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Ground access model choice models of İstanbul airports

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dc.contributor Graduate Program in Civil Engineering.
dc.contributor.advisor Gökaşar, Ilgın.
dc.contributor.author Ilgen, Onur.
dc.date.accessioned 2023-03-16T10:51:05Z
dc.date.available 2023-03-16T10:51:05Z
dc.date.issued 2016.
dc.identifier.other CE 2016 I64
dc.identifier.uri http://digitalarchive.boun.edu.tr/handle/123456789/13994
dc.description.abstract One of the important parameter of airport landside planning is providing access alternatives to air passengers. As a result of the characteristics of the travellers, duration of the travel and di erences in the current modes and, the factors in airport travel are importantly di erent from those in the urban transportation models for the regular travels. Most of the travel is conducted by the visitors to airports; in comparison to other urban travels, passengers prefer to travel in groups. Also, their trips for airport access purposes have lesser frequency than the other urban trips. They carry their luggage with them and they are mostly away for a couple of days or sometimes for weeks. In this study, two airport in _Istanbul; S.A.W., I.S.T. were investigated and access mode choice models were built by using the air passenger survey data. Multinomial Logit Model was used to analyze mode choice. Passenger characteristics and trip characteristics are the major parameters of models. Results of the analysis show that travel time, trip purpose (Business/Nonbusiness), travel cost, ight route (Domestic/International) are the most important parameters of access mode choice. For instance, being international or business passenger for SAW model and number of passenger for IST model decreases probability of choosing public transit relative to auto. Also, distance has a negative e ect on choosing taxi relative to auto for both airport. So, if distance increases, proportion of choosing taxi decreases. Furthermore, in this study, two factors which did not used for any models in literature, were used for mode choice models. One of them is seasonal e ect (winter/summer) which was used for IST model and winter increases choosing taxi compare to auto. Other one is Weather e ect (rainy/not rainy) which was used for SAW model and if weather is rainy choosing public transit rate relative to auto decreases.
dc.format.extent 30 cm.
dc.publisher Thesis (M.S.) - Bogazici University. Institute for Graduate Studies in Science and Engineering, 2016.
dc.relation Cover titel : Airport ground access model choice models of İstanbul airports.
dc.relation Cover titel : Airport ground access model choice models of İstanbul airports.
dc.subject.lcsh Transportation -- İstanbul airports.
dc.subject.lcsh Choice of transportation -- Mathematical models -- İstanbul airports.
dc.title Ground access model choice models of İstanbul airports
dc.format.pages xiii, 61 leaves ;


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