Fundamental performance of the disc-type thermomagnetic engine

被引:18
|
作者
Takahashi, Y [1 ]
Matsuzawa, T [1 ]
Nishikawa, M [1 ]
机构
[1] Osaka Univ, Suita, Osaka 565, Japan
关键词
thermomagnetic engine; temperature-sensitive magnetic material; exhaust heat recovery; thermomagnetic interaction;
D O I
10.1002/eej.10359
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper describes the fundamental performance of the disc-type thermomagnetic engine. The disc-type engine has been designed in order to decrease the eddy current braking loss. Performance characteristics such as power, torque, and loss have been measured and compared with those of the cylindrical engine under the condition of the same volume of temperature-sensitive magnetic material. The eddy current braking loss is 0.04 W, which corresponds to 1/30 the loss in the cylindrical engine at a rotation speed of 0.4 rps with maximum power output. The total loss including partial losses due to friction, the hydraulic effect, and the eddy current braking is 0.9 W in the disc-type engine and is 1.8 W in the cylindrical engine. The total loss in the disc-type engine is reduced to 50% of that in the cylindrical engine under the same conditions mentioned above. The maximum output power is 6.0 W at the rotation speed of 0.4 rps in the disc-type engine, which is about 1.6 times greater than that of the cylindrical engine. The eddy current braking loss in the disc-type engine is 0.7% of the value of the maximum output power, which is a negligible effect in this engine. The power per unit volume of the disc reaches a maximum value at a disc width of 40 mm. The clearance between discs was determined to be 1 mm in order to keep the working fluid flow conditions constant. The rotor thickness includes the clearance and the disc thickness. The power per unit rotor thickness also has a maximum value at a disc thickness of 0.5 mm. A thermomagnetic engine with the optimum conditions can be designed by using these results. When the permanent magnet fixes the size constant, the disc-type engine generates high output power in comparison with the cylindrical engine at the point of effective use of a magnetic field. (C) 2004 Wiley Periodicals, Inc.
引用
收藏
页码:26 / 33
页数:8
相关论文
共 50 条
  • [21] Field-force alignment of disc-type π systems
    Cristadoro, Anna
    Lieser, Guenter
    Raeder, Hans Joachim
    Muellen, Klaus
    CHEMPHYSCHEM, 2007, 8 (04) : 586 - 591
  • [22] Effect of Pole Head Profile on Torque Performance of a Disc-Type Multipole Magnetorheological Brake
    Shiao, Yaojung
    Bollepelly, Manichandra
    APPLIED SCIENCES-BASEL, 2023, 13 (14):
  • [23] Effects of oil leakage on thermal hydraulic characteristics and performance of a disc-type transformer winding
    Paramane, Sachin B.
    Van der Veken, Wim
    Sharma, Atul
    Codde, Joris
    APPLIED THERMAL ENGINEERING, 2016, 98 : 1130 - 1139
  • [24] A disc-type magneto-rheologic fluid damper
    祝长生
    Journal of Zhejiang University Science, 2003, (05) : 13 - 18
  • [25] BALANCING THIN-WALL DISC-TYPE COMPONENTS
    BELETSKI.DG
    RUSSIAN ENGINEERING JOURNAL-USSR, 1969, 49 (01): : 42 - &
  • [26] Simulation and optimization design of disc-type magnetorheological brake
    Li, Zhihua
    Yu, Jun
    Zeng, Ning
    Yuan, Longhao
    Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery, 2015, 46 (10): : 364 - 369
  • [27] KINEMATIC ASPECTS OF CUTTING WITH DISC-TYPE LATHE TOOLS
    BOBROV, VF
    IERUSALI.BE
    RUSSIAN ENGINEERING JOURNAL-USSR, 1969, 49 (06): : 68 - &
  • [28] A disc-type magneto-rheologtic fluid damper
    Zhu Chang-sheng
    Journal of Zhejiang University-SCIENCE A, 2003, 4 (5): : 514 - 519
  • [29] Electronic structure of large disc-type donors and acceptors
    Medjanik, K.
    Kutnyakhov, D.
    Nepijko, S. A.
    Schoenhense, G.
    Naghavi, S.
    Alijani, V.
    Felser, C.
    Koch, N.
    Rieger, R.
    Baumgarten, M.
    Muellen, K.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2010, 12 (26) : 7184 - 7193
  • [30] MINIMAL DISC-TYPE SURFACES EMBEDDED IN A PERTURBED CYLINDER
    Fall, Mouhamed Moustapha
    Mercuri, Carlo
    DIFFERENTIAL AND INTEGRAL EQUATIONS, 2009, 22 (11-12) : 1115 - 1124