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パルスレーザ駆動MH...

パルスレーザ駆動MHD発電機の発電特性に関する電磁流体シミュレーション

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パルスレーザ駆動MHD発電機の発電特性に関する電磁流体シミュレーション

Call No. (NDL)
Z16-793
Bibliographic ID of National Diet Library
026555675
Material type
記事
Author
松本 正晴ほか
Publisher
東京 : 電気学会
Publication date
2015-06
Material Format
Paper
Journal name
電気学会論文誌. A, 基礎・材料・共通部門誌 = IEEJ transactions on fundamentals and materials 135(6):2015.6
Publication Page
p.379-384
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Paper

Material Type
記事
Author/Editor
松本 正晴
髙木 成郎
奥野 喜裕
Alternative Title
Numerical Simulation on Power Generating Characteristics of a Pulsed-Laser-Driven MHD Generator
Periodical title
電気学会論文誌. A, 基礎・材料・共通部門誌 = IEEJ transactions on fundamentals and materials
No. or year of volume/issue
135(6):2015.6
Volume
135
Issue
6
Pages
379-384
Publication date of volume/issue (W3CDTF)
2015-06
ISSN (Periodical Title)
0385-4205
ISSN-L (Periodical Title)
0385-4205
Publication (Periodical Title)
東京 : 電気学会
Place of Publication (Country Code)
JP
Text Language Code
jpn
NDLC
Target Audience
一般
Holding library
国立国会図書館
Call No.
Z16-793
Data Provider (Database)
国立国会図書館 : 国立国会図書館雑誌記事索引
Bibliographic ID (NDL)
026555675
Bibliographic Record Category (NDL)
632

Digital

Summary, etc.
The plasma fluid flow with the propagation of laser-supported detonation (LSD) in a pulsed-laser-driven MHD electrical power generator has been examined with a time-dependent two-dimensional numerical simulation, and the performance has been evaluated for the different incident direction of laser and for various generator shapes. Both the direct propagation of LSD through the generator and the high temperature and pressure gas flow produced by LSD in the upper-outside region of the generator contribute to the power generation. The supersonic flow realized in the generator with a throat can lead a higher enthalpy extraction ratio with a longer duration time of power generation.
DOI
10.1541/ieejfms.135.379
Access Restrictions
インターネット公開
Data Provider (Database)
科学技術振興機構 : J-STAGE

Digital

Summary, etc.
The plasma fluid flow with the propagation of laser-supported detonation (LSD) in a pulsed-laser-driven MHD electrical power generator has been examined with a time-dependent two-dimensional numerical simulation, and the performance has been evaluated for the different incident direction of laser and for various generator shapes. Both the direct propagation of LSD through the generator and the high temperature and pressure gas flow produced by LSD in the upper-outside region of the generator contribute to the power generation. The supersonic flow realized in the generator with a throat can lead a higher enthalpy extraction ratio with a longer duration time of power generation.
Is Referenced By
パルスレーザ駆動MHD発電のプラズマ挙動と発電特性
References
Electron-ion three-body recombination coefficient of argon
Laser-driven in-tube accelerator
Numerical Study on the Performance in a Pulsed Heat Source High Temperature Inert Gas Plasma MHD Electrical Power Generator
Plasma generation using high-power millimeter-wave beam and its application for thrust generation
Electron-Ion Recombination in Dense Plasmas
Hypersonic MHD Propulsion System Integration for the Mercury Lightcraft
Feasibility of laser-driven repetitively-pulsed MHD generators
Correct values for high-frequency power absorption by inverse bremsstrahlung in plasmas
Energy transfer from a laser pulse to a blast wave in reduced-pressure air atmospheres
Influence of the focusing <i>f</i> number on the heating regime transition in laser absorption waves
数値計算によるパルスレーザー駆動MHD発電の基礎的検討
Numerical Analysis on Thermal Non-equilibrium and Multidimensional Laser-Supported Detonation Wave Propagating through a Diatomic Gas
Data Provider (Database)
国立情報学研究所 : CiNii Research
Bibliographic ID (NDL)
026555675
NAID
130005072586