A High Resolution Vertical Gradient Approach for Delineation of Hydrogeologic Units at a Contaminated Sedimentary Rock Field Site

Similar documents
1. The Discrete Fracture Network (DFN) Approach for Contaminated Bedrock Site Characterization

Finding Large Capacity Groundwater Supplies for Irrigation

A Short Course in Contaminated Fractured Rock Hydrogeology and Geophysics

Impacts of DNAPL Contamination in Fractured Rock Aquifers Used for Municipal Water Supply

Aquitard Characterization The Legend of Indiana s Magic Clay Layer. Juliet Port, LPG #2214 July 2014

The Potential for Compromised Interpretations When Based on Open Borehole Geophysical Data in Fractured Rock.

Assessing the Tier 2 Trigger for Fractured Sedimentary Bedrock Sites

Contaminant Mass Distribution of a Mixed Organic Contaminant Plume Down-Gradient of an Aged DNAPL Source Zone in Sedimentary Rock

The use of straddle packer testing to hydraulically characterize rock boreholes for contaminant transport studies

Hydraulic and Water-Quality Characterization of Fractured-Rock Aquifers Using Borehole Geophysics

Regional groundwater mapping and model

Basin Analysis Applied to Modelling Buried Valleys in the Great Lakes Basin

Pressure Grouting of Fractured Bedrock to Control Acid Mine Drainage

David de Courcy-Bower and Samuel Mohr

Groundwater Modeling for Flow Systems with Complex Geological and Hydrogeological Conditions

Buried-valley Aquifers: Delineation and Characterization from Reflection Seismic and Core Data at Caledon East, Ontario

FRACTURED ROCK Characterization and Remediation. Allan Horneman September 30, 2016

Presented by: Peter J. Foster. Coauthors: James M. Emery Kenneth C. Hardcastle. Emery & Garrett Groundwater Investigations, LLC

Evaluation of an Oxygen Injection Technology for In-Situ Hydrocarbon Bioremediation in a Fractured Bedrock Environment

DNAPL migration through interbedded clay-sand sequences

Initial Borehole Drilling and Testing in or Near Ignace

Use of Tracer Dyes to Understand Fractured Bedrock Flow during a Pumping Test

The Geology and Hydrogeology of the Spyhill Area

Appendix D Fractured Rock Appendix

Azimuthal Resistivity to Characterize Fractures in a Glacial Till. Mark Boris, University of Saskatchewan Jim Merriam, University of Saskatchewan

Initial Borehole Drilling in the Hornepayne and Manitouwadge Area

SASKATCHEWAN STRATIGRAPHY GLACIAL EXAMPLE BOULDERS IN GLACIAL DEPOSITS

Control of Fractured Bedrock Structure on the Movement of Chlorinated Volatile Organics in Bedrock and Overburden Aquifers, Newark Basin of New Jersey

ENVIRONMENTAL EFFECTS OF GROUNDWATER WITHDRAWAL IN SOUTH NYÍRSÉG

Determining In Situ Properties of Claystone Aquitards Using Pore Pressure Responses from Grouted-in Pressure Transducers

Harvey Thorleifson, Director, Minnesota Geological Survey. Status of geological mapping needed for groundwater protection in Minnesota

HOW. HOW vehicle mounted units portable units also available. HOW, WHEN & WHY to Geophysically Log in S.I.?

DATA ACQUISITION METHODS FOR GROUNDWATER INVESTIGATION AND THE SITING OF WATER SUPPLY WELLS

A Risk-based Groundwater Modelling Study for Predicting Thermal Plume Migration from SAGD Well-pads

Initial Borehole Drilling and Testing in Central Huron,

February 22, 2011 Picatinny Team Meeting Edison, New Jersey

Case Study: University of Connecticut (UConn) Landfill

Rock Mechanics for Tunneling

ambiguity in earth sciences IESO Geophysics Section Eddy hartantyo, Lab Geofisika FMIPA UGM

