박사

판형 열교환기의 열적 성능 향상을 위한 핀의 형상 최적설계

전락원 2016년
논문상세정보
' 판형 열교환기의 열적 성능 향상을 위한 핀의 형상 최적설계' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 라틴하이퍼큐프 샘플링
  • 열전달
  • 크리깅 메타모델
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
111 0

0.0%

' 판형 열교환기의 열적 성능 향상을 위한 핀의 형상 최적설계' 의 참고문헌

  • 99) Shah, R. K., Dusan, P. and Sekulic, D. P., “Fundamental of Heat Exchanger Design”, John Wiely & Sons, New York, 2003.
  • 98) Das, P. K. and Ghosh, I., “Thermal design of multi-stream plate fin heat exchangers-a state-of-the-art review”, Heat Transfer Engineering, Vol. 33, No. 5, pp. 284-300, 2012
  • 97) Prasad, B., “Fin efficiency and mechanisms of heat exchange through fins in multi-stream plate-fin heat exchangers: development and application of a rating algorithm”, International Journal of Heat and Mass Transfer, Vol. 40, No. 18, pp. 4279-4288, 1997
  • 96) Wang, Z., Li, Y. and Zhao, M., “Experimental investigation on the thermal performance of multi-stream plate-fin heat exchanger based on genetic algorithm layer pattern design”, International Journal of Heat and Mass Transfer, Vol. 82, pp. 510-520, 2015
  • 95) Picon-Nunez, M., Torres-Reyes, E. and Gallegos-Munoz, A., “Surface selection and design of plateefin heat exchangers”, Applied Thermal Engineering, Vol. 19, pp. 917-931, 1999
  • 94) Picon-Nunez, M., Polley, G. T., and Medina-Flores, M., “Thermal design of multistream plate-fin heat exchangers”, Applied Thermal Engineering, Vol. 22, pp. 1643-1660, 2002
  • 93) Guo, K., Zhang, N. and Smith, R., “Optimisation of fin selection and thermal design of counter-current plate-fin heat exchangers”, Applied Thermal Engineering, Vol. 78, pp. 491-499, 2015
  • 92) Wang, S. M. Li, Y. Z., Wen, J. and Ma, Y. S., “Experimental investigation of header configuration on two-phase flow distribution in plate-fin heat exchanger”, International Journal of Heat and Mass Transfer, Vol. 37, pp. 116-120, 2006
  • 91) Wen, J., Li, Y. Z., Zhou, A. M., Zhang, K. and Wang, J., “PIV experimental investigation of entrance configuration on flow maldistribution in plate-fin heat exchanger”, Journal of Cryogenics, Vol. 46, pp. 37-48, 2006
  • 90) Jiao, A. J., Li,Y. Z., Chen, C. Z. and Zhang, R., “Experimental investigation on fluid flow maldistribution in plate-fin heat exchanger”, Heat Transfer Engineering, Vol. 24, pp. 25-31, 2005
  • 9) Pra, F., Tochon, P., Mauget, C., Fokkens, J. and Willemsen, S., “Promising designs of compact heat exchangers for modular HTRs using the Brayton cycle,” Nuclear Engineering and Design, Vol. 238, pp. 3160-3173, 2008
  • 89) Ranganayakulu, C. H. and Seetharamu, K. N., “The combined effects of longitudinal heat conduction flow nonuniformity and temperature nonuniformity in crossflow plate-fin heat exchanger”, International Journal of Heat and Mass Transfer, Vol. 26, pp. 669-678, 1999
  • 88) Zhang, Z. Mehendale, S. and Tian, J. J., “Experimental investigation of distributor configuration on flow maldistribution in plate-fin heat exchangers”, Applied Thermal Engineering, Vol. 85, pp. 111-123, 2015
  • 87) Yousefi, M., Enayatifar R., Darus, AN., et al., “Optimization of Plate-fin heat exchangers by an improved harmony search algorithm”, Applied Thermal Engineering, Vol. 50, No. 1, pp. 877-885, 2013
  • 86) Peng, H., Ling, X. and Wu, E., “An improved particle swarm algorithm for optimal design of plate-fin heat exchangers”, Ind Eng Chem Res, Vol. 49, No. 13, pp. 6144-6149, 2010
