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Aircraft Engine Combustor Simulation
The Low NOx Combustion team was awarded a Turning Goals Into Reality
Award for demonstrating a total NOx emissions reduction of 50% from the 1996
International Civil Aviation Organization standards for large and
regional size subsonic engines. New engines with this technology are expected to
start entering into service in the year 2002. The final goal is to reduce
the NOx emissions by a factor of 3 (or 70% reduction) from 1996 levels.
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Flight Safety
The AvSP processes flight data that was previously gathered for arrivals and departures through take-off and landi
ng, as well as, weather information, aircraft models, GRC engine models, ARC wing models, and combined systems all
executing within an integrated framework.
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Heterogeneous Cluster Computing
The Dynamic Load Balancing Tool improves the execution time of ADPAC (An Advanced Ducted Propfan Analysis Code) r
unning in parallel on local area and wide area networks formed by combined Unix and Windows/NT environments
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Immersive Physics
NASA Glenn is exploring advanced interactive displays for improved enginering an
alysis.
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Local and Wide Area Computing
When multi-user computers are used for running parallel jobs, load balancing the computers is essential for taking
the advantage of parallel and distributed processing.
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Multiclustering using Load Sharing Facility (LSF)
At the Glenn Research Center, the Space-Time Conservation Element and Solution
Element (CE/SE) Method is currently being applied to large-scale numerical flow s
imulation in chemically reacting flows and computational aeroacoustics (CAA).
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NASA Glenn Aeroshark Cluster
The Pentium III Aeroshark cluster is a network of 64 compute nodes (128 CPUs. Each node has two network interfaces; one for message passing traffic, and the other for disk and system I/O. The cluster is used to execute significant turbomachinery simulations in a production mode.
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NASA Glenn Power Grid Challenge
The Multifidelity Engine Model consists of CORBA analysis elements that simulate the high
pressure compressor/combustor/turbine subsystem coupled with the low pressure compress
or/turbine subsystem of a turbine engine.
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Numerical Propulsion System Simulation
The Numerical Propulsion System Simulation (NPSS) is developing an object orient
ed framework for Aerospace Propulsion with the integration of multiple disciplin
es such as aerodynamics, structure, and heat transfer with numerical zooming on
component codes.
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Wrapping Legacy Scientific Applications
A distributed object is a reusable, self-contained piece of software that cooper
ates with objects in a plug-and-play fashion. Many scientific applications in a
erodynamics and solid mechanics are written in Fortran. Refitting these legacy
Fortran codes with distributed objects can increase the code reusability. At the
Glenn Research Center, we are developing efficient technologies and tools to
integrate aerospace applications into a distributed object framework. These three
figures show different wrapping techniques (developed by J. Sang, C. Kim and I
. Lopez.)
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Additional
Glenn Research Center Information: http://www.grc.nasa.gov/
Point
of Contact:
Isaac Lopez
216-433-5893
Isaac.Lopez@grc.nasa.gov
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