Concept of optimum basin thickness in heat exchanger–assisted solar stills
暂无分享,去创建一个
[1] R. Das,et al. Evaluation of the Effectiveness of Base Insulation on the Productivity of a Packed Bed Solar Air Heater , 2022, Journal of Thermal Science and Engineering Applications.
[2] R. Das,et al. A fully analytical model of a box solar cooker with sensible thermal storage , 2022, Solar Energy.
[3] H. Cauchie,et al. Theoretical and experimental investigation on a novel design of wick type solar still for sustainable freshwater production , 2022, Applied Thermal Engineering.
[4] Jun Lu,et al. Numerical investigation of the working mechanisms of solar chimney coupled with earth-to-air heat exchanger (SCEAHE) , 2021, Solar Energy.
[5] R. Das,et al. Performance analysis of a solar still driven by a packed bed thermal storage tank during off-sunshine period , 2021, Journal of Energy Storage.
[6] A. Afzal,et al. Energy and exergy analysis of conventional acrylic solar still with and without copper fins , 2021, Environmental Science and Pollution Research.
[7] M. Murugan,et al. A review on recent developments of solar stills to enhance productivity using nanoparticles and nano-PCM , 2021, International Journal of Green Energy.
[8] Subbarama Kousik Suraparaju,et al. An experimental study on eco-friendly and cost-effective natural materials for productivity enhancement of single slope solar still , 2021, Environmental Science and Pollution Research.
[9] R. Das,et al. Transient study of a solar pond under heat extraction from non-convective and lower convective zones considering finite effectiveness of exchangers , 2021, Solar Energy.
[10] Dhananjay R. Mishra,et al. Experimental analysis of double slope solar still augmented with dye, pebbles and metal chips , 2021, Environmental Science and Pollution Research.
[11] M. Sabzpooshani,et al. Theoretical assessment of a solar still system equipped with Nano-phase change materials , 2020 .
[12] M. Eltawil,et al. Enhancing the double-slope solar still performance using simple solar collector and floatable black wicks , 2020, Environmental Science and Pollution Research.
[13] U. Wankhede,et al. Investigation of temperature development in salinity gradient solar pond using a transient model of heat transfer , 2020 .
[14] A. Yadav,et al. Experimental comparative study on a solar still combined with evacuated tubes and a heat exchanger at different water depths , 2020, International Journal of Sustainable Engineering.
[15] K. Jafarpur,et al. Effect of design parameters on performance of passive basin solar stills considering instantaneous ambient conditions: A transient CFD modeling , 2020 .
[16] Harender,et al. Performance analysis of specially designed single basin passive solar distillers incorporated with novel solar desalting stills: A review , 2019, Solar Energy.
[17] H. Hassan,et al. Experimental investigation on the impact of thermal energy storage on the solar still performance coupled with PV module via new integration , 2019, Solar Energy.
[18] K. Modi,et al. Experimental performance evaluation of single basin dual slope solar still with circular and square cross-sectional hollow fins , 2019, Solar Energy.
[19] A. Mande,et al. Enhanced solar still productivity using transparent walls with an integral trough and organic porous absorber material , 2018, International Journal of Green Energy.
[20] R. Dhivagar,et al. Thermodynamic and water analysis on augmentation of a solar still with copper tube heat exchanger in coarse aggregate , 2018, Journal of Thermal Analysis and Calorimetry.
[21] M. Al-Nimr,et al. A solar hybrid thermoelectric generator and distillation system , 2018, International Journal of Green Energy.
[22] Saeed Zeinali Heris,et al. Nanofluids effects on the evaporation rate in a solar still equipped with a heat exchanger , 2017 .
[23] A. E. Kabeel,et al. Experimental investigation of corrugated absorber solar still with wick and reflectors , 2016 .
[24] K. Srithar,et al. Effect of Cover Plate Transmittance on Solar Still Performance , 2015 .
[25] K. Kalidasa Murugavel,et al. The effect of the water depth on the productivity for single and double basin double slope glass solar stills , 2015 .
[26] Ugur Atikol,et al. Feasibility Assessment of Basin Solar Stills , 2015 .
[27] S. Aboul-Enein,et al. Thermal performance of an active single basin solar still (ASBS) coupled to shallow solar pond (SSP) , 2011 .
[28] K. Srithar,et al. Integrated performance of stepped and single basin solar stills with mini solar pond , 2009 .
[29] Ahmed A. Al-Ghamdi,et al. Thermal performance of a single basin solar still with PCM as a storage medium , 2009 .
[30] A. A. El-Sebaii,et al. Thermal performance of a triple-basin solar still , 2005 .
[31] Ali A. Badran,et al. A solar still augmented with a flat-plate collector , 2005 .
[32] Mousa K. Abu-Arabi,et al. MODELLING AND PERFORMANCE ANALYSIS OF A REGENERATIVE SOLAR DESALINATION UNIT , 2004 .
[33] A. A. Mabrouk,et al. Enhancement of solar still productivity using floating perforated black plate , 2002 .
[34] A. A. El-Sebaii,et al. Single basin solar still with baffle suspended absorber , 2000 .
[35] Bilal Akash,et al. Experimental evaluation of a single-basin solar still using different absorbing materials , 1998 .
[36] G. N. Tiwari,et al. Parametric study of an inverted absorber double-effect solar distillation system , 1997 .
[37] Y. P. Yadav. Performance analysis of a solar still coupled to a heat exchanger , 1991 .
[38] Y. P. Yadav,et al. Parametric investigations on a basin type solar still , 1991 .
[39] G. N. Tiwari,et al. Effect of water depth on the transient performance of a double basin solar still , 1991 .
[40] G. N. Tiwari,et al. Use of waste hot water in double slope solar still through heat exchanger , 1990 .