446
Views
1
CrossRef citations to date
0
Altmetric
Articles

Performance of a hybrid solar collector system in days with stable and less stable radiative regime

, &
Pages 40-53 | Received 09 Jul 2016, Accepted 14 Mar 2017, Published online: 05 Jun 2017

References

  • Andoh, H., P. Gbaha, B. Koua, P. Koffi, and S. Touré. 2010. “Thermal Performance Study of a Solar Collector Using a Natural Vegetable Fiber, Coconut Coir, as Heat Insulation.” Energy for Sustainable Development 14: 297–301.10.1016/j.esd.2010.09.006
  • Assari, M. R., H. Basirat Tabrizi, and I. Jafari. 2011. “Experimental and Theoretical Investigation of Dual Purpose Solar Collector.” Solar Energy 85: 601–608.10.1016/j.solener.2011.01.006
  • Azad, E. 2012. “Design, Installation and Operation of a Solar Thermal Public Bath in Eastern Iran.” Energy for Sustainable Development 16: 68–73.10.1016/j.esd.2011.10.006
  • Badescu, V. 1999. “Correlations to Estimate Monthly Mean Daily Solar Global Irradiation: Application to Romania.” Energy 24: 883–893.10.1016/S0360-5442(99)00027-4
  • Badescu, V. 2002. “A New Kind of Cloudy Sky Model to Compute Instantaneous Values of Diffuse and Global Solar Irradiance.” Theoretical and Applied Climatology 72: 127–136.10.1007/s007040200017
  • Badescu, V. 2008. “Optimal Control of Flow in Solar Collector Systems with Fully Mixed Water Storage Tanks.” Energy Conversion and Management 49: 169–184.10.1016/j.enconman.2007.06.022
  • Badescu, V., P. T. Landsberg, and A. De Vos. 1997. “Statistical Thermodynamic Foundation for Photovoltaic and Photothermal Conversion III: Application to Hybrid Solar Converters.” Journal of Applied Physics 81: 3692–3699.10.1063/1.365490
  • Badescu, V., and N. Rotar. 2012. “Implementation of the German Passivhaus Concept in Southeast Europe: Considerations for Romania.” Journal of Energy Engineering 138: 146–162.10.1061/(ASCE)EY.1943-7897.0000066
  • Badescu, V., and E. Zamfir. 1999. “Degree-days, Degree-hours and Ambient Temperature Bin Data from Monthly-average Temperatures (Romania).” Energy Conversion and Management 40: 885–900.10.1016/S0196-8904(98)00148-4
  • Baehr, D., and K. Stephan. 2006. Heat Transfer. 2nd ed. Berlin: Springer.
  • Bales, C., and T. Persson. 2003. “External DHW Units for Solar Combisystems.” Solar Energy 74: 193–204.10.1016/S0038-092X(03)00158-0
  • Buonomano, A., F. Calise, and G. Ferruzzi. 2013. “Thermoeconomic Analysis of Storage Systems for Solar Heating And Cooling Systems: A Comparison between Variable-volume And Fixed-volume Tanks.” Energy 59: 600–616.10.1016/j.energy.2013.06.063
  • Buonomano, A., F. Calise, G. Ferruzzi, and L. Vanoli. 2014. “Variable-volume Storage Systems for Solar Heating and Cooling System: A Case Study for Different Italian Climates.” Energy Procedia 48: 290–299.10.1016/j.egypro.2014.02.034
  • Csordas, G. F., A. Brunger, K. Hollands, and M. Lightstone. 1992. “Plume Entrainment Effects in Solar Domestic Hot Water Systems Employing Variable-flow-rate Control Strategies.” Solar Energy 49: 497–505.10.1016/0038-092X(92)90158-7
  • Duffie, J., and W. Beckman. 1991. Solar Engineering of Thermal Processes. New York: Wiley.
  • Ghassan, M., A. Mohannad, and K. Atif. 2011. “Solar Adsorption Refrigeration (SAR) System Modeling.” Energy Efficiency 4: 247–256.
