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Chapter 6 • Solar Water Heaters  125



                   [25]  Chen Z, Gu M, Peng d: Heat transfer performance analysis of a solar flat-plate collector with an inte-
                    grated metal foam porous structure filled with paraffin, Appl Therm Eng 30:1967–1973, 2010.
                   [26]  Tarhan S, Sari A, yardim MH: Temperature distributions in trapezoidal built in storage solar water
                    heaters with/without phase change materials, Energy Convers Manag 47:2143–2154, 2006.
                   [27]  Al-Hinti I, Al-Ghandoor A, Maaly A, Abu naqeera I, Al-Khateeb Z, Al-Sheikh O: Experimental investi-
                    gation on the use of water-phase change material storage in conventional solar water heating system,
                    Energy Convers Manag 51:1735–1740, 2010.
                   [28]  Maydanik yF: loop heat pipes, Appl Therm Eng 25:635–657, 2005.
                   [29]  reay d, Kew P: Heat Pipe, 5th ed., UK, 2006, Elsevier.
                   [30]  Xu X, Wang S, Wang J, Xiao F: Active pipe-embedded structures in buildings for utilizing low-grade
                    energy sources: a review, Energy Build 42:1567–1581, 2010.
                   [31]  Butler d, Ku F, Swanson T: loop heat pipes and capillary pumped loops – an applications perspective,
                    Space Technol Appl Int Forum 608:49–56, 2002.
                   [32]  Wang Z, Zhao X: Analytical study of the heat transfer limits of a novel loop heat pipe system, Int J En-
                    ergy Res 35:404–414, 2011.
                   [33]  He W, Hong X, Zhao X, Zhang X, Shen J, Ji J: Operational performance of a novel heat pump assisted
                    solar facade loop-heat-pipe water heating system, Appl Energy 146:371–382, 2015.
                   [34]  Zhang X, Zhao X, Shen J, Hu X, liu X, Xu J: design, fabrication and experimental study of a solar pho-
                    tovoltaic/loop-heat-pipe based heat pump system, Sol Energy 97:551–568, 2013.
                   [35]  ling l, Zhang Q, yu y, Wu y, liao S: Study on thermal performance of micro-channel separate heat
                    pipe for telecommunication stations: Experiment and simulation, Int J Refrig 59:198–209, 2015.
                   [36]  Chang Fl, Hung yM: dielectric liquid pumping flow in optimally operated micro heat pipes, Int J Heat
                    Mass Tranfer 108:257–270, 2017.
                   [37]  deng y, Zhao y, Wang W, Zhenhua Q, lincheng W, dan y: Experimental investigation of performance
                    for the novel flat plate solar collector with micro-channel heat pipe array (MHPA-FPC), Appl Therm
                    Eng 54:440–449, 2013.
                   [38]  Zhu T-T, Zhao y-H, diao y-H, li F-F, Quan Z-H: Experimental investigation and performance evalua-
                    tion of a vacuum tube solar air collector based on micro heat pipe arrays, J Clean Prod 142:1–10, 2017.
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