Three kinds of rotor profiles of a radial inflow millimeter-scale turbine with a rotor diameter of 10 mm were designed and analyzed with numerical simulation. Their aerodynamic performances were compared and a suitable basic profile was selected. Then redesign and optimization of the profile selected were performed to enhance the total-static efficiency. The results indicate that the profile whose camber line turns to the negative rotating direction is the best one and can be adapted to the higher rotational speed with higher shaft power and efficiency. The leaving velocity loss of the millimeter-scale turbine increases with the increase of expansion ratio. The lower expansion ratio should be chosen if the high total-static efficiency is mainly considered in the design process. The ratio of inlet area to exit area of the diffuser has significant influence on the overall performances of millimeter-scale turbines
and the maximum total-static efficiency will be achieved when the area ratio is around 1:1.
关键词
Keywords
references
EPSTEIN H A. Millimeter-scale, MEMS gas turbine engines [J]. ASME Journal of Engineering for Gas Turbines and Power, 2004, 126(2):205-226.
FRECHETTE L G, JACOBSON S A, BREUER K S, et al. Demonstration of microfabricated high-speed turbine supported on gas bearings[C]∥Solid-State Sensor and Actuator Workshop. Hilton Head Island, South Carolina, USA: Transducers Research Foundation, 2000:43-47.
KANG S, LEE S J, PRINZ F B. Size does matter, the pros and cons of miniaturization[J].ABB Review, 2001, 1(2): 54-62.
PEIRS J, REYNAERTS D, VERPLAETESN F, et al. A microturbine for electric power generation[J]. Sensors and Actuators: Physical, 2004, 113(1):86-93.
ISOMURA K, MURAYAMA M, YAMAGUCHI H, et al. Component development of micromachined gas turbine generators[C]∥Technical Digest Power MEMS 2002. Piscataway, New Jersey, USA:IEEE, 2002:32-35.
MATSUO E, YOSHIKI H, NAGASHIMA T, et al. Development of ultra gas turbines [J] Journal of the Japan Institute of Energy, 2005,84(3):192-199.
MATSUURA K, KATO C, YOSHIKI H, et al. Prototyping of small-sized two-dimensional radial turbines[C]∥Proceedings of the International Gas Turbine Congress 2003. Tokyo, Japan:IGTC, 2003:1-7.
KANG S. Numerical investigation of a high speed centrifugal compressor impeller[C]∥Proceedings of ASME Turbo Expo 2005. Reno-Tahoe, Nevada, USA:ASME, 2005:813-821.
ISOMURA K, MURAYAMA M, TERAMOTO S, et al. Experimental verification of the feasibility of a 100 W class micro-scale gas turbine at an impeller diameter of 10 mm[J]. Journal of Micromechanics and Microengineering, 2006, 16(9):254-261.
Study of the Mechanism of Electrostatic Accumulation and Current Density Distribution Characteristics During Liquid Hydrogen Pipeline Transportation
Numerical Simulation of Space Charge Distribution Characteristics of Polyimide Materials under X-Ray Irradiation
Numerical Simulation Study on Geothermal Extraction Characteristics of Supercritical CO2 in Heterogeneous Fractures
Action Mechanism of Heat Transfer between the Working Medium and the Impeller on Aerodynamic Performance and Flow Characteristics of Radial Inflow Turbines with Supercritical Carbon Dioxide
Analysis of the Attached Vortex Model for the Flow Characteristics of Wing Near-Field Wakes
Related Author
SUN Wenhao
LIU Hongbao
WANG Lei
QING Ziyou
LI Zhuolun
MA Yuan
LI Yanzhong
ZHONG Hui
Related Institution
School of Energy and Power Engineering,Xi’an Jiaotong University
Aerospace System Engineering Shanghai
School of Electrical Engineering,Xi’an Jiaotong University
Northwest Institute of Nuclear Technology
Institute of Electronic Engineering,China Academy of Engineering Physics