  • Guarracino, I., A. Mellor, Nicholas J. Ekins-Daukes, and Christos N. Markides. 2016. “Dynamic Coupled Thermal-and-electrical Modelling of Sheet-and-tube Hybrid Photovoltaic/Thermal (PVT) Collectors.” Applied Thermal Engineering 101: 778–795.10.1016/j.applthermaleng.2016.02.056
  • Hamed, M., A. Fellah, and A. Ben Brahim. 2014. “Parametric Sensitivity Studies on the Performance of a Flat Plate Solar Collector in Transient Behavior.” Energy Conversion and Management 78: 938–947.10.1016/j.enconman.2013.09.044
  • Hasan, A. 1997. “Thermosyphon Solar Water Heaters: Effect of Storage Tank Volume and Configuration on Efficiency.” Energy Conversion and Management 38: 847–854.10.1016/S0196-8904(96)00099-4
  • Herrando, M., and C. N. Markides. 2016. “Hybrid PV and Solar-thermal Systems for Domestic Heat and Power Provision in the UK: Techno-economic Considerations.” Applied Energy 161: 512–532.10.1016/j.apenergy.2015.09.025
  • Herrando, M., C. N. Markides, and K. Hellgardt. 2014. “A UK-based Assessment of Hybrid PV and Solar-thermal Systems for Domestic Heating and Power: System Performance.” Applied Energy 122: 288–309.10.1016/j.apenergy.2014.01.061
  • Ihaddadene, R., N. Ihaddadene, M. Bey, and F. Z. Hamdibacha. 2014. “The Effects of Volumetric Flow Rate and Inclination Angle on the Performance of a Solar Thermal Collector.” Energy Conversion and Management 78: 931–937.
  • Jafari, I., A. Ershadi, E. Najafpour, and N. Hedayat. 2011. “Energy and Exergy Analysis of Dual Purpose Solar Collector.” World Academy of Science, Engineering and Technology 57: 259–261.
  • Jaisankar, S., T. Radhakrishnan, and K. Sheeba. 2009. “Experimental Studies on Heat Transfer and Friction Factor Characteristics of Thermosyphon Solar Water Heater System Fitted with Spacer at the Trailing Edge of Twisted Tapes.” Applied Thermal Engineering 29: 1224–1231.10.1016/j.applthermaleng.2008.06.009
  • Ji, J., Chenglong Luo, Tin-Tai Chow, Wei Sun, and Wei He. 2011. “Thermal Characteristics of a Building-integrated Dual-function Solar Collector in Water Heating Mode with Natural Circulation.” Energy 36: 566–574.10.1016/j.energy.2010.10.004
  • Kalogirou, S. 2009. Solar Energy Engineering: Processes and Systems. California: Elsevier.
  • Kays, W., M. Crawford, and B. Weigand. 2005. Convective Heat and Mass Transfer. 4th ed. Singapore: McGraw-Hill.
  • Khamis, M. 2013. “Thermal Analysis of Novel Minichannel-based Solar Flat-plate Collector.” Energy 60: 333–343.10.1016/j.energy.2013.08.013
  • Knudsen, S. 2002. “Consumers’ Influence on the Thermal Performance of Small SDHW Systems—Theoretical Investigations.” Solar Energy 73: 33–42.10.1016/S0038-092X(02)00018-X
  • Li, D. H W, and J. Lam. 2011. “An Analysis of Climatic Parameters and Sky Condition Classification.” Building and Environment 36: 435–445.
  • Ma, J., W. Sun, J. Ji, Y. Zhang, A. Zhang, and W. Fan. 2011. “Experimental and Theoretical Study of the Efficiency of a Dual-function Solar Collector.” Applied Thermal Engineering 31: 1751–1756.10.1016/j.applthermaleng.2011.02.019
  • Malhotra, A., H. Garg, and A. Palit. 1981. “Heat Loss Calculation of Flat Plat Solar Collectors.” Journal of Thermal Energy 2: 59–62.
