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This book focuses on the latest developments in detonation engines for aerospace propulsion, with a focus on the rotating detonation engine (RDE). State-of-the-art research contributions are collected from international leading researchers devoted to the pursuit of controllable detonations for practical detonation propulsion. A system-level design of novel detonation engines, performance analysis, and advanced experimental and numerical methods are covered. In addition, the world's first successful sled demonstration of a rocket rotating detonation engine system and innovations in the development of a kilohertz pulse detonation engine (PDE) system are reported. Readers will obtain, in a straightforward manner, an understanding of the RDE & PDE design, operation and testing approaches, and further specific integration schemes for diverse applications such as rockets for space propulsion and turbojet/ramjet engines for air-breathing propulsion.
Detonation Control for Propulsion: Pulse Detonation and Rotating Detonation Engines provides, with its comprehensive coverage from fundamental detonation science to practical research engineering techniques, a wealth of information for scientists in the field of combustion and propulsion. The volume can also serve as a reference text for faculty and graduate students and interested in shock waves, combustion and propulsion.
Jiun-Ming LI is currently a Senior Research Scientist of the Temasek Laboratories, National University of Singapore and the leading researcher of the Hypersonics and Detonation Propulsion Group. Dr. Li studied for his B. Eng. degree at Naval Architecture and Marine Engineering at the National Cheng Kung University (NCKU) in Taiwan and received his M. Eng. and Ph.D. degrees in Institute of Aeronautics and Astronautics from NCKU. Before joining the Temasek Laboratories, he was Visiting Scholar at the Aerodynamics Research Center, the University of Texas at Arlington, U.S.A. His research interests are detonation physics and detonation propulsion applications, tunable diode laser absorption spectroscopy for fuel/combustion diagnostics, and studies on nanosecond pulse and AC DBD plasma actuators for flow control. He is a Member of AIAA.
In research, BC's interest are in:
(i) Fluid-structure interaction
(ii) Underwater shock and bubble dynamics
(iii) Compressible/Incompressible multi-medium flow
He is the PI of numerous externally funded projects including those from the Defense agencies like ONR/ONR Global and MINDEF (Singapore) to simulate/study the dynamics of underwater explosion bubble(s), flow supercavitation and detonation physics.
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