Productivity enhancement of solar still through heat transfer enhancement techniques in latent heat storage system: a review

被引:0
|
作者
Digvijay Singh
Dharam Buddhi
Alagar Karthick
机构
[1] Uttaranchal University,Division of Research and Innovation
[2] KPR Institute of Engineering and Technology,Renewable Energy Lab, Department of Electrical and Electronics Engineering
关键词
Solar desalination; Solar still; Latent energy storage; Phase change material (PCM); Nanoparticles; Distillate productivity;
D O I
暂无
中图分类号
学科分类号
摘要
Solar still is one of the sustainable and renewable technology which converts brackish or salty water into fresh water. The technology helps in CO2 mitigation, global warming effect, and the use of solar desalination contributes towards decarbonization, mitigation of CO2 and other adverse global warming effect, and it contributes to the sustainable development goals (SDG). However, due to the low production rate of the distillate, the performance of solar still gets affected. The phase change materials (PCMs) as latent heat storage systems can enhance the thermal performance of solar still (SS). Further, techniques like increasing the area of contact and thermal conductivity can be practiced to enhance the heat transfer in PCM-SS. The article reviewed the performance of various designs of solar still integrated with PCM. Furthermore, the effect of nanoparticles enhanced PCM-integrated solar still with different absorber designs and configurations was seen. Compared to conventional solar still (CSS), the heat transfer techniques in PCM’s SS can significantly improve the overall distillate productivity of Tubular SS by 218%, followed by single basin single slope SS 149%, pyramidal 125%, hemispherical 94%, and stepped 68%, respectively. In addition, the night time productivity was increased by 235%. Also, it was observed that in comparison to tubular PCM-SS, the nanodisbanded tubular PCM-SS increases the productivity by 68%, whereas in stepped solar still by using external condenser arrangement the productivity was increased by 48%. In single basin single slope, the nanoparticle disbanded PCMSS increases the productivity from 11 to 33%.
引用
收藏
页码:44 / 77
页数:33
相关论文
共 50 条
  • [41] Nanoparticles Enhanced Phase Change Material (NPCM) as Heat Storage in Solar Still Application for Productivity Enhancement
    Rufuss, D. Dsilva Winfred
    Iniyan, S.
    Suganthi, L.
    Davies, P. A.
    [J]. POWER AND ENERGY SYSTEMS ENGINEERING, (CPESE 2017), 2017, 141 : 45 - 49
  • [42] Numerical investigation on the heat transfer enhancement of a latent heat thermal energy storage system with bundled tube structures
    Liu, Jiajia
    Xu, Chao
    Ju, Xing
    Yang, Bingbin
    Ren, Yunxiu
    Du, Xiaoze
    [J]. APPLIED THERMAL ENGINEERING, 2017, 112 : 820 - 831
  • [43] Heat transfer enhancement in latent heat thermal energy storage system by using an external radial finned tube
    Zhang, YW
    Faghri, A
    [J]. JOURNAL OF ENHANCED HEAT TRANSFER, 1996, 3 (02) : 119 - 127
  • [44] Thermo-physical properties of heat storage material required for effective heat storage and heat transfer enhancement techniques for the solar cooking applications
    Goyal, Ravi Kumar
    EswaramoorthyMuthusamy
    [J]. SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 2023, 56
  • [45] A review of phase change material and performance enhancement method for latent heat storage system
    Tao, Y. B.
    He, Ya-Ling
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2018, 93 : 245 - 259
  • [46] Enhancement of latent heat energy storage system using nanomaterials for different applications: A review
    Sharma, Harish Kumar
    Singh, Koushlendra Kumar
    Tripathi, Chandra Bhushan
    Kumar, Satish
    Prasad, Shailesh
    Kumar, Kaushal
    Singhal, Piyush
    [J]. MATERIALS TODAY-PROCEEDINGS, 2020, 26 : 883 - 886
  • [47] Heat transfer enhancement of latent heat thermal energy storage with longitudinal stepped fins inside heat transfer fluid
    Lu, Yongwen
    Chi, Bowen
    Zuo, Hongyang
    Xu, Huaqian
    Zeng, Kuo
    Gao, Junjie
    Yang, Haiping
    Chen, Hanping
    [J]. JOURNAL OF ENERGY STORAGE, 2024, 87
  • [48] Performance Enhancement of Solar Latent Heat Thermal Storage System with Particle Dispersion - an Exergy Approach
    Jegadheeswaran, Selvaraj
    Pohekar, Sanjay D.
    Kousksou, Tarik
    [J]. CLEAN-SOIL AIR WATER, 2011, 39 (10) : 964 - 971
  • [49] Heat transfer enhancement using spiral fins in different orientations of Latent Heat Storage Unit
    Mehta, Digant S.
    Vaghela, Bhavesh
    Rathod, Manish K.
    Banerjee, Jyotirmay
    [J]. INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2021, 169
  • [50] Effect of graphite fin on heat transfer enhancement of rectangular shell and tube latent heat storage
    Nguyen, Thanh Phuong
    Ramadan, Zaher
    Hong, Sung Joo
    Park, Chan Woo
    [J]. INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 194