Environmental Engineering Reference
In-Depth Information
References
1. Scarpa F, Taglia co G, Taglia co LA (2012) Classi cation proposal for room temperature
magnetic refrigerators. Int J Refrig 35:453
458
2. Bali M, Jandl S, Fournier P et al (2014) Anisotropy-enhanced giant reversible rotating
magnetocaloric effect in HoMn 2 O 5 single crystals. Appl Phys Lett 104:232402
3. Tesla N (1890) Pyromagneto-electric generator. US Patent 428.057
4. Edison TA (1892) Pyromagnetic generator. US Patent 476.983
5. Resler EL Jr, Rosensweig RE (1964) Magnetocaloric power. AIAA J 8(2):1418 - 1422
6. Resler EL Jr, Rosensweig RE (1967) Regenerative thermomagnetic power. J Eng Power
89:399 - 406
7. Brillouin L, Iskenderian HP (1948) Thermomagnetic generator. Federal Telecommunication
Laboratories, Nutley, pp 300 - 313
8. Van der Voort E (1969) Ideal magnetocaloric conversion. Appl Sci Res 20:98
-
114
9. Chilowsky C (1952) Thermomagnetic generator and refrigerator. US Patent 2.619.603
10. Elliott JF (1959) Thermomagnetic generator. J Appl Phys 11(30):1774
-
1777
11. Murakami K, Nemoto M (1972) Some experiments and considerations on the behavior of
thermomagnetic motors. IEEE Trans Mag 8:387
-
398
12. Kirol LD, Mills JI (1984) Thermomagnetic generator. In: Proceedings of intersociety energy
conversion engineering conference, vol 3, San Francisco, USA, 19 Aug 1984, pp 1361
-
1368
13. Kirol LD, Mills JI (1984) Numerical analysis of thermomagnetic generators. J Appl Phys 56
(3):824
-
828
14. Salomon D (1989) Thermomagnetic mechanical heat engines. J Appl Phys 65(9):3687
-
3693
15. Kitanovski A, Diebold M, Vuarnoz D et al (2008) Applications of magnetic power production
and its assessment: a feasibility study- nal report, Bern: Swiss Federal Of ce of Energy,
SFOE contract and project number: 101776/152190, p 33
16. Diebold M, Kitanovski A, Vuarnoz D et al (2007) Force, torque and energy of machines with
porous magnetisable wheels. In: Proceedings of second workshop on magnetostrictive
materials and magnetic refrigeration, Vienna, Austria, 13 - 15 Aug 2007, pp 15 - 16
17. Egolf PW, Kitanovski A, Diebold M et al (2009) Magnetic power conversion with machines
containing full or porous wheel heat exchangers. J Magn Magn Mater 321(7):758
-
762
18. Vuarnoz D, Kitanovski A, Diebold M et al (2009) Feasibility study of a power conversion
system utilizing industrial waste heat, Yverdon: HES-SO 2009; nal report project 19144
19. Vuarnoz D, Kitanovski A, Gonin C et al (2012) Thermodynamic and exergy efciencies of
magnetocaloric energy conversion utilising industrial waste heat. Int J Exergy 10(4):365
-
378
20. Vuarnoz D, Kitanovski A, Gonin C et al (2012) Quantitative feasibility study of
magnetocaloric energy conversion utilizing industrial waste heat. Appl Energ 100:229
-
237
-
21. Br
ck E, Tegus O, Buschow K (2006) Novel magnetocaloric materials: not only for cooling
applications. In: Proceedings of IEEE international magnetics conference, INTERMAG 2006,
p85
22. Br
ü
ck E (2012) Magnetocaloric materials not only for cooling applications FOM-BASF IPP
I18 2008 - 2012, industrial partnership programme I18, nal report, p 27
23. Christiaansen T, Br ü ck E (2014) Proof-of-concept
ü
static thermomagnetic generator
experimental device. Metall Mater Trans E 1e:36 - 40
24. Takahashi Y, Matsuzawa T, Nishikawa M (2004) Fundamental performance of the disc-type
thermomagnetic engine. Electr Eng Jpn 148(4):26 - 33
25. Takahashi Y, Yamamoto K, Nishikawa M (2006) Fundamental performance of triple magnetic
circuit type cylindrical thermomagnetic engine. Electr Eng Jpn 154(4):68
74
26. Karle A (2000) The thermomagnetic Curie-motor for the conversion of heat into mechanical
energy. Int J Therm Sci 40:834
-
842
27. Palmy C (2007) A thermo-magnetic wheel. Europhys News 38(3):32
-
34
-
Search WWH ::




Custom Search