  • 85) Xie GN, Sunden B and Wang QW., “Optimization of compact heat exchangers by a genetic algorithm”, Applied Thermal Engineering, Vol. 28, No. 8, pp. 895-906, 2008
  • 84) Mishra M, Das PK and Sarangi SK, “Optimum design of cross flow plate-fin heat exchangers through genetic algorithm”, International Journal of Heat Exchangers, Vol. 5, No. 2, pp. 379-401, 2004
  • 83) Reneaume JM, Pingaud H. and Niclout N. “Optimization of plate fin heat exchangers:a continuous formulation”, Chem Eng Res, Vol. 78, No. 6, pp. 849-59, 2000
  • 82) Khoshvaght-Aliabadi, M., Khoshvaght, M. and Rahnama, P., "Thermal-hydraulic characteristics of plate-fin heat exchangers with corrugated/vortex-generator plate-fin (CVGPF)", Applied Thermal Engineering, Vol. 98, pp. 690–701, 2016
  • 81) Wang, Z., and Li, Y., "Irreversibility analysis for optimization design of plate fin heat exchangers using a multi-objective cuckoo search algorithm", Energy Conversion and Management, Vol. 101, pp. 126-135, 2015
  • 80) He, Y. L. Tao, W. Q., Song, F. Q., et al., “Three-dimensional numerical study of heat transfer characteristics of plain plate fin-and-tube heat exchangers from view point of field synergy principle”, Int. J. Heat Fluid Flow, Vol. 26, No. 3, pp. 459-473, 2005
  • 8) Ngo, L., Kato, Y., Nikitin, K. and Tsuzuki, N., “New Printed Circuit Heat Exchanger with S-shaped Fins for Hot water Supplier,” Experimental Thermaland Fluid Science, Vol. 30, No. 8, pp. 811-819, 2006
  • 79) Ben Saad, S., Clement, P. and Fourmigu, J. F., e, et al., “Single phase pressure drop and two-phase distribution in an offset strip fin compact heat exchanger”, Applied Thermal Engineering, Vol. 49, pp. 99-105, 2012
  • 78) Peng, H., Ling, X. and Li, J., “Numerical simulation and experimental verification on thermal performance of a novel fin-plate thermosyphon”, Applied Thermal Engineering, Vol. 40, pp. 181-188, 2012
  • 77) Bhowmik, H. and Lee, K. S., “Analysis of heat transfer and pressure drop characteristics in an offset strip fin heat exchanger”, Int. Commun. Heat Mass Transfer, Vol. 36, No. 3, pp. 259-263, 2009
  • 76) Lee, S. H., Yoon, W. J., Kim, Y. C., Lee, M. Y. and Yun, S. J., “Study on Performance Characteristics of Spiral Fin-Tube Evaporator Applied to Domestic Refrigerator-Freezers”, Trans. Korean Soc. Mech. Eng. B, Vol. 37, No. 3, pp. 205-212, 2013
  • 75) Lee, M. Y., Lee, S. H., Jung, H. W., Kim, Y. C. and Park, J. J., “Frosting Heat Transfer Characteristics of Evaporators Used for Household Refrigerators According to Fin Configuration”, Trans. Korean Soc. Mech. Eng. B, Vol. 34, No. 12, pp. 1071-1078, 2010
  • 74) Kang, T. H., Lee, M. Y., Kim, Y. C. and Yun, S. J., “Experimental Study on the Air-Side Heat Transfer Characteristics of a SpirallyCoiled Circular Fin-Tube Heat Exchanger According to Geometric Parameters”, Trans. Korean Soc. Mech. Eng. B, Vol. 34, No. 5, pp. 515-522, 2010
  • 73) Lee, M. Y., Kang, T. H., Kim, Y. C. and Park, J. J., “Analytical Study on the Heat Transfer Characteristics of a Spirally Coiled Circular Fin-Tube Evaporator Operated Under Non-Frosting Conditions”, Trans. Korean Soc. Mech. Eng. B, Vol. 35, No. 2, pp. 105-112, 2012
  • 72) OriginLab Version 8 Tutorial Guide (OriginPro 8.0), OriginLab Corporation, Northampton, 2008