How Can We Sustain Groundwater Quality in Karst and Fracturedcarbonate. Maureen A. Muldoon Geology Department Univ. Of Wisconsin-Oshkosh

HYDROGEOLOGICAL PROPERTIES OF THE UG2 PYROXENITE AQUIFERS OF THE BUSHVELD COMPLEX

Geological Mapping using Geophysics

Towards Seamless Interactions Between Geologic Models and Hydrogeologic Applications

DRAFT SITE CONCEPTUAL MODEL FOR THE MIGRATION AND FATE OF CONTAMINANTS IN GROUNDWATER AT THE SANTA SUSANA FIELD LABORATORY, SIMI, CALIFORNIA

CHARACTERIZATION OF A FRACTURED AQUIFER USING THE COLLOIDAL BORESCOPE

Formation Stratigraphy and Interfingering at the Port of Miami

Effects of depositional and diagenetic heterogeneitites on fluid flow in Plio -- Pleistocene reefal carbonates of the Southern Dominican Republic

Determination of Geothermal Gradient in the Eastern Niger Delta Sedimentary Basin from Bottom Hole Temperatures

10. GEOTECHNICAL EXPLORATION PROGRAM

BOS 100 Overburden and Bedrock Groundwater Remediation Former Dry Cleaning Facility

Impact of the Danube River on the groundwater dynamics in the Kozloduy Lowland

NEW PRODUCTS AND ADVANCEMENTS IN 3-D MODELLING PROTOCOLS BASED ON STUDIES IN THICK DRIFT AREAS IN ONTARIO, CANADA

RESISTIVITY IMAGING AND BOREHOLE INVESTIGATION OF THE BANTING AREA AQUIFER, SELANGOR, MALAYSIA. A.N. Ibrahim Z.Z.T. Harith M.N.M.

iii CONTENTS vii ACKNOWLEDGMENTS EXECUTIVE SUMMARY INTRODUCTION Study Area Data Sources Preparation of Geologic Maps

Site Characterization & Hydrogeophysics

Soils, Hydrogeology, and Aquifer Properties. Philip B. Bedient 2006 Rice University

HYBRID DETERMINISTIC AND STOCHASTIC HYDROSTRATIGRAPHIC MODELING OF A COMPLEX GLACIAL AQUIFER SYSTEM

11/22/2010. Groundwater in Unconsolidated Deposits. Alluvial (fluvial) deposits. - consist of gravel, sand, silt and clay

Geophysical Surveys for Groundwater Modelling of Coastal Golf Courses

Groundwater Hydrology

Aquifer Mapping and Characterization in southern Ontario:

Lower Mainland Surficial Geology From Wisconsin Ice Age to Protocol 21

BERG-HUGHES CENTER FOR PETROLEUM AND SEDIMENTARY SYSTEMS. Department of Geology and Geophysics College of Geosciences

2 OVERVIEW OF SHALLOW BOREHOLE INVESTIGATIONS

HYDROGEOLOGIC FRAMEWORK OF LONG ISLAND'S NORTH FORK, SUFFOLK COUNTY, NEW YORK

Evaluation of Subsurface Formation of Pabna District, Bangladesh

Delineation of Zones at Risk from Groundwater Inflows at an Underground Platinum Mine in South Africa

Dewatering of a Deep Shaft in a Complex Hydrogeologic Setting

The mountain is permeable and fractured: Hydrological Connectivity in the Laramie Range

Chapter 8 Fetter, Applied Hydrology 4 th Edition, Geology of Groundwater Occurrence

Appendix Z. Groundwater Assessment Supplementary Report. Document Name i Insert Month/Year

Understanding Subsurface Fate & Transport

Seismic Reflection Imaging across the Johnson Ranch, Valley County, Idaho

An Hypothesis Concerning a Confined Groundwater Zone in Slopes of Weathered Igneous Rocks

Graduate Student Researcher: Leslie Randolph, Geology Department, Texas A&M University, College Station, TX. (979)

Geophysical Exploration in Water Resources Assessment. John Mundell, P.E., L.P.G., P.G. Ryan Brumbaugh, L.P.G. Mundell & Associates, Inc.

