Najichah, Afi’atun (2023) PRESTASI TERBANG TAKE OFF PESAWAT ATR 72-600 DENGAN MENGGUNAKAN INTEGRAL PERFORMANCE METHOD. Thesis thesis, Institut Teknologi Dirgantara Adisutjipto.
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Abstract
The ATR 72-600 is a twin-turboprop short-range regional passenger aircraft and has a lighter structure than other civil airliners, optimized speed, and engines designed for short sectors. Take off is one of the most critical phases of aircraft flight. Because most plane accidents often occur during that phase. Therefore, an analytical calculation is needed to produce maximum take-off performance flying performance and simulations that can make it easier when analyzing aircraft flying performance at take off. This is done to anticipate a situation that will occur. So an analysis is needed that can make it easier to analyze the performance of flying aircraft at take off. The method in this technical study is to review the performance of ATR 72-600 aircraft at the time of take off every time influenced by several conditions or factors. The first stage is the collection of ATR 72-600 aircraft data such as aircraft specification data and aerodynamic data from the aircraft. This data is obtained from official data of ATR aircraft. The second stage is to find the equation to be used in analytical calculations. Then the next stage is data processing starting from the normal state of take off to the effects of aircraft weight, wind speed, temperature, runway height (MDPL), and runway slope. The next stage compares the results obtained with existing references. So with this technical study, it will be known the length of the distance horizontally and vertically and the time needed for the ATR 72 600 aircraft to take off. By taking into account several factors that become variations used in the calculation
Item Type: | Thesis (Thesis) |
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Subjects: | T Technology > T Technology (General) |
Depositing User: | Ms Afiatun najichah |
Date Deposited: | 15 Feb 2024 08:26 |
Last Modified: | 15 Feb 2024 08:26 |
URI: | http://eprints.stta.ac.id/id/eprint/1116 |
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