Natural Laminar Flow (NLF) airfoils are shaped in such a way to delay as much as possible laminar to turbulent flow transitions in cruise in order to decrease viscous drag. NLF airfoils have better performance, lowering the fuel consumption and reducing carbon dioxide (CO2) emissions. The technological improvements of this topic are inspired through Hybrid Laminar Flow Control (HLFC) technology, under Clean Sky 2 platform. This will strengthen innovative advances in the next generation of aircrafts; overcoming the risks and the technologies eventually to join the next market window to replace the present fleet.The main objective described in this presentation is to simulate the manufacturing process of commercial aircraft leading edge by RT...
Economic needs and a growing ecological awareness demand for a cut in aircraft fuel consumption to r...
This article introduces a process chain for commercial aircraft wing multidisciplinary optimization ...
The Energy System Transition in Aviation research project of the Aeronautics Research Center Nieders...
The purpose of this paper is to describe barriers and efforts made in the design of an aircraft in t...
A methodology has been developed to model the direct consequences of laminar flow technology on wing...
The Vision 2020 of the Advisory Council for Aeronautical Research in Europe (ACARE) demands an envir...
Natural laminar flow is one of the challenging aims of the current aerospace research. Main reasons ...
For application of Hybrid Laminar Flow Control (HLFC) on an engine nacelle of modern business and Co...
Minimizing friction drag through laminarisation is the main motivation of the “HLFC-HTP” project wit...
Integral CFRP Wingcover for laminar Wing Technologies for reducing the fuel consumption are in th...
Laminar technology provides tools to reduce the specific fuel burn of aircraft. Promising results gi...
Resource-efficient flying is a central goal of current and future developments in aviation. Laminar ...
Due to the societal need for mobility of more and more people, the need to reduce CO2 emissions in c...
Th Clean Sky 2 project ECHO focus on the integration of an hybrid laminar flow control (HLFC) system...
Minimizing friction drag through laminarisation is the main motivation of the “HLFC-HTP” project wit...
Economic needs and a growing ecological awareness demand for a cut in aircraft fuel consumption to r...
This article introduces a process chain for commercial aircraft wing multidisciplinary optimization ...
The Energy System Transition in Aviation research project of the Aeronautics Research Center Nieders...
The purpose of this paper is to describe barriers and efforts made in the design of an aircraft in t...
A methodology has been developed to model the direct consequences of laminar flow technology on wing...
The Vision 2020 of the Advisory Council for Aeronautical Research in Europe (ACARE) demands an envir...
Natural laminar flow is one of the challenging aims of the current aerospace research. Main reasons ...
For application of Hybrid Laminar Flow Control (HLFC) on an engine nacelle of modern business and Co...
Minimizing friction drag through laminarisation is the main motivation of the “HLFC-HTP” project wit...
Integral CFRP Wingcover for laminar Wing Technologies for reducing the fuel consumption are in th...
Laminar technology provides tools to reduce the specific fuel burn of aircraft. Promising results gi...
Resource-efficient flying is a central goal of current and future developments in aviation. Laminar ...
Due to the societal need for mobility of more and more people, the need to reduce CO2 emissions in c...
Th Clean Sky 2 project ECHO focus on the integration of an hybrid laminar flow control (HLFC) system...
Minimizing friction drag through laminarisation is the main motivation of the “HLFC-HTP” project wit...
Economic needs and a growing ecological awareness demand for a cut in aircraft fuel consumption to r...
This article introduces a process chain for commercial aircraft wing multidisciplinary optimization ...
The Energy System Transition in Aviation research project of the Aeronautics Research Center Nieders...