This study reports on the combination of data from a ground penetrating radar (GPR) and a gamma ray detector for nonintrusive depth estimation of buried radioactive sources. The use of the GPR was to enable the estimation of the material density required for the calculation of the depth of the source from the radiation data. Four different models for bulk density estimation were analysed using three materials, namely: sand, gravel and soil. The results showed that the GPR was able to estimate the bulk density of the three materials with an average error of 4.5%. The density estimates were then used together with gamma ray measurements to successfully estimate the depth of a 658 kBq ceasium-137 radioactive source buried in each of the three ...
This paper presents improved results using a Cadmium Zinc Telluride (CZT) detector for a recently de...
Radioactive sources exist in environments or contexts that influence how they are detected and local...
This paper presents the results of an attenuation model for remote depth estimation of buried radioa...
This study reports on the combination of data from a ground penetrating radar (GPR) and a gamma ray ...
This study reports on the combination of data from a ground penetrating radar (GPR) and a gamma ray ...
This study reports on the combination of data from a ground penetrating radar (GPR) and a gamma ray ...
The characterisation of buried radioactive wastes is challenging because they are not readily access...
The characterisation of buried radioactive wastes is challenging because they are not readily access...
The characterisation of buried radioactive wastes is challenging because they are not readily access...
This study reports on nonintrusive depth estimation of a buried caesium-137 radioactive source using...
This study reports on nonintrusive depth estimation of a buried caesium-137 radioactive source using...
This thesis reports on the integration of ground-penetrating radar (GPR) and gamma ray detectors to ...
A new method for non-intrusive estimation of the depth of buried radioactive waste have been develo...
This paper presents improved results using a Cadmium Zinc Telluride (CZT) detector for a recently de...
Existing remote radioactive contamination depth estimation methods for buried radioactive wastes ar...
This paper presents improved results using a Cadmium Zinc Telluride (CZT) detector for a recently de...
Radioactive sources exist in environments or contexts that influence how they are detected and local...
This paper presents the results of an attenuation model for remote depth estimation of buried radioa...
This study reports on the combination of data from a ground penetrating radar (GPR) and a gamma ray ...
This study reports on the combination of data from a ground penetrating radar (GPR) and a gamma ray ...
This study reports on the combination of data from a ground penetrating radar (GPR) and a gamma ray ...
The characterisation of buried radioactive wastes is challenging because they are not readily access...
The characterisation of buried radioactive wastes is challenging because they are not readily access...
The characterisation of buried radioactive wastes is challenging because they are not readily access...
This study reports on nonintrusive depth estimation of a buried caesium-137 radioactive source using...
This study reports on nonintrusive depth estimation of a buried caesium-137 radioactive source using...
This thesis reports on the integration of ground-penetrating radar (GPR) and gamma ray detectors to ...
A new method for non-intrusive estimation of the depth of buried radioactive waste have been develo...
This paper presents improved results using a Cadmium Zinc Telluride (CZT) detector for a recently de...
Existing remote radioactive contamination depth estimation methods for buried radioactive wastes ar...
This paper presents improved results using a Cadmium Zinc Telluride (CZT) detector for a recently de...
Radioactive sources exist in environments or contexts that influence how they are detected and local...
This paper presents the results of an attenuation model for remote depth estimation of buried radioa...