Training

An overview of geostatistics for contaminated site characterization

Pollution does not vary uniformly across a site. See how geostatistics can improve sampling, integrate available information, and quantify uncertainty in impacted zones.
Next session On demand
Duration 1 day
Price EUR 550

Objectives

Understand how geostatistics can support the diagnosis and remediation of polluted sites by helping you assess sample representativeness, optimize investigation plans, account for changes of scale, integrate available information, delineate impacted zones, estimate contaminated volumes or pollutant masses, and quantify uncertainty in a heterogeneous subsurface. The seminar explains why these approaches are appropriate and how to implement them operationally.

Target audience

Stakeholders who plan, manage, or assess contaminated site remediation projects and need to understand how geostatistics can support contamination characterization and remediation decisions

Content

 

Understand how spatial heterogeneity affects site characterization
– Review the classical approaches used to characterize potentially polluted sites, predict contaminated soil volumes, and assess compatibility with future use.
– Compare their advantages, limitations and underlying assumptions.
– Understand the concepts of pollutant heterogeneity and spatial variability.
– Examine how spatial variability can affect the feasibility of remediation techniques.
– Review recommendations for sampling potentially polluted sites.

Understand what geostatistics brings to contamination mapping
– Review common deterministic interpolation methods and their limitations.
– Discover how kriging accounts for spatial variability and quantifies the associated uncertainty.
– Understand how site history, qualitative observations, and quantitative measurements can contribute to contamination mapping.

Improve the assessment of contaminated volumes
– Identify the risks associated with using interpolation methods to estimate contaminated volumes.
– Understand the contribution of stochastic simulations.
– See how results can express global contaminated-volume estimates and their uncertainty, as well as the local risk of exceeding cleanup levels.

Key points

Methodological exposition illustrated in the field of site cleanup in numerous application cases. Added value of the geostatistical methodology as well as its limits of use. Feedback and discussions.

Prerequisites

None.

The trainer

Meryem Meziane, PhD

Meryem Meziane, PhD

Consultant, Geostatistics & Environment

Drawing on doctoral research in geostatistics applied to nuclear safety at ASNR and teaching experience at Mines Paris–PSL and Université Paris Cité, Meryem supports clients in implementing Kartotrak. She turns sampling data into reliable 3D contamination models, defensible volume estimates, and robust remediation decisions, tailored to the challenges of contaminated sites and nuclear decommissioning.

Register, or ask us first

This form handles all three: registration, a quote for yourself or your team, and questions about the content or the prerequisites.

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