In this work a numerical model capable to predict the electromagnetic response of railway ballast aggregates under different physical conditions has been calibrated and validated by a simulation-based approach. The ballast model is based on the main physical and geometrical properties of its constituent material and it is generated by means of a random-sequential absorption (RSA) approach. A finite-difference time-domain (FDTD) simulator is then employed to calculate the ground-penetrating radar (GPR) signal response to the scenario. The calibration of the model has been performed by taking into account the main physical properties and the grain size characteristics of both the reference ballast material and a fine-grained pollutant materia...
Ballast material typically employed in rail track bed construction has been herein physically and el...
Railways are important assets requiring continuous and effective monitoring. Within this context, no...
This paper addresses the use of nondestructive Ground Penetrating Radar (GPR) methodology in the inv...
In this work a numerical model capable to predict the electromagnetic response of railway ballast ag...
This study aims at proposing a model capable to assess the physical conditions of railway ballast, i...
This paper reports on the ground-penetrating radar (GPR)-based assessment of railway ballast which w...
This paper reports on the ground-penetrating radar (GPR)-based assessment of railway ballast which w...
This paper presents a methodology for the assessment of railway ballast using ground-penetrating rad...
Ground-Penetrating Radar (GPR) investigations of railway track bedsare becoming more important nowad...
The first step in the planning for a renewal of a railway network consists in gathering information,...
This paper presents a computer-aided multi-stage methodology for the simulation of railway ballasts ...
This study reports on an investigation into the grain size distribution of the railway ballast using...
This study reports on an investigation into the grain size distribution of the railway ballast using...
Effective maintenance of railways requires a comprehensive assessment of the actual condition of the...
Ballast material typically employed in rail track bed construction has been herein physically and el...
Railways are important assets requiring continuous and effective monitoring. Within this context, no...
This paper addresses the use of nondestructive Ground Penetrating Radar (GPR) methodology in the inv...
In this work a numerical model capable to predict the electromagnetic response of railway ballast ag...
This study aims at proposing a model capable to assess the physical conditions of railway ballast, i...
This paper reports on the ground-penetrating radar (GPR)-based assessment of railway ballast which w...
This paper reports on the ground-penetrating radar (GPR)-based assessment of railway ballast which w...
This paper presents a methodology for the assessment of railway ballast using ground-penetrating rad...
Ground-Penetrating Radar (GPR) investigations of railway track bedsare becoming more important nowad...
The first step in the planning for a renewal of a railway network consists in gathering information,...
This paper presents a computer-aided multi-stage methodology for the simulation of railway ballasts ...
This study reports on an investigation into the grain size distribution of the railway ballast using...
This study reports on an investigation into the grain size distribution of the railway ballast using...
Effective maintenance of railways requires a comprehensive assessment of the actual condition of the...
Ballast material typically employed in rail track bed construction has been herein physically and el...
Railways are important assets requiring continuous and effective monitoring. Within this context, no...
This paper addresses the use of nondestructive Ground Penetrating Radar (GPR) methodology in the inv...