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Considerations on Loads Transmitted By the Bridge Inspection Installation on Support Structures

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[1] I.R. RĂCĂNEL: “Căi de comunicații: Poduri”, Editura Conspress, București, 2007. Search in Google Scholar

[2] L.K. SHAPIRO, J.P. SHAPIRO: Cranes and Derricks, Fourth edition, New York: McGraw-Hill. ISBN: 978-0-07-162557-9, ISBN: 978-0-07-162558-6, 2000. Search in Google Scholar

[3] H. SEGALL, I. VÎȚĂ, I. POPA: “Macarale pentru construcții”, vol. I, Editura I.N.C.E.R.C., București, 1975. Search in Google Scholar

[4] S. HASAN: “Decision Support System for Crane Selection and Location Optimization on Construction Sites” Thesis, University of Alberta, 2013, https://doi.org/10.7939/R3QZ22R6C, https://era.library.ualberta.ca/items/6e09a02f-96e2-4d92-8bb4-5a888933b601. Search in Google Scholar

[5] S. HASAN: “Interactive and Dynamic Integrated Module for Mobile Cranes Supporting System Design” University of Alberta, 2008, https://central.baclac.gc.ca/.item?id=MR47264&op=pdf&app=Library&oclc_number=695977882. Search in Google Scholar

[6] M.C. SCUTARU: “Contribuţii la dezvoltarea metodologiei de monitorizare a podurilor” Teză de doctorat, Universitatea Tehnică “Gheorghe Asachi” Iaşi, 2019, http://www.doctorat.tuiasi.ro. Search in Google Scholar

[7] S. DORAFSHANA, M. MAGUIREB: “ Bridge Inspection: Human Performance, Unmanned Aerial Systems and Automation” Journal of Civil Structural Health Monitoring volume 8, pages 443–476 (2018), DOI:10.1007/S13349-018-0285-4, Corpus ID: 92993638, https://link.springer.com/article/10.1007%2Fs13349-018-0285-4. Search in Google Scholar

[8] R. HELMERICH, E. NIEDERLEITHINGER, D. ALGERNON, D. STREICHER, H. WIGGENHAUSER: „Bridge Inspection and Condition Assessment in Europe” Transportation Research Record Journal of the Transportation Research Board, December 2008, DOI: 10.3141/2044-04, https://www.researchgate.net/publication/245562791. Search in Google Scholar

[9] S.L. JENG, C.F.YANG, W. CHIENG: “Outrigger Force Measure for Mobile Crane Safety Based on Linear Programming Optimization” Mechanics Based Design of Structures and Machines, ISSN: 1539-7734 (Print) 1539-7742 (Online) Journal, DOI:10.1080/15397730903482702, http://dx.doi.org/10.1080/15397730903482702;10.1080/15397730903482702 Search in Google Scholar

[10] W. KACALAK, Z. BUDNIAK, M. MAJEWSKI: “Computer Aided Analysis of the Mobile Crane Handling System Using Computational Intelligence Methods”, Advances in Intelligent Systems and Computing · January 2018, DOI: 10.1007/978-3-319-67621-0_23, https://www.researchgate.net/publication/319491704. Search in Google Scholar

[11] M. M. KARIMA, C. H. DAGLIA, R. QINA: “ Modeling and Simulation of a Robotic Bridge Inspection System”, Procedia Computer Science 168 (2020) 177–185, https://doi.org/10.1016/j.procs.2020.02.276, https://www.sciencedirect.com/science/article/pii/S1877050920304154. Search in Google Scholar

[12] K. KRASTANOV: “About the safety by using of mobile cranes”, The Eurasia Proceedings of Science, Technology, Engineering & Mathematics (EPSTEM), Volume 1, Pages 213-217, ISSN: 2602-3199, 2017, https://dergipark.org.tr/tr/download/article-file/380040. Search in Google Scholar

[13] D. LEE, J. Y. PARK, J. HO, S. KIM: “Automatic design algorithms for securing the ground contact stability of mobile cranes”, Visualization in Engineering volume 2, Article number: 7 (2014), https://viejournal.springeropen.com/articles/10.1186/s40327-014-0007-x.10.1186/s40327-014-0007-x Search in Google Scholar

[14] B. SUTTERA, A. LELEVÉB, M.T. PHAMB, O. GOUINC, N. JUPILLED, M. KUHNE, P. LULÉA, P. MICHAUDE, P. RÉMY: “A semi-autonomous mobile robot for bridge inspection” Automation in Construction, Iulie 2018, DOI:10.1016/j.autcon.2018.02.013, http://www.elsevier.com.10.1016/j.autcon.2018.02.013 Search in Google Scholar

[15] T. WHITLEY, A. TOMICZEK, C. TRIPP, A. ORTEGA, M. MENNU, J. BRIDGE, P. IFJU: “Design of a Small Unmanned Aircraft System for Bridge Inspections” Published: 18 September 2020, ISSN 1424-8220; CODEN: SENSC9, https://doi.org/10.3390/s20185358 și https://www.mdpi.com.10.3390/s20185358757089832962108 Search in Google Scholar

[16] CICA & CANZ Guidance Note: “Crane Stability and Ground Pressure”, 2017, https://www.cranes.org.nz/uploads/2/0/5/7/20572552/crane_stability_and_ground_pressure.pdf. Search in Google Scholar

[17] Echipament pentru inspecția podurilor MBI 180-1,7/S, Manual de utilizare, https://www.cestrin.ro/web2014/achizitii/documentatii/2016. Search in Google Scholar

[18] *** AND 522-2017, “Instrucțiuni tehnice pentru stabilirea stării tehnice a unui pod2017. Search in Google Scholar

[19] *** AND 554-2002, “ Normativul privind întreţinerea şi repararea drumurilor publice” 2002. Search in Google Scholar

[20] *** CD 138 – 2010, “Normativ privind criteriile de determinare a stării de viabilitate a podurilor de șosea din beton, beton armat, beton precomprimat, metal și compozite2010. Search in Google Scholar

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