In Press

Articles in the issue of “In Press” are accepted for publication but not yet published in a regular issue. This makes the latest research results accessible to readers as quickly as possible. When published in a regular issue, they will be removed from the issue of “In Press”.

Table of Contents

Open Access
Article
Article ID: 11273
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by Muneeb ur Rehman, Umair Ahmad, Muhammad Tuoqeer Anwar, Muhammad Hamza Dawood, Hamza Aslam, Muhammad Salman Mustafa, Syed Khawar Hussain Shah, Mohamed Kchaou, Talha Younas, Tahir Rasheed
Therm. Sci. Eng. 2025, 0(0);   
Abstract

This study aims to investigate the enhancement in electrical efficiency of a polycrystalline photovoltaic (PV) module. The performance of a PV module primarily depends upon environmental factors like temperature, irradiance, etc. Mainly, the PV module performance depends upon the panel temperature. The performance of the PV module has an inverse relationship with temperature. The open circuit voltage of a module decreases with the increase in temperature, which consequently leads to the reduction in maximum power, efficiency, and fill factor. This study investigates the increase in the efficiency of the PV module by lowering the panel temperature with the help of water channel cooling and water-channel accompanied with forced convection. The two arrangements, namely, multi-inlet outlet and serpentine, are used to decrease the temperature of the polycrystalline PV module. Copper tubes in the form of the above arrangements are employed at the back surface of the panel. The results demonstrate that the combined technique is more efficient than the simple water-channel cooling technique owing to multi-heat dissipation and effective heat transfer, and it is concluded that the multi-inlet outlet cooling technique is more efficient than the serpentine cooling technique, which is attributed to uniform cooling over the surface and lesser pressure losses.

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Open Access
Review
Article ID: 11163
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by Muhammad Sohail Jahanzeb, Humaira Aslam, Syeda Hira Fatima, Asifa Naheed, Nazia Nusrat, Narjis Fatima, Amena Khaliq, Moazzam Ali, Mian Muhammad Waqas, Misbah Ullah Khan, Shehla Honey
Therm. Sci. Eng. 2025, 0(0);   
Abstract

Metal iodide materials as novel components of thermal biological and medical systems at the interface between heat transfer techniques and therapeutic systems. Due to their outstanding heat transfer coefficients, biocompatibility, and thermally activated sensitivity, metal iodides like silver iodide (AgI), copper iodide (CuI), and cesium iodide (CsI) are considered to be useful in improving the performance of medical instruments, thermal treatment processes, and diagnostics. They are examined for their prospective applications in controlling thermal activity, local heating therapy, and smart temperature-sensitive drug carrier systems. In particular, their application in hyperthermia therapy for cancer treatment, infrared thermal imaging for diagnosis, and nano-based drug carriers points to a place for them in precision medicine. But issues of stability of materials used, biocompatibility, and control of heat—an essential factor that would give the tools the maximum clinical value—remain a challenge. The present mini-review outlines the emerging area of metal iodides and their applications in medical technologies, with a special focus on the pivotal role of these materials in enhancing non-invasive, efficient, and personalized medicine. Over time, metal iodide-based systems scouted a new era of thermal therapies and diagnostic instrumentation along with biomedical science as a whole.

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