ナノ粒子バイポーラス構造膜上での液滴沸騰/蒸発特性
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Published in | 日本機械学会論文集 Vol. 81; no. 824; p. 14-00513 |
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Main Authors | , , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本機械学会
2015
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Subjects | |
Online Access | Get full text |
ISSN | 2187-9761 |
DOI | 10.1299/transjsme.14-00513 |
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Author | 杉浦, 鉄宰 鈴木, 康一 結城, 和久 |
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Author_xml | – sequence: 1 fullname: 結城, 和久 organization: 山口東京理科大学 – sequence: 1 fullname: 鈴木, 康一 organization: 山口東京理科大学 – sequence: 1 fullname: 杉浦, 鉄宰 organization: 東北大学大学院工学研究科 |
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References | Mori, S., Shen, L. and Okuyama, K., Effect of the cell size of a honeycomb porous plate attached to heated surface on the CHF in saturated pool boiling, Transactions of the Japan Society of Mechanical Engineers, Series B, Vol. 76, No. 771 (2010), pp. 1908-1916 (in Japanese). Yuki, K., Sugiura, T. and Suzuki, K., Application of nanoparticles-assembled bi-porous structures to power electronics cooling, Proceedings of the 5th International Conference on Porous Media and its Applications in Science and Engineering, (2014). The Japan Institute of Electronics Packaging, 58th Seminar on electronics packaging, The role of electronics packaging in power electronics, The Japan Institute of Electronics Packaging (2013), p.31 (in Japanese). Hidaka, S., Yamashita, A. and Takata, Y., Effect of contact angle on wetting limit temperature, Transactions of the Japan Society of Mechanical Engineers, Series B, Vol. 71, No. 709 (2005), pp. 2309-2315 (in Japanese). Yuki, K. and Suzuki, K., Heat transfer enhancement by nano-particles-assembled bi-porous structure, Proceedings of Thermal Engineering Conference '10, A214 (2010), pp.239-240 (in Japanese). You, S.M., Kim, J. and Kim, K.H., Effect of nanoparticles on critical heat flux of water in pool boiling heat transfer, Applied Physics Letters, Vol. 83, No. 16 (2003), pp. 3374-3376. Yuki, K., Sugiura, T. and Suzuki, K., Advanced high heat flux cooling technology (Boiling heat transfer enhancement by nano-particles-assembled bi-porous structure), Proceedings of JSMF Annual Meeting 2013, C114 (2013) (in Japanese). The Japan Society of Mechanical Engineer, Boiling heat transfer and cooling, Nihon Kougyou (1989), p. 214 (in Japanese). Kim, S.J., Bang, I.C., Buongiorno, J. and Hu, L.W., Surface wettability change during pool boiling of nanofluids and its effect on critical heat flux, International Journal of Heat and Mass Transfer, Vol. 50 (2007), pp.4105-4116. Das, S. K., Putra, N. and Roetzel, W., Pool Boiling of Nano-fluids on Horizontal Narrow Tubes, International Journal of Multi-Phase Flow, Vol. 29 (2003), pp.1237-1247. Sugiura, T., Yuki, K. and Suzuki, K., Boiling heat transfer enhancement by nano/micro scale of oxide-controlled Layer, Proceedings of 6th Conference of AESJ Tyugoku-Shikoku Branch (2012) (in Japanese). Khana, N, Tohb, K. C. and Pinjala, D., Boiling heat transfer enhancement using micro-machined porous channels for electronics cooling, Heat Transfer Engineering, Vol. 29, Issue 4 (2008), pp. 366-374. Semenic, T., Experimental study of biporous wicks for high heat flux applications, Ivan Catton, International Journal of Heat and Mass Transfer, Vol. 52 (2009), pp. 5113-5121. Mori, S. and Okuyama, K., Enhancement of the critical heat flux in saturated pool boiling using honeycomb porous media, Transactions of the Japan Society of Mechanical Engineers, Series B, Vol. 75, No. 758 (2009), pp. 1896-1901 (in Japanese). |
References_xml | – reference: Yuki, K., Sugiura, T. and Suzuki, K., Application of nanoparticles-assembled bi-porous structures to power electronics cooling, Proceedings of the 5th International Conference on Porous Media and its Applications in Science and Engineering, (2014). – reference: Das, S. K., Putra, N. and Roetzel, W., Pool Boiling of Nano-fluids on Horizontal Narrow Tubes, International Journal of Multi-Phase Flow, Vol. 29 (2003), pp.1237-1247. – reference: You, S.M., Kim, J. and Kim, K.H., Effect of nanoparticles on critical heat flux of water in pool boiling heat transfer, Applied Physics Letters, Vol. 83, No. 16 (2003), pp. 3374-3376. – reference: Yuki, K. and Suzuki, K., Heat transfer enhancement by nano-particles-assembled bi-porous structure, Proceedings of Thermal Engineering Conference '10, A214 (2010), pp.239-240 (in Japanese). – reference: Kim, S.J., Bang, I.C., Buongiorno, J. and Hu, L.W., Surface wettability change during pool boiling of nanofluids and its effect on critical heat flux, International Journal of Heat and Mass Transfer, Vol. 50 (2007), pp.4105-4116. – reference: The Japan Society of Mechanical Engineer, Boiling heat transfer and cooling, Nihon Kougyou (1989), p. 214 (in Japanese). – reference: Semenic, T., Experimental study of biporous wicks for high heat flux applications, Ivan Catton, International Journal of Heat and Mass Transfer, Vol. 52 (2009), pp. 5113-5121. – reference: Mori, S., Shen, L. and Okuyama, K., Effect of the cell size of a honeycomb porous plate attached to heated surface on the CHF in saturated pool boiling, Transactions of the Japan Society of Mechanical Engineers, Series B, Vol. 76, No. 771 (2010), pp. 1908-1916 (in Japanese). – reference: Hidaka, S., Yamashita, A. and Takata, Y., Effect of contact angle on wetting limit temperature, Transactions of the Japan Society of Mechanical Engineers, Series B, Vol. 71, No. 709 (2005), pp. 2309-2315 (in Japanese). – reference: Sugiura, T., Yuki, K. and Suzuki, K., Boiling heat transfer enhancement by nano/micro scale of oxide-controlled Layer, Proceedings of 6th Conference of AESJ Tyugoku-Shikoku Branch (2012) (in Japanese). – reference: Yuki, K., Sugiura, T. and Suzuki, K., Advanced high heat flux cooling technology (Boiling heat transfer enhancement by nano-particles-assembled bi-porous structure), Proceedings of JSMF Annual Meeting 2013, C114 (2013) (in Japanese). – reference: Khana, N, Tohb, K. C. and Pinjala, D., Boiling heat transfer enhancement using micro-machined porous channels for electronics cooling, Heat Transfer Engineering, Vol. 29, Issue 4 (2008), pp. 366-374. – reference: Mori, S. and Okuyama, K., Enhancement of the critical heat flux in saturated pool boiling using honeycomb porous media, Transactions of the Japan Society of Mechanical Engineers, Series B, Vol. 75, No. 758 (2009), pp. 1896-1901 (in Japanese). – reference: The Japan Institute of Electronics Packaging, 58th Seminar on electronics packaging, The role of electronics packaging in power electronics, The Japan Institute of Electronics Packaging (2013), p.31 (in Japanese). |
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SubjectTerms | Bi-porous structure Boiling heat transfer Droplet Electronics cooling Nanoparticle |
Title | ナノ粒子バイポーラス構造膜上での液滴沸騰/蒸発特性 |
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