HEДокторантска мрежа2022–2028

TRACES · TRAining the next generation of iCE researcherS

„Хоризонт Европа“ — Действия „Мария Склодовска-Кюри“

Период
2022-12-01 → 2028-02-29
Финансиране от ЕС
3 990 096 €
Участници
16
Схема
HORIZON-TMA-MSCA-DN-JD

Линиите свързват координатора с партньорите.

Накратко на български

Процесите на образуване на лед върху самолети, двигатели и дронове се анализират чрез нови физични модели и експерименти. Това помага за по-доброто разбиране на безопасността при полети в условия на замръзване.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

TRAining the next generation of iCE researcherS

TRACES JD is a European Joint Doctorate network focused on providing advanced training in in-flight icing. Its goal is to develop a new generation of high-achieving Doctoral Researchers (DRs) across various disciplines essential for understanding and mitigating ice formation on aircraft and aeroengines. The network's objectives are as follows: - Joint Doctorate in icing sciences and technologies: To establish a unique joint doctoral program at top EU universities, offering comprehensive training across all disciplines needed to address the physical and technological challenges of in-flight icing for the first time. This includes certification and insights from the aerospace industry. It will lay the foundation for joint doctorate agreements that extend beyond the TRACES JD project, impacting research in aviation and other fields affected by icing, such as wind energy, ground and maritime transportation, and civil engineering. - Icing physics and modeling: To provide academia and industry with numerical and experimental tools that enhance understanding of the ice accretion process by focusing on physics beyond previous projects. This includes the material properties of ice particles and layers, the effects of liquid-film dynamics and ice-induced roughness on ice buildup, and the uncertainties in operating parameters and icing models. Furthermore, it aims to incorporate new models into numerical tools for simulating complex aeronautical applications, utilizing this improved knowledge to explore conditions that were previously unresolved due to a lack of fundamental understanding. - Safety in icing conditions: To develop tools and best practices for measuring how ice growth impacts the performance and handling of aircraft, helicopters, engines, and micro UAVs. The goal is to design innovative ice probes and disruptive Ice Protection Systems (IPS) based on new, untested technologies for industry, maintaining high safety standards while reducing the environmental impact of air travel. - Virtual certification: To promote a “certification culture' early in the development of new in-flight icing technologies and foster collaboration among academia, industry, and certification authorities, building trust in numerical tools for virtual certification—i.e., certification by analysis rather than testing. This approach aims to enable timely, cost-effective certification under icing conditions. - Sustainable research: To build on the legacy of current EU-led projects on in-flight icing by training future icing researchers through both fundamental and applied studies. The aim is to keep EU aircraft and engine manufacturers competitive by developing researchers with a multidisciplinary, cross-sectoral mindset capable of delivering certifiable solutions. This will be achieved through a unique combination of hands-on research training, non-academic secondments, and courses and workshops on scientific and soft skills, facilitated by the diverse academic and non-academic partners in the consortium. Certification authorities will provide training on certification procedures, and together with leading industry partners, will evaluate DR projects during a team Design & Certify exercise.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

In 2019, the European Aviation Safety Agency (EASA) identified in-flight icing as a priority 1 issue for large aeroplanes with the aggregated European Risk Classification Scheme score being amongst the highest of all safety issues. In-flight icing can occur when an aircraft flies through clouds of supercooled droplets, namely, drops of liquid water with a temperature below the freezing point, which freezes upon impact. Aircraft icing can lead to a reduction of visibility, damage due to ice shedding, blockage of probes and static vents, reduced flight performance, engine power loss, etc. In addition to safety concerns, inservice icing events can lead to major disruption of air operation and aircraft maintenance. The more frequent occurrence of severe thunderstorms due to climate change results in more in-flight accidents also at cruising altitudes, with more than 100 engine failures in recent years. Recently, icing-related issues are being observed in newer, more efficient aircraft engines due to the lower temperature of operation. The main goal of TRACES EJD is to provide high-level training in the field of inflight icing to deliver a new generation of high achieving Early Stage Researchers in the diverse disciplines necessary for mastering the complexity of ice accretion and its mitigation in aircraft and aeroengines. This goal will be achieved by a unique combination of hands-on research training, non-academic placements at major EU aviation industries and courses and workshops on scientific and complementary so-called soft skills facilitated by the academic/non-academic composition of the consortium. Innovative Ice Detection and Ice Protection Systems based on disruptive technologies will be designed by the ESRs during Project Working Group. EASA will provide training on certification procedure and together with major industries in the field will assess the ESRs projects during a team Design & Certify exercise.

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз