Urbański M., Świtała M., Liszewski W., Ślusarczyk B., Piechowicz K.: Waloryzacja cen budowy obiektów drogowych i mostowych na przykładzie wybranej inwestycji. Roads and Bridges – Drogi i Mosty, 21, 4, 2022, 365-378, DOI: 10.7409/rabdim.022.021
Google Scholar
Son J.S., Song, S.Y., Nam, M.J.: Complex resistivity survey for the evaluation of ground reinforcement in a karst area. Engineering Geology, 269, 2020, ID article: 105555, DOI: 10.1016/j.enggeo.2020.105555
Google Scholar
Szajna W.: Stabilizacja chemiczna gruntów problematycznych. Przegląd Budowlany, 92, 2021, 38-43
Google Scholar
Das K., Chattaraj S., Bandyopadhyay K.: Review on the Application of Geosynthetic for Ground Improvement. Proceedings of Indian Geotechnical Conference, Springer Nature Singapore, 2021, 79-89
Google Scholar
Sun Z., Zhang D., Fang Q.: Determination method of reasonable reinforcement parameters for subsea tunnels considering ground reinforcement and seepage effect. Applied Sciences, 9, 17, 2019, ID article: 3607, DOI: 10.3390/app9173607
Google Scholar
Chatrabhuj, Meshram K.: Use of geosynthetic materials as soil reinforcement: an alternative eco-friendly construction material. Discover Civil Engineering, 1, 2024, ID article: 41, DOI: 10.1007/s44290-024-00050-6
Google Scholar
Kang D.H., Kim J.: Development of Eco-Friendly Soil Improvement Agent for Enhanced Slope Stability and Erosion Control in Urban Areas. Buildings, 14, 4, 2024, ID article: 1021, DOI: 10.3390/buildings14041021
Google Scholar
Moseley M.P., Kirsch K.: Ground improvement. CRC Press, London, 2004
Google Scholar
Barley A.D., Windsor C.R.: Recent advances in ground anchor and ground reinforcement technology with reference to the development of the art. ISRM International Symposium, Curtin University, 2000
Google Scholar
Thompson A.G., Villaescusa E., Windsor C.R.: Ground support terminology and classification: an update. Geotechnical and Geological Engineering, 30, 2012, 553-580, DOI: 10.1007/s10706-012-9495-4
Google Scholar
Top Construction Risks and How to Mitigate Them. AEI Consultants, https://aeiconsultants.com/top-construction-risks-and-how-to-mitigate-them/, 10.08.2024
Google Scholar
Kamińska E., Świtała M., Kamiński T.: Selected issues of the ecobalance analysis of recycled materials used in road construction. Roads and Bridges – Drogi i Mosty, 22, 4, 2023, 481-490, DOI: 10.7409/rabdim.023.029
Google Scholar
Banaitiene N., Banaitis A.: Risk management in construction projects. Risk Management – Current Issues and Challenges, 2012, 429-448, DOI: 10.5772/51460
Google Scholar
Tayefeh Hashemi S., Ebadati O.M., Kaur H.: Cost estimation and prediction in construction projects: a systematic review on machine learning techniques. SN Applied Sciences, 2, 2020, ID article: 1703, DOI: 10.1007/s42452-020-03497-1
Google Scholar
Odeck J.: Cost overruns in road construction – what are their sizes and determinants?. Transport Policy, 11, 1, 2004, 43-53, DOI: 10.1016/S0967-070X(03)00017-9
Google Scholar
Flyvbjerg B., Holm M.S., Buhl S.: Underestimating costs in public works projects: Error or lie?. Journal of the American Planning Association, 68, 3, 2002, 279-295, DOI: 10.1080/01944360208976273
Google Scholar
Pereira T., Ferreira F.A., Martins A.: Logistics trade-offs. AIP Conference Proceedings, 2116, 1, 2019, ID article: 110003, DOI: 10.1063/1.5114096
Google Scholar
Evans J., Ruffing D., Elton D.: Fundamentals of ground improvement engineering. CRC Press, London, 2021
Google Scholar
Flyvbjerg B., Holm M.K.S., Buhl S.L.: How common and how large are cost overruns in transport infrastructure projects? Transport reviews, 23, 1, 2003, 71-88, DOI: 10.1080/01441640309904
Google Scholar
Armstrong J., Helm P., Preston J., Loveridge F.: Economics of geotechnical asset deterioration, maintenance and renewal. Transportation Geotechnics, 45, 2024, ID article: 101185, DOI: 10.1016/j.trgeo.2024.101185
Google Scholar
Chassiakos A.P., Sakellaropoulos S.P.: Time-cost optimization of construction projects with generalized activity constraints. Journal of Construction Engineering and Management, 131, 10, 2005, 1115-1124, DOI: 10.1061/(ASCE)0733-9364(2005)131:10(1115)
Google Scholar
Fernandes I., Chaminé H.I.: In Situ Geotechnical Investigations. In: Chastre C., Neves J., Ribeiro D., Neves M.G., Faria P. (eds): Advances on Testing and Experimentation in Civil Engineering. Springer Tracts in Civil Engineering. Springer, Cham, 2023, DOI: 10.1007/978-3-031-05875-2_2
Google Scholar
Król M.: Łatwe technologie na trudne czasy – metody wzmacniania podłoża w budownictwie infrastrukturalnym. Nowoczesne Budownictwo Inżynieryjne, 107, 2, 2023, 36-38
Google Scholar
Gajewska B., Kłosiński B.: Rozwój metod wzmacniania podłoża gruntowego. Magazyn Autostrady, 3, 2012, 26-31
Google Scholar
Cheng Y.M.: An exploration into cost-influencing factors on construction projects. International Journal of Project Management, 32, 5, 2014, 850-860, DOI: 10.1016/j.ijproman.2013.10.003
Google Scholar
Ding Z., Liu X., Xue Z., Li X.: Expert opinion on the key influencing factors of cost control for water engineering contractors. Sustainability, 15, 8, 2023, ID article: 6963. DOI: 10.3390/su15086963
Google Scholar
Bazarnik J., Manczak I.: Koszty targowe w opinii przedsiębiorstw-wystawców – próba zdiagnozowania. Handel Wewnętrzny, 350, 3, 2014, 25-40
Google Scholar
Gabrusewicz W.: Metody analizy finansowej przedsiębiorstwa. PWE, Warszawa 2019
Google Scholar
Biuletyn Cen Robót Ziemnych i Inżynieryjnych BRD, 24, Sekocenbud, Warszawa 2022
Google Scholar
Krajewski M.: Kierunki analizy kosztów działalności operacyjnej przedsiębiorstw. Studia i Prace, Wydział Nauk Ekonomicznych i Zarządzania Uniwersytetu Szczecińskiego, 6 , 2008, 61-68
Google Scholar
Sagan A.: Badania marketingowe – podstawowe kierunki. Akademia Ekonomiczna, Kraków, 2004
Google Scholar