  • 71) Seo, J. H., Bang, Y. M. and Lee, M. Y., “Investigation on the Performance of Special Purpose Automotive Air-Conditioning System Using Dual Refrigeration Cycle”, Trans. Korean Soc. Mech. Eng. B, Vol. 40, No. 4, pp. 213-220, 2016
  • 70) Peng, H. and Ling, X., “Numerical modeling and experimental verification of flow and heat transfer over serrated fins at low Reynolds number”, Exp. Therm. Fluid Sci., Vol. 32, No. 5, pp. 1039-1048, 2008
  • 7) Wasewar, K. L., Harunani, S., Atluri, P. and Kumar, N., "CFD Simulation of Flow Distribution in the Header of Plate-Fin Heat Exchangers," Chemical Engineering and Technology, Vol. 30, No. 10, p. 1340-1346, 2007
  • 69) Aslam Bhutta, M. M., Hayat, N., Bashir, M. H., et al., “CFD applications in various heat exchangers design: a review”, Applied Thermal Engineering, Vol. 32, pp. 1-12, 2012
  • 68) Liu, Z., Li, H., Shi, L. and Zhang, Y., "Numerical study of the air inlet angle influence on the aireside performance of plate-fin heat exchangers", Applied Thermal Engineering, Vol. 89, pp. 356-364, 2015
  • 67) Jia, R., Sunden, B. and Xuan, Y., “Design and optimization of compact heat exchangers,in: R.K. Shah (Ed.)”, Third International Conference on Compact HeatExchangers and Enhancement Technology for the Process Industries, Davos,Switzerland, pp. 135-142, 2001
  • 66) Hang, Y. and Ryozo, O., “Shape optimization of water-to-water plate-fin heat exchanger using computational fluid dynamics and genetic algorithm”, Applied Thermal Engineering, Vol. 80, pp. 310-318, 2015
  • 65) Hilbert, R. Janiga, G., Baron, R. and Theevenin, D., “Multi-objective shape optimization of a heat exchanger using parallel genetic algorithms”, International Journal of Heat Mass Transfer, Vol. 49, pp. 2567-2577, 2006
  • 64) Rao, R. V. and Patel, V. K., “Thermodynamic optimization of cross flow plate-fin heat exchanger using a particle swarm optimization algorithm”, International Journal of Thermal Science, Vol. 49, pp. 1712-1721, 2010
  • 63) Kim, M. S., Lee, J., Yook, S. J. and Lee, K. S., “Correlations and optimization of a heat exchanger with offset-strip fins”, International Journal of Heat Mass Transfer, Vol. 54, pp. 2073-2079, 2011
  • 62) Yang, Y. J. and Li, Y. Z., “General prediction of the thermal hydraulic performance for plate-fin heat exchanger with offset strip fins”, International Journal of Heat Mass Transfer, Vol. 78, pp. 860-870, 2014
  • 61) Mishra, M., Das, P. K. and Sarangi, S., “Second law based optimization of crossflow plate-fin heat exchanger design using genetic algorithm”, Applied Thermal Engineering, Vol. 29, pp. 2983-2989, 2009
  • 60) Khoshvaght-Aliabadi, M., Khoshvaght, M. and Rahnama, P., "Thermal-hydraulic characteristics of plate-fin heat exchangers with corrugated/vortex-generator plate-fin (CVGPF)", Applied Thermal Engineering, Vol. 98, pp. 690-701, 2016
  • 6) Jiao, A., Zhang, R. and Jeong, S., "Experimental Investigation of Header Configuration on Flow Maldistribution in Plate-fin Heat Exchanger," Applied Thermal Engineering, Vol.23, No. 10, pp. 1235-1246, 2003
  • 59) Lee, M. Y., Lee, H. S., Jang, Y. H. and Kim, Y. C., “Numerical Analysis on the Frosting Performance of a Fin-tube Evaporator for a Refrigerator”, Trans. Korean Soc. Mech. Eng. B, Vol. 32, No. 4, pp. 307-316, 2016
  • 58) Kays, W. M. and London, A. L., “Compact Heat Exchangers”, McGraw-Hill Book Co,New York, 1984.
