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Featured researches published by Guan Bang Chen.


Combustion Science and Technology | 2006

DEVELOPMENT OF A CATALYTIC HYDROGEN MICRO-PROPULSION SYSTEM

Chih Peng Chen; Yei Chin Chao; Chih Yung Wu; Jung Chang Lee; Guan Bang Chen

In the present study, the feasibility of a catalytic hydrogen micro-propulsion system suitable for providing thrust for micro-satellite attitude control and orbit transfer is demonstrated and examined experimentally and numerically. The effects of major design and operational parameters of fuel/air flow rate, equivalence ratio and nozzle contraction ratio on the thruster performance are investigated. For ease of observation and numerical comparison, a platinum catalytic tube with an inner diameter of 500 µm and length 1 cm is used as the reactor and is tightly inserted into a quartz tube with a convergent nozzle made of quartz of different contraction ratios. For most of the cases tested in experiments, catalytic surface reaction occurs near entrance of the platinum tube due to the high diffusivity and high surface reaction rate of hydrogen. With increasing fuel concentration, the transition point from kinetic-controlled reaction to diffusion-controlled reaction moves further downstream. When the fuel velocity is increased, the hydrogen may not be consumed completely because of insufficient residence time. However, the unburned hydrogen has been heated, by upstream surface reactions, such that gas phase autoignition may occur in the recirculation zone just down stream of the platinum tube. The catalytic hydrogen micro-thruster developed in this study can self-sustain and provide a maximum thrust of 7 mN, which is suitable for precision attitude control of micro-and pico-satellites.


Applied Catalysis A-general | 2007

Effects of catalytic walls on hydrogen/air combustion inside a micro-tube

Guan Bang Chen; Chih Peng Chen; Chih Yung Wu; Yei Chin Chao


International Journal of Hydrogen Energy | 2008

Enhancement of hydrogen reaction in a micro-channel by catalyst segmentation

Guan Bang Chen; Yei Chin Chao; Chih Peng Chen


Combustion and Flame | 2012

Effects of catalyst segmentation with cavities on combustion enhancement of blended fuels in a micro channel

Yueh Heng Li; Guan Bang Chen; Fang Hsien Wu; T.S. Cheng; Yei Chin Chao


Chemical Engineering Journal | 2010

Enhancement of methane combustion in microchannels: Effects of catalyst segmentation and cavities

Yueh Heng Li; Guan Bang Chen; Hung W. Hsu; Yei Chin Chao


Energy | 2013

Combustion characteristics of a small-scale combustor with a percolated platinum emitter tube for thermophotovoltaics

Yueh Heng Li; Guan Bang Chen; T.S. Cheng; Yean Ling Yeh; Yei Chin Chao


Energy | 2014

A study of thermal pyrolysis for castor meal using the Taguchi method

Guan Lin Chen; Guan Bang Chen; Yueh Heng Li; Wen Teng Wu


International Journal of Hydrogen Energy | 2011

Effects of hydrogen peroxide on combustion enhancement of premixed methane/air flames

Guan Bang Chen; Yueh Heng Li; T.S. Cheng; Hung Wei Hsu; Yei Chin Chao


Energy | 2013

Chemical effect of hydrogen peroxide addition on characteristics of methane–air combustion

Guan Bang Chen; Yueh Heng Li; T.S. Cheng; Yei Chin Chao


Applied Thermal Engineering | 2017

Micro-explosion and burning characteristics of a single droplet of pyrolytic oil from castor seeds

Guan Bang Chen; Yueh Heng Li; Ching Hsien Lan; Hsien Tsung Lin; Yei Chin Chao

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Yei Chin Chao

National Cheng Kung University

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Yueh Heng Li

National Cheng Kung University

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Chih Peng Chen

National Cheng Kung University

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Chih Yung Wu

National Cheng Kung University

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Fang Hsien Wu

National Cheng Kung University

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Guan Lin Chen

National Cheng Kung University

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Wen Teng Wu

National Cheng Kung University

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Chin Yung Wu

National Cheng Kung University

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Ching Hsien Lan

National Cheng Kung University

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