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Dr. Amanullah Fatehmulla

أستاذ

Faculty, Department of Physics and Astronomy,

كلية العلوم
Building 4, Office No: 2A 56,
المنشورات
مقال فى مجلة
2025

Experimental investigation of carbon-based nano-enhanced phase change materials assimilated photovoltaic thermal system: energy, exergy and environmental assessment

.Background

Photovoltaic thermal systems (PVT) are advanced systems designed to simultaneously generate heat and electricity. However, their commercial performance has not yet reached optimal levels, with efficient thermal regulation being a major challenge that directly affects energy production and efficiency.

Methods

This research introduces an innovative approach to enhancing PVT system performance by integrating active water cooling with passive functionalized carbon-based nano-enhanced phase change materials (NePHACMs) as a cooling medium. Four configurations were studied: PV, PVT, PVT-PHACM, and PVT-NePHACM, with fluid flow rates of 0.4-0.8 L/min. Indoor experiments were conducted for PV and PVT systems, while TRNSYS simulations assessed PVT-PHACM and PVT-NePHACM systems. The exergy approach was used to evaluate the energy available for productive use and exergy loss and entropy generation have been analyzed to enhance the electrical energy and thermal storage of the system. Additionally, carbon mitigation and carbon credit gain for all configurations were discussed.

Significant Findings

The NePHACM formulation significantly enhanced the system's thermal conductivity by 104%, reduced PV temperature, and improved both electrical and thermal energy production. The system achieved an overall energy efficiency of 85.02% and an exergy efficiency of 12.37%. Additionally, the hybrid system demonstrated exceptional effectiveness in reducing CO2 emissions, highlighting NePHACM's potential to improve PVT system commercialization, especially for nocturnal applications.

رقم المجلد
167
مجلة/صحيفة
Journal of the Taiwan Institute of Chemical Engineers 
الصفحات
105835
مزيد من المنشورات
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This work aims to tune the structural and optical features of formamidinium lead triiodide (FAPbI) perovskite thin films using 4-hydroxyphenethylammonium iodide (4-HOPhEtNH2 HI) additive. (4-

بواسطة Fatehmulla, Amanullah, Abdullah A. Albassam, A. M. El-Naggar, Anwar Q. Alanazi, A. M. Kamal, Lama MA Almarshad, Ahmad A. Alsaleh, and A. M. Aldhafiri
2025
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The aim of the study is to develop a specialist dental capping agent that is particularly formulated to target pulp inflammation.

بواسطة Balamurugan, K. S., T. Sangeetha, E. Ranjith Kumar, I. Pradeep, Vasudeva Reddy Minnam Reddy, Woo Kyoung Kim, and Amanullah Fatehmulla
2025
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The world has a global issue in effectively utilizing and preserving fresh water owing to the significant rise in population and industrialization. Numerous strategies have been developed and put…

بواسطة Chinnasamy, Subramaniyan, Omar Bait, B. Kalidasan, and Amanullah Fatehmulla
2025