  • 57) Kim, W. C., "Modern Statistical", YONUNGCHI MUNHWASA, Seoul, 2006
  • 56) Song, B. C., Jo, Y. J., Kim, J. H., Lee, K. H. and Park, Y. C., “Structure Optimization for a Lower Control Arm Using Sensitivity Analysis”, Journal of the Korean Society of Manufacturing Process Engineers, Vol. 7, No. 1, pp. 17-21, 2008
  • 55) Song, B. C., Bang, I. K., Han, D. S., Han, G. J. and Lee, K. H., “ Structural Design of a Container Crane Part-Jaw, Using Metamodels”, Journal of the Korean Society of Manufacturing Process Engineers, Vol. 7, No. 3, pp. 17-24, 2008
  • 54) Song, B. C. and Lee, K. H., “A Robust Design Using Approximation Model and Probability of Success”, Journal of the Korean Society of Manufacturing Process Engineers, Vol. 7, No. 3, pp. 3-11, 2008
  • 53) Seong, T. J., "Understanding and Applying Modern Basic Statistics", KYOYOOKBOOK, Paju, 2009
  • 52) Lee, K. H., “Optimization of a Driver-Side Aribag Using Kriging Based Approximation Model,” Journal of Mechanical Science and Technology, Vol.19, No. 1, pp. 116-126, 2005
  • 51) M. A. Meyers, D. J. Benson, O. Vohringer, B. K. Kad, Q. Xue and H. H. Fu, "Constitutive Description of Dynamic Deformation: Physically-based Mechanisms", Material Science and Engineering A322, pp. 194-216, 2000
  • 50) Ryu, J. S., Kim, M. S., Cha, K. J., Lee, T. H. and Choi, D. H., “Kriging Interpolation Methods in Geostatistics and DACE Model,” KSME International Journal, Vol. 16, No. 5, pp. 619-632, 2002
  • 5) Wen, J. and Li, Y., "Study of Flow Distribution and Its Improvement on the Header of Plate-fin Heat Exchanger," Cryogenics, Vol. 44, No. 11, pp. 823-831, 2004
  • 49) Martin, J. and Simpson, T., “Use of Adaptive Metamodeling for Design Optimization,” Proceedings of the 9th AIAA/ISSMO Symposium on Multidisciplinary Analysis and Optimization, Atlanta, Georgia, AIAA, Sep. 4-6, pp. 2167-2175(AIAA2002-5631), 2002
  • 48) Kim, J. K. and Lee, K. H., “A Structural Design of Microgyroscope Using Kriging Approximation Model”, Journal of the Korean Society of Manufacturing Process Engineers, Vol. 7, No. 4, pp. 149-154, 2008
  • 47) Lee, K. H. and Bang, I. K., “Structural Design of an Automotive Door Using the Kriging Models”, Journal of the Korean Society of Automotive Engineers, Vol. 15, No. 1, pp. 146-153, 2007
  • 46) Park, K. J., Lee, T. H., Lee, K. H., and Hwang, K. H., “A Review of Robust Design Methodologies”, Journal of the Korean Society of Mechanical Engineers, Vol. 28, No. 9, pp. 1368-1383, 2004
  • 45) Lee, K. H. and Park, K. J., “Robust Optimization in Discrete Design Space for Constrained Problems”, Journal of the Korean Society of Mechanical Engineers, Vol. 22, No. 5, pp. 728-737, 1998
  • 44) Guinta, A. and Watson, L., “A Comparison of Approximation Modeling Techniques: Polynomial Versus Interpolating Models,” Proceedings of the 7th AIAA/USAF/NASA/ISSMO Symposium on Multiisciplinary Analysis and Optimization, St. Louis, MO, AIAA, Vol. 2, Sep. 2-4, pp. 392-440(AIAA-98-4758), 1998
  • 43) Sacks, J., Welch, W. J., Mitchell, T. J. and Wynn, H. P., “Design and Analysis of Computer Experiments,” Statistical Science, Vol. 4, No. 4, pp. 409-435, 1989
  • 42) Cho, S. J., Byun, H. S. and Lee, T. H., "Selection Method of Global Model and Correlation Coefficients for Kriging Metamodel", Trans. of KSME(A), Vol. 33, No. 8, pp. 813-818, 2009
  • 41) Lee, T. H. and Kim, H. S., "Mean-Variance-Validation Technique for Sequential Kriging Metamodels", Trans. of KSME(A), Vol. 34, No. 5, pp, 541-547, 2010
