A method has been proposed to reproduce in the laboratory experiments of infrared landmine detection with reduced length- and time-scale. In this work, the method is verified experimentally. Models of landmines are purposely built by a rapid prototyping technique. The surface response of the soil-landmine system is then monitored by an infrared camera. Preliminarily, the response measured above full-scale models is cross-checked against that measured above actual landmines. Full-scale and reduced-scale models are subsequently tested outdoors and in the laboratory, respectively. The measured distribution and time-evolution patterns of surface temperature are eventually compared, in order to assess the reliability of the scale reduction method.
Scale reduction in modeling landmine detection by IR Termography / L., Tarozzi; Muscio, Alberto; Corticelli, Mauro Alessandro. - In: QUANTITATIVE INFRA RED THERMOGRAPHY JOURNAL. - ISSN 1768-6733. - STAMPA. - 4:2(2007), pp. 141-154. [10.3166/qirt.4.141-154]
Scale reduction in modeling landmine detection by IR Termography
MUSCIO, Alberto;CORTICELLI, Mauro Alessandro
2007
Abstract
A method has been proposed to reproduce in the laboratory experiments of infrared landmine detection with reduced length- and time-scale. In this work, the method is verified experimentally. Models of landmines are purposely built by a rapid prototyping technique. The surface response of the soil-landmine system is then monitored by an infrared camera. Preliminarily, the response measured above full-scale models is cross-checked against that measured above actual landmines. Full-scale and reduced-scale models are subsequently tested outdoors and in the laboratory, respectively. The measured distribution and time-evolution patterns of surface temperature are eventually compared, in order to assess the reliability of the scale reduction method.File | Dimensione | Formato | |
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2007-12_QIRT Journal_4 (2) (2007) 141-154.pdf
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