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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 18, 1990 - Issue 1
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Original Articles

NUMERICAL STUDY ON FREEZING HEAT TRANSFER IN WATER-SATURATED POROUS MEDIA

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Pages 17-32 | Received 17 Jul 1989, Accepted 28 Dec 1989, Published online: 27 Apr 2007

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Zhiliang Wang, Libin Xin, Zemin Xu & Linfang Shen. (2017) Lattice Boltzmann simulation of heat transfer with phase change in saturated soil during freezing process. Numerical Heat Transfer, Part B: Fundamentals 72:5, pages 361-376.
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Weon-Keun Song. (2005) Thermal Transfer Analysis of Unpaved and Paved Freezing Soil Media Including Buried Pipelines. Numerical Heat Transfer, Part A: Applications 48:6, pages 567-583.
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Xiaoli Zhang & T. Hung Nguyen. (1994) NUMERICAL STUDY OF CONVECTION HEAT TRANSFER DURING THE MELTING OF ICE IN A POROUS LAYER. Numerical Heat Transfer, Part A: Applications 25:5, pages 559-574.
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Tien-Mo Shih & MichaelM. Ohadi. (1993) LITERATURE SURVEY ON NUMERICAL HEAT TRANSFER (1990-1991). Numerical Heat Transfer, Part A: Applications 23:2, pages 129-169.
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Igor Donskoy. (2023) Particle Agglomeration of Biomass and Plastic Waste during Their Thermochemical Fixed-Bed Conversion. Energies 16:12, pages 4589.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2017. Convection in Porous Media. Convection in Porous Media 539 593 .
Jiafei Zhao, Zihao Zhu, Yongchen Song, Weiguo Liu, Yi Zhang & Dayong Wang. (2015) Analyzing the process of gas production for natural gas hydrate using depressurization. Applied Energy 142, pages 125-134.
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Chunhong Ma, Xiaodong Wu & Shian Gao. (2013) Analysis and applications of a two-phase closed thermosyphon for improving the fluid temperature distribution in wellbores. Applied Thermal Engineering 55:1-2, pages 1-6.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2013. Convection in Porous Media. Convection in Porous Media 469 522 .
Shigeo Kimura, Atsushi Okajima, Takahiro Kiwata & Takahiro Fusaoka. (2006) Solidification in a water‐saturated porous medium when convection is present (response of solid‐liquid interface due to time‐varying cooling temperature). Heat Transfer—Asian Research 35:4, pages 294-308.
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S. KIMURA. 2005. Transport Phenomena in Porous Media III. Transport Phenomena in Porous Media III 399 417 .
Shigeo Kimura, Atsushi Okajima, Takahiro Kiwata & Taiki Nakamura. (2004) Characteristics of solidification and melting in the water‐saturated porous medium cooled from the top (response of solid–liquid interface due to time‐varying cooling temperature). Heat Transfer—Asian Research 33:5, pages 330-341.
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Yang Pan & CunZhen Wu. (2002) Numerical investigations and engineering applications on freezing expansion of soil restrained two-phase closed thermosyphons. International Journal of Thermal Sciences 41:4, pages 341-347.
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Wu Cun-zhen, Pan Yang & Qin Yue-hui. (2000) Numerical investigation on the phase change of water-saturated porous media with thermosyphon. Journal of Zhejiang University-SCIENCE A 1:2, pages 129-135.
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K. Tamma & T. Ouyang. (1998) A least squares formulation for solidification processes - Experimental validations and numerical simulations. A least squares formulation for solidification processes - Experimental validations and numerical simulations.
T. Ouyang & K. Tamma. (1996) Flow/thermal modeling and analysis of solidification processes with stabilization and adaptive time stepping features. Flow/thermal modeling and analysis of solidification processes with stabilization and adaptive time stepping features.
A.A. Samarskii, P.N. Vabishchevich, O.P. Iliev & A.G. Churbanov. (1993) Numerical simulation of convection/diffusion phase change problems—a review. International Journal of Heat and Mass Transfer 36:17, pages 4095-4106.
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Zhang Xiaoli. (1993) Natural convection and heat transfer in a vertical cavity filled with an ice—water saturated porous medium. International Journal of Heat and Mass Transfer 36:11, pages 2881-2890.
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Shoichiro Fukusako & Masahiko Yamada. (1993) Recent advances in research on water-freezing and ice-melting problems. Experimental Thermal and Fluid Science 6:1, pages 90-105.
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