Design and Integration of a Suitable Gas Turbine Engine During the Aircraft Design Phase Using Digital Twin Technology
NATO Science for Peace and Security Series C: Environmental Security, Springer International Publishing Ag, ss.233-243, 2026
- Yayın Türü: Kitapta Bölüm / Araştırma Kitabı
- Basım Tarihi: 2026
- Doi Numarası: 10.1007/978-3-032-20279-6_14
- Yayınevi: Springer International Publishing Ag
- Sayfa Sayıları: ss.233-243
- Anahtar Kelimeler: Aircraft, Design, Digital twin, Digital twin application, Gas turbine engine, Integration
- Erciyes Üniversitesi Adresli: Evet
Özet
Digital TwinDigital twin (DT) technology is the most advanced approach that will enable us to keep up with today's digital transformationDigital transformation process. In addition to saving time and budget, DT, which helps to meet security requirements by increasing traceability, is supported by system thinking and is offered as the primary solution for complex system solutions. There is DT use for different purposes in many different areas such as monitoring, diagnosis, prediction, validation, designDesign, production, and maintenance. However, the use of DT in the designDesign phase is quite limited in literature. To close this gap, the conceptual designDesign phase, one of the aircraftAircraftdesignDesign stages, incorporates the gas turbine engineGas turbine engine (GTE) developed with digital twinDigital twin. Verification of gas turbine engineGas turbine enginedesignDesign outputs is provided using GasTurb, widely used tool in the literature, and it is shown that the maximum of 10% deviation rate is achieved. The primary objective is to digitize the entire life cycle in order to build a fully digital system. With this study, the designDesign digitalization process is developed, and the digitalization process of the following stages is facilitated. The system can be produced with a digital prototype without creating a physical prototype in the designDesign phase. In this way, costs such as materials, tests, workers and infrastructure will be minimized, which will provide great relief in the budget and time will be saved by accelerating iterations and reactions.