A comparative study on the water treatment effects of different advanced oxidation technologies in a water treatment system based on double-sided photovoltaic-thermoelectric generators DOI

Jiahong Ji,

Yuanzhi Gao, Xiaosong Zhang

и другие.

Renewable Energy, Год журнала: 2025, Номер unknown, С. 122412 - 122412

Опубликована: Янв. 1, 2025

Язык: Английский

Thermodynamic and exergoeconomic analyses of a novel biomass-fired combined cycle with solar energy and hydrogen and freshwater production in sports arenas DOI
Shayan Sharafi laleh, Ali Safarpour,

Arash Shahbazi Shahrak

и другие.

International Journal of Hydrogen Energy, Год журнала: 2024, Номер 59, С. 1507 - 1517

Опубликована: Фев. 16, 2024

Язык: Английский

Процитировано

38

Solar photovoltaic/thermal(PV/T)systems with/without phase change materials (PCMs): A review DOI
Shen Ying, Xuelai Zhang, Yuchen Wu

и другие.

Journal of Energy Storage, Год журнала: 2024, Номер 89, С. 111582 - 111582

Опубликована: Апрель 18, 2024

Язык: Английский

Процитировано

27

A review of photovoltaic/thermal system cooled using mono and hybrid nanofluids DOI Creative Commons

Hussain Madhi,

Sattar Aljabair, Ahmed Abdulnabi Imran

и другие.

International Journal of Thermofluids, Год журнала: 2024, Номер 22, С. 100679 - 100679

Опубликована: Апрель 27, 2024

Язык: Английский

Процитировано

25

Optimization of a thermal energy storage system enhanced with fins using generative adversarial networks method DOI Creative Commons
Seyed Ali Abtahi Mehrjardi, Alireza Khademi, Mahyar Fazli

и другие.

Thermal Science and Engineering Progress, Год журнала: 2024, Номер 49, С. 102471 - 102471

Опубликована: Фев. 18, 2024

Язык: Английский

Процитировано

19

Thermal energy storage using phase change material for solar thermal technologies: A sustainable and efficient approach DOI
Pushpendra Kumar Singh Rathore, Basant Singh Sikarwar

Solar Energy Materials and Solar Cells, Год журнала: 2024, Номер 277, С. 113134 - 113134

Опубликована: Авг. 30, 2024

Язык: Английский

Процитировано

17

High density polyethylene with phase change materials for thermal energy management DOI Open Access

Sereno Sacchet,

Francesco Valentini, Caterina Rizzo

и другие.

Energy Materials, Год журнала: 2025, Номер 5(4)

Опубликована: Янв. 25, 2025

Phase change materials (PCMs) represent an innovative solution to passively manage device temperature or store heat, taking advantage of the material phase transitions. In this work, attitude high density polyethylene (HDPE) for shape stabilization three selected organic PCMs with a melting close 55 °C was investigated. Composites PCM content in range 50-61 wt.% were produced by melt compounding, and lab-scale panels compression molding. The ability supporting olefinic matrix stabilize contain leakage verified compared through thermo-mechanical characterization. Moreover, expanded graphite introduced according novel under-vacuum impregnation process order provide extra stabilizing contribution, resulting outstanding thermal conductivity increase up 1.6 W/m·K, maximized enthalpy 112 J/g. Besides stability, HDPE also improves mechanical properties PCM-based composites, as documented detailed extended characterization cold hot tests, flexural Vicat shore A tests. management effect is quantified infrared thermography, proportionally relating lags melting/crystallization investigated products. view applications 30-60 °C, main different are summarized compared.

Язык: Английский

Процитировано

2

Experimental study of solar PV/T panel to increase the energy conversion efficiency by air cooling DOI

Malagouda Patil,

Alur Sidramappa,

Sunil Kumar Shetty

и другие.

Materials Today Proceedings, Год журнала: 2023, Номер 92, С. 309 - 313

Опубликована: Янв. 1, 2023

Язык: Английский

Процитировано

24

High-directional thermally conductive stearic acid/expanded graphite - Graphene films for efficient photothermal energy storage DOI

Zhaofeng Dai,

Guiling Zhang,

Yufei Xiao

и другие.

Chemical Engineering Journal, Год журнала: 2024, Номер 484, С. 149203 - 149203

Опубликована: Фев. 7, 2024

Язык: Английский

Процитировано

15

Enhancing drinkable water production in conical solar distillers: Comparative analysis of magnet fin heights DOI
Mohammed El Hadi Attia, A.E. Kabeel, M.A. Elazab

и другие.

Solar Energy, Год журнала: 2024, Номер 272, С. 112476 - 112476

Опубликована: Апрель 1, 2024

Язык: Английский

Процитировано

14

Cutting-edge developments in active and passive photovoltaic cooling for reduced temperature operation DOI Creative Commons
Amir Sohail, Mohd Syakirin Rusdi, Muhammad Waseem

и другие.

Results in Engineering, Год журнала: 2024, Номер 23, С. 102662 - 102662

Опубликована: Авг. 2, 2024

Considering the substantial increase in deployment, photovoltaics are hovering to emerge as predominant worldwide energy producer foreseeable future. Nevertheless, operating efficiency and endurance of photovoltaic (PV) systems significantly stalled by heightened temperatures encountered solar radiation. This article comprehensively analyzes novel active passive PV cooling techniques, encompassing their operational mechanisms, efficiency, eventual implementations devices. Extensive scholarly research has examined various methods techniques optimize system efficiency. The primary goal this effort is compile a reference for future researchers specialists reviewing comparing results current investigations. study also comprised bibliometric analysis that provides valuable insights into influence on incorporating systems. These play decisive role recognizing new trends progressing field towards more efficient systems, hence advancing upcoming development. Furthermore, an extensive classification assessment every conceivable technology was furnished facilitate comparison among diverse methodologies. structured tabular manner, containing following details each technique: panel type, method, fluid or substance used, category, average temperature reduction resulting from cooling, enhanced electrical indicates enhance with potential increases varying 0.28 % 97.6 %. Additionally, application assessed decrease panel's operative temperature, ranging 0.8 °C 39.9 °C.

Язык: Английский

Процитировано

14