  • Menzies, G. F., and Y. Roderick. 2010. “Energy and Carbon Impact Analysis of a Solar Thermal Collector System.” International Journal of Sustainable Engineering 3: 9–16.10.1080/19397030903362869
  • Mohajer, A., O. Nematollahi, M. Joybari, S. Hashemi, and M. Assari. 2013. “Experimental Investigation of a Hybrid Solar Drier and Water Heater System.” Energy Conversion and Management 76: 935–944.10.1016/j.enconman.2013.08.047
  • Nematollahi, O., P. Alamdari, and M. Assari. 2014. “Experimental Investigation of a Dual Purpose Solar Heating System.” Energy Conversion and Management 78: 359–366.10.1016/j.enconman.2013.10.046
  • Panna, L., S. Deshpandey, and P. Jena. 2015. “Thermal Performance of Packed Bed Heat Storage System for Solar Air Heaters.” Energy for Sustainable Development 29: 112–117.
  • Paulescu, M., and V. Badescu. 2011. “New Approach to Measure the Stability of the Solar Radiative Regime.” Theoretical and Applied Climatology 103: 459–470.10.1007/s00704-010-0312-9
  • Picón-Núñez, M., G. Martínez-Rodríguez, and A. Fuentes-Silva. 2014. “Design of Solar Collector Networks for Industrial Applications.” Applied Thermal Engineering 70: 1238–1245.10.1016/j.applthermaleng.2014.05.005
  • Pottler, K., C. Sippel, A. Beck, and J. Fricke. 1999. “Optimized Finned Absorber Geometries for Solar Air Heating Collectors.” Solar Energy 67: 35–52.10.1016/S0038-092X(00)00036-0
  • Prapas, D. E., I. Veliannis, A. Evangelopoulos, and B. A. Sotiropoulos. 1995. “Large DHW Solar Systems with Distributed Storage Tanks.” Solar Energy 55 (3): 175–184.10.1016/0038-092X(95)00042-P
  • Rangarajan, S., and M. Swaminathan. 1984. “Computation of Solar Radiation from Observations of Cloud Cover.” Solar Energy 32: 553–556.10.1016/0038-092X(84)90270-6
  • Razika, I., I. Nabila, B. Madani, and H. Zohra. 2014. “The Effects of Volumetric Flow Rate and Inclination Angle on the Performance of a Solar Thermal Collector.” Energy Conversion and Management 78: 931–937.10.1016/j.enconman.2013.09.051
  • Schnieders, J. 1997. “Comparison of the Energy Yield Predictions of Stationary and Dynamic Solar Collector Models and the Models’ Accuracy in the Description of a Vacuum Tube Collector.” Solar Energy 61: 179–190.10.1016/S0038-092X(97)00036-4
  • Sekar, M., M. Sakthivel, S. Satheesh, and C. Ramesh. 2012. “Effect of Solar Intensity on Efficiency of the Convection Solar Air Heater.” Journal of Renewable and Sustainable Energy 4: 1–6.
  • Solar Radiation Monitoring Station of the West University of Timisoara, Romania. Accessed September 2014. http://solar.physics.uvt.ro/srms
  • Varghese, P., and P. G. Jino. 2016. “Experimental Study on Cooling of Solar Collectors Using Air–Water Mixture.” Energy Procedia 91: 303–311.
  • Venkatesh, R., and W. Christraj. 2014. “Experimental Investigation of Multipurpose Solar Heating System.” Journal of Energy Engineering 141: 1–10. doi:10.1061/(ASCE)EY.1943-7897.0000166.
  • Venu, A., and P. Arun. 2013. “Simulation Studies on Porous Medium Integrated Dual Purpose Solar Collector.” International Journal of Renewable Energy Research 3: 114–120.
  • Winterton, R. 1998. “Where Did the Dittus and Boelter Equation Come from?” International Journal of Heat and Mass Transfer 41: 809–810.10.1016/S0017-9310(97)00177-4
  • World Meteorological Organization. 2014. “Guide to Meteorological Instruments and Methods of Observation.” WMO-No.8. http://www.wmo.int/.
  • Yan, G., Z. Qunli, F. Rui, L. Xinxing, and Y. Yong. 2013. “Effects of Thermal Mass and Flow Rate on Forced-circulation Solar Hot-water System: Comparison of Water-in-glass and U-pipe Evacuated-tube Solar Collectors.” Solar Energy 98: 290–301.
  • Ziqian, C., F. Simon, P. Bengt, F. Jianhua, and A. Elsa. 2012. “Efficiencies of Flat Plate Solar Collectors at Different Flow Rates.” Energy Procedia 30: 65–72.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.