  • 40) Huh, S. K., Lee, J. M. and Lee, T. H., "Sensitivity Validation Technique for Sequential Kriging Metamodel", Trans. of KSME(A) Vol. 36, No. 8, pp. 873-879, 2012
  • 4) Reneaume, J. M., Pingaud, H. and Niclout, N., "Optimization of Plate Fin Heat Exchangers:A Continuous Formulation," Trans. IChemE,Vol. 78, No. 6, pp. 849-859, 2000
  • 39) Ju, B. H., "Reliability Based Design Optimization Using a kriging Metamodel and a Moment Method", Korea Advanced Institute of Science and Technology, 2008
  • 38) Zuo, J., Li, Y. H., Cai, D. and Shi, D. Y., "Latin Hypercube Sampling Based Probabilistic Small Signal Stability Analysis Considering Load Correlation", The Korean Institute of Electrical Engineers, Vol. 9, No. 6, pp. 1832-1842, 2014
  • 37) Moon, M. A. and Kim, K. Y., "Shape Optimization of a Rotating Two-Pass Duct with a Guide Vane in the Turning Region", KOREAN SOCIETY FOR FLUID MACHINERY, Vol. 14, No. 1, pp. 66-74, 2011
  • 36) Lee, K. K. and Han, S. H., "Optimization of Wind Turbine Pitch Controller by Neural Network Model Based on Latin Hypercube", Trans. of the KSME(B), Vol. 36, No. 9, pp. 1065-1071, 2012
  • 35) White, F., "Viscous Fluid Flow", 2nd Edition, McGraw-Hill, Inc., 1991
  • 34) Sobol, I. M., "Global Sensitivity Indices forNonlinear Mathematical Models and their MonteCarlo Estimates," Mathematics and Computers inSimulation, Vol. 55, pp. 271-280, 2001.
  • 33) Shen, Y. L. and Duffie, N. A., "Comparison ofCombinatorial Rules for Machine Error Budgets,"Annals of the CIRP, Vol. 42, No. 1, pp. 619-622, 1993.
  • 32) Saltelli, A., "Making Best Use of ModelEvaluations to Compute Sensitivity Indices,"Computer Physics Communications, Vol. 145, pp. 280-297, 2002.
  • 31) Anflux(Advanced Numerical Fluid Expert), “Advanced CFD analysis of Aerodynamics Using CFX”, http://www.anflux.com
  • 30) Xiang, P. and Zhenyu, L., "Effect of inlet flow maldistribution on the passage arrangement design of multi-stream plate-fin heat exchanger", Applied Thermal Engineering, Vol. 103, pp. 67-76, 2016
  • 3) Kim, S. Y., Paek, J. W. and Kang, B. H., "Flow and Heat Transfer Correlations for Porous Fin in a Plate-fin Heat Exchanger," Trans.of the ASME, Vol. 122, No. 3, pp. 572-578, 2000
  • 29) Fahmy, M. F. M. and Nabih, H. I., "Impact of ambient air temperature and heat load variation on the performance of air-cooled heat exchangers in propane cycles in LNG plants – Analytical approach", Energy Conversion and Managemen, Vol. 121, pp. 22-35, 2016
  • 28) Myon, H. K., "CFD Introduction“, MUNUNDANG, Jongno, 2013
  • 27) ANSYS CFX-Solver Theory Guide Release 16.2, ANSYS. Inc., Canonsburg, 2015
  • 26) Myon, H. K., "CFD(Compuational Fluid namics)", MUNUNDANG, Jongno, 2014
  • 25) Seo, Y. G. and Kang, S. M., “Introduction to Analysis of Multiphysics”, HONGRUNG PUBLISHING COMPANY, 2013
  • 24) engel, Y. A. and Cimbala, J. M., "Fluid Mechanics Fundamentals and Applications", McGraw-Hill press, 2009
  • 23) Zuo, J., Li, Y. H., Cai, D. and Shi, D. Y., "Latin Hypercube Sampling Based Probabilistic Small Signal Stability Analysis Considering Load Correlation", The Korean Institute of Electrical Engineers, Vol. 9, No. 6, pp. 1832-1842, 2014
  • 22) Yoo, S. I., Kim, H. W., Jung, Y. K., Yoon, J. I., Park, S. H. and Kim, C. S., "Heat Transfer Characteristics of Plate-fin Heat Exchanger Using LNG FPSO Liquefaction Process", Journal of the Korean Society of Marine Engineering, Vol. 34, No. 6, pp. 798-805, 2010
