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Investigational research on eco-smart engines; Eco-smart engine no chosa kenkyu

Abstract

The paper investigated the trend of research on eco-smart engines into which optimization function of engine performance, high environmental-adaptability, etc. are integrated. The investigation was made in Japan and abroad on technologies of combustion, structure/material, control, design/analysis, systematization, etc. In case of Japan, specifications were established for three types of engines, subsonic, supersonic and hypersonic aircraft, and the research subjects to fulfil the specifications were extracted. In case of the U.S. and Europe, the survey was made of combustion, materials, noise, design concept, control, etc. Important subjects are selected in priority order. Namely, for the enhancement of efficiency, the following were taken up: three-dimensional fiber-reinforced large-size light-weight structure application technology, heat-resistant advanced-material structure damage-tolerant design technology, pseudo-vesicular structure transpiration cooling technology, etc. For the reduction of NOx emission, the paper took up technologies of environmentally optimization combustion, AI combustion control, and non-cooling combustor liner application. For the noise reduction, technologies of new inclination hole orientation noise absorbing structure material application, super noise control, and innovative CFD utilization low noise aerodynamics. Moreover, the results of fiscal 1997 were outlined to indicate the research in the next fiscal year. 14 figs., 10 tabs.
Publication Date:
Mar 01, 1998
Product Type:
Technical Report
Report Number:
NEDO-PR-9712
Reference Number:
SCA: 330100; 290500; PA: JP-98:0B0065; EDB-98:087378; NTS-98:006778; SN: 98001986596
Resource Relation:
Other Information: PBD: Mar 1998
Subject:
33 ADVANCED PROPULSION SYSTEMS; 29 ENERGY PLANNING AND POLICY; INTERNAL COMBUSTION ENGINES; ECONOMY; POLLUTION ABATEMENT; ENVIRONMENTAL QUALITY; COMBUSTION; MECHANICAL STRUCTURES; MATERIALS; MECHANICAL ENGINEERING; SUBSONIC FLOW; SUPERSONIC FLOW; NOISE POLLUTION CONTROL; CONTROL SYSTEMS; REINFORCED MATERIALS; FIBERS; HEAT RESISTANT MATERIALS; GAS COOLING; POROUS MATERIALS; NITROGEN OXIDES
OSTI ID:
632746
Research Organizations:
New Energy and Industrial Technology Development Organization, Tokyo (Japan)
Country of Origin:
Japan
Language:
Japanese
Other Identifying Numbers:
Other: ON: DE98770055; TRN: JN98B0065
Availability:
Available from Office of Scientific and Technical Information, P.O.Box 1000, Oak Ridge Tennessee 37831, USA; OSTI as DE98770055
Submitting Site:
NEDO
Size:
179 p.
Announcement Date:
Sep 02, 1998

Citation Formats

None. Investigational research on eco-smart engines; Eco-smart engine no chosa kenkyu. Japan: N. p., 1998. Web.
None. Investigational research on eco-smart engines; Eco-smart engine no chosa kenkyu. Japan.
None. 1998. "Investigational research on eco-smart engines; Eco-smart engine no chosa kenkyu." Japan.
@misc{etde_632746,
title = {Investigational research on eco-smart engines; Eco-smart engine no chosa kenkyu}
author = {None}
abstractNote = {The paper investigated the trend of research on eco-smart engines into which optimization function of engine performance, high environmental-adaptability, etc. are integrated. The investigation was made in Japan and abroad on technologies of combustion, structure/material, control, design/analysis, systematization, etc. In case of Japan, specifications were established for three types of engines, subsonic, supersonic and hypersonic aircraft, and the research subjects to fulfil the specifications were extracted. In case of the U.S. and Europe, the survey was made of combustion, materials, noise, design concept, control, etc. Important subjects are selected in priority order. Namely, for the enhancement of efficiency, the following were taken up: three-dimensional fiber-reinforced large-size light-weight structure application technology, heat-resistant advanced-material structure damage-tolerant design technology, pseudo-vesicular structure transpiration cooling technology, etc. For the reduction of NOx emission, the paper took up technologies of environmentally optimization combustion, AI combustion control, and non-cooling combustor liner application. For the noise reduction, technologies of new inclination hole orientation noise absorbing structure material application, super noise control, and innovative CFD utilization low noise aerodynamics. Moreover, the results of fiscal 1997 were outlined to indicate the research in the next fiscal year. 14 figs., 10 tabs.}
place = {Japan}
year = {1998}
month = {Mar}
}