity measurements in a borehole, Water Resources Research, vol.29, issue.2, pp.283-291, 1993.

C. Moore, T. Wöhling, and J. Et-doherty, Efficient regularization and uncertainty analysis using a global optimization methodology, Water Resources Research, vol.46, issue.8, 2010.

R. M. Neupauer and J. L. Wilson, Backward probability model using multiple observations of contamination to identify groundwater contamination sources at the Massachusetts Military Reservation, Water Resources Research, vol.41, issue.2, 2005.

R. M. Neupauer and J. L. Wilson, Adjoint method for obtaining backward-in-time location and travel time probabilities of a conservative groundwater contaminant, Water Resources Research, vol.35, issue.11, pp.3389-3398, 1999.

C. J. Newell, J. A. Conner, and D. L. Et-rowen, Groundwater remediation strategies tool. Prepared for American Petroleum Institute, Regulatory Analysis and Scientific Affairs Department, Publication, 2003.

C. J. Newell, S. K. Farhat, D. T. Adamson, and B. B. Looney, Contaminant Plume Classification System Based on Mass Discharge, Ground Water, vol.49, issue.6, pp.914-919, 2011.

T. C. Osorno, J. Devlin, and R. Et-firdous, An In-Well Point Velocity Probe for the rapid determination of groundwater velocity at the centimeter-scale, Journal of Hydrology, vol.557, pp.539-546, 2018.

C. D. Palmer, Borehole dilution tests in the vicinity of an extraction well, Journal of Hydrology, vol.146, issue.93, p.90279, 1993.

S. Panday, C. D. Langevin, R. G. Niswonger, M. Ibaraki, and J. D. Hughes, MODFLOW-USG version 1: An unstructured grid version of MODFLOW for simulating groundwater flow and tightly coupled processes using a control volume finite-difference formulation, 2013.

L. Piccinini, P. Fabbri, and M. Et-pola, Point dilution tests to calculate groundwater velocity: an example in a porous aquifer in northeast Italy, Hydrological Sciences Journal, issue.8, pp.1512-1523, 2016.

M. Pitrak, S. Mares, and M. Et-kobr, A simple borehole dilution technique in measuring horizontal ground water flow, Ground Water, vol.45, issue.1, pp.89-92, 2007.

T. Ptak, R. Schwarz, T. Holder, and G. Et-teutsch, Ein neues integrales Verfahren zur Quantifizierung der Grundwasserimmission, Teil II: Numerische Lösung und Anwendung in Eppelheim. Grundwasser, vol.5, issue.4, pp.176-183, 2000.

N. Risk, Impacts of DNAPL Source Treatment : Experimental and Modeling Assessment of the Benefits of Partial DNAPL Source Removal, 2009.

V. Rønde, U. Mcknight, A. Sonne, N. Balbarini, J. Devlin et al., Contaminant mass discharge to streams: Comparing direct groundwater velocity measurements and multi-level groundwater sampling with an in-stream approach, Journal of Contaminant Hydrology, vol.206, pp.43-54, 2017.

R. L. Schwede and O. A. Et-cirpka, Stochastic evaluation of mass discharge from pointlike concentration measurements, Journal of Contaminant Hydrology, vol.111, issue.1-4, pp.36-47, 2010.

L. Semprini, P. K. Kitanidis, D. H. Kampbell, and J. T. Et-wilson, Anaerobic Transformation of Chlorinated Aliphatic Hydrocarbons in a Sand Aquifer Based on Spatial Chemical Distributions, Water Resources Research, vol.31, issue.4, pp.1051-1062, 1995.

R. Serdp, Mass Flux and Mass Discharge : Uses and Measurement MEASURE-MENT AND USE OF MASS, 2010.

R. M. Singh, B. Datta, and . Et-jain, A. Identification of unknown groundwater pollution sources using artificial neural networks, Journal of water resources planning and management, vol.130, issue.6, pp.506-514, 2004.
URL : https://hal.archives-ouvertes.fr/jpa-00248404

M. F. Snodgrass and P. K. Et-kitanidis, A geostatistical approach to contaminant source identification, Water Resources Research, vol.33, issue.4, pp.537-546, 1997.

O. D. Strack and H. M. Haitjema, Modeling double aquifer flow using a comprehensive potential and distributed singularities: 1. Solution for homogeneous permeability, Water Resources Research, vol.17, issue.5, pp.1551-1560, 1981.

H. F. Stroo, M. Unger, C. H. Ward, M. C. Kavanaugh, C. Vogel et al., Peer reviewed: Remediating chlorinated solvent source zones, 2003.

A. Y. Sun, S. L. Painter, and G. W. Et-wittmeyer, A robust approach for iterative contaminant source location and release history recovery, Journal of contaminant hydrology, vol.88, issue.3, pp.181-196, 2006.

M. Troldborg, W. Nowak, N. Tuxen, P. L. Bjerg, R. Helmig et al., Uncertainty evaluation of mass discharge estimates from a contaminated site using a fully Bayesian framework, Water Resources Research, vol.46, issue.12

T. Tucciarelli and G. Pinder, Optimal data acquisition strategy for the development of a transport model for groundwater remediation, Water Resources Research, vol.27, issue.4, p.431397, 1991.

E. Verardo, Procédés de traitement biologiques in situ: la modélisation numérique comme outil d'aide à la décision, 2016.

T. N. Vilhelmsen and T. Ferré, Extending Data Worth Analyses to Select Multiple Observations Targeting Multiple Forecasts. Groundwater, 2017.

B. J. Wagner, Simultaneous parameter estimation and contaminant source characterization for coupled groundwater flow and contaminant transport modelling, Journal of Hydrology, vol.135, issue.1-4, pp.275-303, 1992.

I. Wallis, C. Moore, V. Post, L. Wolf, E. Martens et al., Using predictive uncertainty analysis to optimise tracer test design and data acquisition, Journal of hydrology, vol.515, pp.191-204, 2014.

D. E. Welter, J. T. White, R. J. Hunt, and J. E. Doherty, Approaches in highly parameterized inversion-PEST++ Version 3, a Parameter ESTimation and uncertainty analysis software suite optimized for large environmental models, 2015.

J. T. White, M. N. Fienen, and J. E. Doherty, A python framework for environmental model uncertainty analysis, Environmental Modelling & Software, vol.85, pp.217-228, 2016.

T. Wöhling, A. Geiges, and W. Et-nowak, Optimal Design of Multitype Groundwater Monitoring Networks Using Easily Accessible Tools. Groundwater, vol.54, pp.861-870, 2016.

T. Xu and J. J. Gómez-hernández, Joint identification of contaminant source location, initial release time, and initial solute concentration in an aquifer via ensemble Kalman filtering, Water Resources Research, vol.52, issue.8, pp.6587-6595, 2016.

T. Xu and J. J. Gómez-hernández, Simultaneous identification of a contaminant source and hydraulic conductivity via the restart normal-score ensemble Kalman filter, Advances in Water Resources, vol.112, pp.106-123, 2018.

H. Yeh, T. Chang, and Y. Et-lin, Groundwater contaminant source identification by a hybrid heuristic approach, Water Resources Research, vol.43, issue.9, 2007.

H. Yeh, C. Lin, and B. Yang, Applying hybrid heuristic approach to identify contaminant source information in transient groundwater flow systems, Mathematical Problems in Engineering, 2014.

D. Verticale, . Concentrations, . Solvants, . Sur-f1, P. F7 et al., , 2018.