Phase 1 Geoscientific Preliminary Assessment Southern Ontario, Sedimentary Communities

Deep Weathering at the LCZO

Deep Borehole Disposal Performance Assessment and Criteria for Site Selection

Evaluation of the hydraulic gradient at an island for low-level nuclear waste disposal

Parameters for groundwater modelling

Risks of environmental contamination from proposed fracking in the Fylde, Lancashire

Buried Bedrock Channels in the Athabasca Oil Sands Region Conceptual Understanding and Implications to Water Supply

Investigation of the Impact of Fracture Intersection on Solute Transport in Fractured Carbonate. Abstract. 2. Site description

Remedial Program. GE Hudson Falls Plant Site. GE Hudson Falls Plant Site. TDCS Status

RESISTIVITY IMAGING IN EASTERN NEVADA USING THE AUDIOMAGNETOTELLURIC METHOD FOR HYDROGEOLOGIC FRAMEWORK STUDIES. Abstract.

GPR AS A COST EFFECTIVE BEDROCK MAPPING TOOL FOR LARGE AREAS. Abstract

FLOOD1 report: Appendix 3

Table 5-1 Sampling Program Summary for Milltown Ford Avenue Redevelopment Area, NJ.

DESIGN-PHASE GEOLOGIC FRAMEWORK MODELING FOR LARGE CONSTRUCTION PROJECTS

Hydrologic and Borehole Geophysical Investigation of Bedrock Observation Wells at the University of Maine

Data Report for White Point Landslide Boring B-12 W.O. E Task Order Solicitation San Pedro District Los Angeles, California

Back-to-Basics Part 1: Developing the CSM & Site Characterization

Hydrogeology of Karst NE Wisconsin. Dr. Maureen A. Muldoon UW-Oshkosh Geology Department

Developments in Storage and Monitoring for CCUS

WESTCARB Phase I Results Review

HYDRAULIC CONDUCTIVITY AND SPECIFIC STORAGE OF THE MAQUOKETA SHALE

Robert John Stuetzle. A Thesis presented to The University of Guelph

Geologic Mapping in Northeastern Illinois. What do we know about. Donald A. Keefer, Director Geologic Mapping and Hydrogeology Center

Oak Ridges Moraine Aquifer Vulnerability Mapping

Transcription:

A High Resolution Vertical Gradient Approach for Delineation of Hydrogeologic Units at a Contaminated Sedimentary Rock Field Site Jessica Meyer 2013 - Solinst Symposium High Resolution, Depth-Discrete Groundwater Monitoring - Benefits & Importance Georgetown, Ontario November 7, 2013

DNAPL Fractured Rock Site in Southern Wisconsin Contamination in a fractured sandstone Multicomponent DNAPL source zone Dissolved phase plume ~ 3 km long

Mixed Organic Contaminants Plume in Fractured Sandstone 154 monitoring locations DNAPL Source Area ~ 72,000 L DNAPL 20 multilevel systems Total of 558 monitoring points Flow generally toward east to southeast Flow Plume ~ 2.8 km long in 2003

Pleistocene Unconsolidated Sediments Cambrian/Ordovician Sedimentary Bedrock DNAPL Most laterally extensive dissolved phase plume Local Aquifer Regional Aquitard Regional Aquifer

Objectives High resolution hydraulic basis for delineation of hydrogeologic units High resolution characterization of the mass distribution

Hydrogeologic Units (HGUs) Represent partitions of the groundwater flow domain with contrasting hydraulic conductivities

Why are HGUs Important Used as a framework for ALL conceptual and numerical models of groundwater flow and contaminant transport

Position All Groundwater Studies Require Delineation of HGUs Thickness Lateral Extent/geometry

Depth Hypothesis High resolution head profiles identify the position / thickness of K v contrasts that can be used to delineate HGUs Head K = 100 Inflection K = 1 K = 100 K = 1 K = 100 Meyer PhD, 2013

