Buried mine and soil temperature prediction by numerical model P Pregowski, W Swiderski, RT Walczak, K Lamorski Detection and Remediation Technologies for Mines and Minelike Targets V 4038 …, 2000 | 31 | 2000 |
Role of time and space variability of moisture and density of sand for thermal detection of buried objects: modeling and experiments P Pregowski, W Swiderski, WT Walczak, B Usowicz Thermosense XXI 3700, 444-455, 1999 | 18 | 1999 |
Detection of minefields using IR sensing and time-domain treatment method P Pregowski, W Swiderski Detection and Remediation Technologies for Mines and Minelike Targets II …, 1997 | 13 | 1997 |
Surface and volume effects in thermal signatures of buried mines: experiment and modeling P Pregowski, W Swiderski, R Walczak Proc. QIRT 98, 1998 | 9 | 1998 |
Thermal signatures of land mines buried in mineral and organic soils––modelling and experiments K Lamorski, P Pręgowski, W Swiderski, D Szabra, RT Walczak, B Usowicz Infrared physics & technology 43 (3-5), 303-309, 2002 | 7 | 2002 |
Comparison of thermal signatures of a mine buried in mineral and organic soils K Lamorski, P Pregowski, W Swiderski, B Usowicz, RT Walczak Detection and Remediation Technologies for Mines and Minelike Targets VI …, 2001 | 7 | 2001 |
Advanced multispectral dynamic thermography as a new tool for inspection of gas-fired furnaces P Pregowski, G Goleniewski, W Komosa, W Korytkowski Thermosense XXVI 5405, 227-236, 2004 | 6 | 2004 |
Using of comparison method in IR thermal detection of buried mines P Pregowski, W Swiderski SPIE 3392, 781-800, 1998 | 6 | 1998 |
Heating medium absorption and emission as factors in thermographic investigations of petrochemical furnaces P Pregowski, G Goleniewski, W Komosa, W Korytkowski, S Zwolenik Thermosense XXXI 7299, 131-141, 2009 | 5 | 2009 |
Study of thermal effects on artwork surfaces cleaned with laser ablation method P Pregowski, J Marczak, A Koss Thermosense XXV 5073, 253-263, 2003 | 5 | 2003 |
Application of IR Thermography for detection of the buried mines–prediction and procedures P Pręgowski, W Świderski MATEST 99, 227-232, 0 | 5 | |
Applications of dynamic IR thermography in studying operation of heaters P Pregowski, G Goleniewski, W Komosa, W Korytkowski, S Zwolenik Thermosense XXVII 5782, 83-92, 2005 | 4 | 2005 |
Thermal imaging application for behavior study of chosen nocturnal animals P Pregowski, E Owadowska, J Pietrzak Thermosense XXVI 5405, 280-287, 2004 | 4 | 2004 |
Spectral analysis of radiant signals in processes of tele-thermodetection P Pregowski Thermosense XXIII 4360, 1-12, 2001 | 4 | 2001 |
An empirical research in application of dynamic, multispectral-band IR thermal images for investigations of petrochemical furnaces P Pregowski, G Goleniewski, W Komosa, W Korytkowski, S Zwolenik Optical Design and Engineering III 7100, 715-724, 2008 | 2 | 2008 |
New method of dynamic and multispectral thermography elaborated for inspection of petrochemical process furnaces P Pregowski, G Goleniewski, W Komosa, W Korytkowski, S Zwolenik Photonics Applications in Industry and Research IV 5948, 409-419, 2005 | 2 | 2005 |
Experimental determination of the transmission of the atmosphere–based on thermographic measurements P Pregowski, W Swiderski Proc. of 50, 363-367, 0 | 2 | |
A new experimental techniques for inspection of operating furnaces by use of IR radiometers P Pregowski, G Goleniewski, W Komosa, W Korytkowski, S Zwolenik International Society for Optics and Photonics 71 (10), 31-36, 2008 | 1 | 2008 |
Experimental verification of thermal signature model for mines buried in the sand W Świderski, D Szabra, P Pręgowski, K Lamorski, B Usowicz, R Walczak Problemy Techniki Uzbrojenia 29 (72), 61--72, 2000 | 1 | 2000 |
Opportunities and challenges of the application of dynamic, multispectral thermography as a means of improving the effectiveness of furnace processes in the petrochemical industry P Pregowski, G Goleniewski, W Komosa, A Korytkowski Thermosense: Thermal Infrared Applications XXXIV 8354, 198-209, 2012 | | 2012 |