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Heat transfer characteristics of fin tube type latent heat storage equipment
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Sasaguchi, K.1
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Heat transfer and interface motion during melting and solidification around a finned heat source/sink
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A.G. Bathelt, R. Viacanta, Heat transfer and interface motion during melting and solidification around a finned heat source/sink, Trans. ASME C 103 (1981) 720-726.
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Bathelt, A.G.1
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Heat transfer of latent thermal energy storage capsules arranged in alignment with fluid flow
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in Japanese
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T. Hirata, H. Ueda, M. Fujiwara, Heat transfer of latent thermal energy storage capsules arranged in alignment with fluid flow, Trans. JSME B 53 (1987) 204-215 (in Japanese).
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(1987)
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Hirata, T.1
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4
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Heat transfer problems of a cylindrical capsule for latent heat thermal energy storage
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in Japanese
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S. Itoh, Heat transfer problems of a cylindrical capsule for latent heat thermal energy storage, Trans. JSME B 50 (1984) 556-561 (in Japanese).
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Itoh, S.1
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Thermoanalytical investigation of fluoride composites for latent thermal storage
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Y. Takahashi et al., Thermoanalytical investigation of fluoride composites for latent thermal storage, Thermochim. Acta 183 (1991) 299-311.
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Takahashi, Y.1
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An experimental study on melting process of ice containing conductive solids
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Y. Hirasawa, T. Hamada, E. Takegoshi, An experimental study on melting process of ice containing conductive solids, Trans. JSME B 60 (1994) 2491-2496 (in Japanese).
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Hirasawa, Y.1
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7
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85069403107
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Effect of carbon fibers on thermal response with heat storage material
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J. Fukai et al., Effect of carbon fibers on thermal response with heat storage material, Trans. Chem. Eng. 23 (1997) 82-87 (in Japanese).
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8
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Heat conduction with phase change
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in Japanese
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Y. Katto, H. Nishimura, Heat conduction with phase change, Trans. JSME 26 (1972) 715-719 (in Japanese).
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(1972)
Trans. JSME
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Katto, Y.1
Nishimura, H.2
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84945310258
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Distribution of heat transfer coefficients around circular cylinders in crossflow at Reynolds numbers from 20 to 500
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E.R.G. Eckert, G. Soengen, Distribution of heat transfer coefficients around circular cylinders in crossflow at Reynolds numbers from 20 to 500, Trans. ASME 74 (1952) 343-347.
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(1952)
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Eckert, E.R.G.1
Soengen, G.2
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13
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79955595119
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A study on effective thermal conductivity of porous metals
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in Japanese
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E. Takegoshi et al., A study on effective thermal conductivity of porous metals, Trans. JSME B 58 (1992) 879-884 (in Japanese).
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(1992)
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Takegoshi, E.1
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14
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85069414635
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Melting of phase change fluid in heat storage capsules by convection
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K. Iwasa, Y. Shiina, T. Inagaki, Melting of phase change fluid in heat storage capsules by convection, J. Flow Visual. Jpn. 19 (1999) 41-45 (in Japanese).
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