Discrete Fracture Network (DFN) Approach to Site Characterization Drill Corehole Core Corehole Geology / Fractures Contaminant Analysis Physical / Chemical Properties Geophysics/ Hydrophysics Hydraulic Tests Multilevel Systems Parker et al., 2012, AQUA mundi

Multilevel System (MLS) Generic Multilevel System Monitoring Interval Sealed Interval Definition: A single device assembled on surface and then installed in a borehole or a multi-screened casing to divide the hole into many separated intervals for data acquisition from many depth-discrete segments of the hole

Avoid blending HGUs High Resolution MLS Design Objectives Position monitoring zones and seals based on complimentary data sets Use short monitoring zones Seal un-monitored sections of the borehole Maximize the number of monitoring zones

High Resolution Design Packer Multilevel System monitors 129.5 m of bedrock 46 monitoring zones Monitoring Interval 3.6 zones per 10 m 32% sealed

Schematic Head Profile Sharp change in head (inflection) Monitoring Interval Packer Seal No to minimal change in head Meyer PhD, 2013

Schematic Vertical Gradient Profile Upward Gradient Unresolvable Vertical gradients Downward Gradient Meyer PhD, 2013

Head Profiles are Geometric Thin sections of large vertical gradient (inflections) Relatively low K v Thick sections of unresolvable vertical gradient Relatively high K v Meyer et al. 2008, Meyer PhD 2013

Head Profiles are Repeatable Dec 2003 Jun 2009 Aug 2011 Meyer et al. 2008, Meyer PhD 2013

Comparison to Lithostratigraphy Relatively low K v Relatively high K v Lithostratigraphy is not predictive of the position/thickness of K v contrasts Meyer et al. 2008, Meyer PhD 2013

Research Questions Do the vertical gradients correlate between locations What is the geologic basis for the shape of the head/vertical gradient profiles?

DNAPL Source Area ~ 72,000 L DNAPL Flow Plume ~ 2.8 km long in 2003

High Resolution MLS Transect

Key Points Vertical gradients occur at similar stratigraphic positions across the site (they correlate!) Indicate laterally extensive contrasts in K K contrasts are not coincident with lithostratigraphy

New Basis for Numerical Models Vertical Gradient Based Bedrock HGUs No HGU4

How Much Resolution is Enough? Lower resolution profiles do not accurately identify the position and thickness of K contrasts do not identify thin but important contrasts in K? provide inaccurate (blended) heads and gradients

Acknowledgements The research presented is a portion of Jessica Meyer s PhD dissertation. Dr. Beth Parker: Supervisor Dr. John Cherry: Collaborator and committee member Dr. Emmanuelle Arnaud: Collaborator and committee member Funding and In Kind Support Dr. Beth Parker s NSERC IRC and the University Consortium for Field Focused Groundwater Contamination Research Westbay Schlumberger Canada Ltd., Solinst, FLUTe, Stone Environmental, Golder

References Austin, D.C. 2005. Hydrogeologic controls on contaminant distribution within a multi-component DNAPL zone in a sedimentary rock aquifer in south central Wisconsin. Master's thesis, University of Waterloo. Lima, G., B.L. Parker, and J.R. Meyer. 2012. Dechlorinating microorganisms in a sedimentary rock matrix contaminated with a mixture of VOCs. Environmental Science & Technology 46, no.11: 5756-5763. Meyer, J.R., B.L. Parker, and J.A. Cherry. 2008. Detailed hydraulic head profiles as essential data for defining hydrogeologic units in layered fractured sedimentary rock. Environmental Geology 56, no.1: 27-44. Meyer, J.R. 2013. A high resolution vertical gradient approach to hydrogeologic unit delineation in fractured sedimentary rocks. PhD dissertation. University of Guelph. Parker, B.L., J.A. Cherry, and S.W. Chapman. 2012. Discrete fracture network approach for studying contamination in fractured rock. AQUA mundi 3, no.2: 101-116.