  • 21) Kim, J. H., Choi, J. H. and Kim, K. Y., “Surrogate Modeling for Optimization of a Centrifugal Compressor Impeller,” International Journal of Fluid Machinery and Systems, Vol. 3, No. 1, pp. 29-38, 2010
  • 20) Goel, T., Haftka, R. T., Shyy, W. and Queipo, N. V., “Ensemble of Surrogates,” Structural and Multidisciplinary Optimization, Vol. 33, No. 3, pp. 199∼216, 2007
  • 2) Feldman, A., Marvilletb, C. and Lebouche, M., "Nucleate and Convective Boiling in Plate Fin Heat Exchangers," Int. J. Heat and Mass Transfer, Vol. 43, No. 18, pp. 3433-3442, 2000
  • 19) Queipo, N. V., Haftka, R. T., Shyy, W. and Goel, T., Vaidyanathan, R. and Tucker, P. K., “Surrogate-based Analysis and Optimization,” Progress in Aerospace Science, Vol. 41, pp. 1-28, 2005
  • 18) Lee, S. M. and Kim, K. Y., “Design Optimization of a Printed Circuit Heat Exchanger Using Surrogate Models”, Korean Society for Fluid Machinery, Vol 15, No. 5, pp. 56-62, 2011
  • 17) Yang, Y. J. and Li, Y. Z., “General prediction of the thermal hydraulic performance for plate-fin heat exchanger with offset strip fins”, Int. J. Heat Mass Transf. Vol 78, pp. 860-870, 2014
  • 16) Manglik, R. M. and Bergles, A. E., “Heat transfer and pressure drop correlations for the rectangular offset strip fin compact heat exchanger”, Exp. Thermal Fluid Sci. Vol 10, pp. 171-180, 1995
  • 15) Dubrovsky, E. V. and Vasiliev, V. Y., “Enhancement of convective heat transfer in rectangular ducts of interrupted surfaces”, Int. J. Heat. Mass Transf. Vol 31, pp. 807-818, 1988
  • 14) Mochizuki, S., Yagi, Y. and Yang, W. J., “Transport phenomena in stacks of interrupted parallel-plate surfaces”, Exp. Heat. Transf. Vol 1, pp. 127-140, 1987
  • 13) Wieting, A. R., “Empirical correlations for heat transfer and flow friction characteristics of rectangular offset-fin plate-fin heat exchangers”, Heat. Transf. Vol 30, 69-84
  • 12) Webb, R. L. and Joshi, H. M., “A Friction Factor Correlation for the Offset Fin Matrix”, Heat Transfer Hemisphere, 6, pp. 257-262. Washington, DC, 1982,
  • 11) Manson S. V., “Correlations of Heat Transfer Data and of Friction Data for Interrupted Plane Fins Staggered in Successive Rows“, NACA Tech. Note 2237, National Advisory Committee for Aeronautics, Washington, DC, December 1950
  • 103) Moon, M. A. and Kim, K. Y., "Shape Optimization of a Rotating Two-Pass Duct with a Guide Vane in the Turning Region", KOREAN SOCIETY FOR FLUID MACHINERY, Vol. 14, No. 1, pp. 66-74, 2011
  • 102) Lee, K. K. and Han, S. H., "Optimization of Wind Turbine Pitch Controller by Neural Network Model Based on Latin Hypercube", Trans. of the KSME(B), Vol. 36, No. 9, pp. 1065-1071, 2012
  • 101) Hesselgreaves J. E., “Compact heat exchangers: selection, design and operation”, Gulf Professional Publishing, 2001
  • 100) Wen, J., Yang, H. and Tong, X., "Optimization investigation on configuration parameters of serrated fin in plate-fin heat exchanger using genetic algorithm", International Journal of Thermal Sciences, Vol. 101, pp. 116-125, 2016
  • 10) Kim, I. H., No, H. C., Lee, J. I. and Jeon, B. G., “Thermal-hydraulic Behavior in a Deteriorated Turbulent Heat Transfer for a Gas-Cooled Reactor,” Nuclear Engineering and Design, Vol. 240, pp. 783-795, 2010
  • 1) ALPEMA, “The Standard of the Brazed Aluminium Plate-fin Heat Exchanger Manufacturer’s Association,” Second Edition, 2000