Monte Carlo simulations of the underwater detection of illicit war remnants with neutron-based sensors

Author:

Silarski MichałORCID,Sibczyński Paweł,Bezshyyko Oleg,Kapłon Łukasz,Kumar Vinod,Niedźwiecki Szymon,Nowakowski Marek,Moskal Paweł,Sharma Sushil,Sobczuk Franciszek

Abstract

AbstractIn recent years, the demand for accurate detection and identification of hazardous substances in an aquatic environment, especially in the Baltic Sea, has seen a significant rise, with a specific focus on unexploded ordnance (UXO) containing conventional explosives and various chemical agents, including, but not limited to, mustard gas, Clark I and II and other lethal compounds. These substances pose a significant threat to human health and the environment, and their identification is crucial for effective demining and environmental protection efforts. In this article, a novel approach for fast, remote, and non-destructive recognition of dangerous substances based on a SABAT sensor installed on an ROV is described. The performance of the proposed neutron-based sensor in an aquatic environment was verified based on a series of Monte Carlo simulations for mustard gas, Clark I and II, and TNT, as they are the most common chemical threats at the bottom of the Baltic Sea. The sensor’s ability to accurately discriminate hazardous and non-hazardous materials is described in the paper in terms of the ratio of chlorine to hydrogen (Cl/H), carbon to oxygen (C/O), and nitrogen to hydrogen (N/H) activation lines integrals. The authors also discussed the future directions of work to validate SABAT (Stoichiometry Analysis By Activation Techniques) sensors in the operational environment.

Funder

HORIZON EUROPE Marie Sklodowska-Curie Actions

Strategic Programme Excellence Initiative at the Jagiellonian University

Narodowe Centrum Badań i Rozwoju

Ministerstwo Edukacji i Nauki

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,Fluid Flow and Transfer Processes

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