All Issue

2017 Vol.29, Issue 2 Preview Page
July 2017. pp. 121-136
Abstract
References
1
Bakos, G. C., Ioannidis, I., Sagas, N. F. T., Seftelis, I. (2001) Design, optimization, and conversion-efficiency determination of a line-focus parabolic-trough solar-collector (PTC). Appl Energy 68:43-50.
2
Basu, P., Kefa, C., Jestin, L. (1999) Boilers and burners (1st ed). Springer-Verlag NewYork, Inc., 175 Fifth Avenue, NewYork, NY10010, USA.
3
Duffie, J. A., Beckman, W. A. (1991) Solar engineering of thermal processes (2nd ed). John Wiley & Sons, Inc., NewYork.
4
Edenburn, M. W. (1976) Performance analysis of a cylindrical parabolic focusing collector and comparison with experimental results. Sol Energy 18:437-444.
5
Eskin, N. (1999) Transient performance analysis of cylindrical parabolic concentrating collectors and comparison with experimental results. Energy Convers Manag 40:175-191.
6
Euh, S. H., Kim, D. H. (2013) Simulation and model validation of a parabolic trough solar collector for water heating. Journal of The Korean Solar Energy Society 33:17-26.
7
Fiedler, F., Nordlander, S., Persson, T., Bales, C. (2006) Thermal performance of combined solar and pellet heating systems. Renewable Eneregy 31:73-88.
8
Garcia-Rodriguez, L., Gomez-Camacho, C. (1999) Thermodynamic analysis of a solar parabolic trough collector distillation plant. Desalination 122:215-224.
9
Garcia-Rodriguez, L., Palmero-Marrero, A. I., Gomez-Camacho, C. (1999) Application of direct steam generation into a solar parabolic trough collector to multieffect distillation. Desalination 125:139-145.
10
Godridge, A. M., Read, A. W. (1976) Combustion and heat transfer in large boiler furnaces. Prog Energy and Combust Sci 2:83-95.
11
Heppenstall, T. (1993) Assessment of the impact of catalytic surface combustion on heat transfer in a tube. Heat Recovery System and CHP 13(6):483-492.
12
Kalogirou, S. (1998) Use of parabolic trough solar energy collectors for sea-water desalination. Appl Energy 60:65-88.
13
Kalogirou, S., Lloyd, S., Ward, J. (1997) Modeling, optimization, and performance evaluation of a parabolic trough solar collector steam generation system. Sol Energy 60(1):49-59.
14
Kalogirou, S., Lloyd, S., Ward, J., Eleftheriou, P. (1994) Design and performance characteristics of a parabolic- trough solar-collector system. Appl Energy 47:341-354.
15
Kim, D. H., Jenkins, B. M., Rumsey, T. R., Yore, M. W., Kim, N. J. (2007b) Simulation and model validation of a horizontal shallow basin solar concentrator. Sol Energy 81:463-475.
16
Kim, D. H., Jenkins, B. M., Yore, M. W., Kim, N. J. (2007a) Salt recovery from agricultural drainage water using a liquid film solar-assisted concentrator – Simulation and model validation. Sol Energy 81:1314-1321.
17
Kreith, F., Kreider, J. F. (1978) Principles of solar engineering. McGRAW-HILL Book Company, USA.
18
Neshumayev, D., Ots, A., Laid, J., Tiikma, T. (2004) Experimental investigation of various turbulator inserts in gas-heated channels. Experimental Thermal and Fluid Ecience 28:877-886.
19
Pronobis, M. (2005) The influence of biomass co-combustion on boiler fouling and efficiency. Fuel 85(4):474-480.
20
Sartori, E. (1996) Solar still versus solar evaporator: A comparative study between their thermal behaviors. Sol Energy 56(2):199-206.
21
Tuma, M., Oman, J., Sekavcnik, M. (1999) Efficiency of a combined gas-steam process. Energy Convers Manag 40:1163-1175.
22
You, Y., Hu, E. J. (2002) A medium-temperature solar thermal power system and its efficiency optimization. Appl Therm Eng 22:357-364.
Information
  • Publisher :Agriculture and Life Sciences Research Institute, Kangwon National University
  • Publisher(Ko) :강원대학교 농업생명과학대학 농업생명과학연구원
  • Journal Title :Journal of Agricultural, Life and Environmental Sciences
  • Journal Title(Ko) :농업생명환경연구
  • Volume : 29
  • No :2
  • Pages :121-136
  • Received Date : 2017-07-05
  • Revised Date : 2017-07-14
  • Accepted Date : 2017-07-14