Efficiency Enhancement of Parabolic through Solar Collector using ZnO/Water Nanofluid

Authors

  • Adnan Mohammed Hussien Technical College of Engineering Kirkuk, Northern Technical University, Iraq
  • Hussein Hayder Mohammed Ali Technical College of Engineering Kirkuk, Northern Technical University, Iraq
  • Zaynab Ismail Abdullah Technical College of Engineering Kirkuk, Northern Technical University, Iraq
  • Ali Azeez Ali Imam Ja'afar Al-Sadiq University, Kirkuk, Iraq

DOI:

https://doi.org/10.37934/armne.27.1.8899

Keywords:

Parabolic solar collector, nanofluid, efficiency, ZnO/water

Abstract

In recent years, the increased demand for energy has contributed to an increase in the number of studies focusing on renewable energy sources. The empirical and theoretical efficiencies of a parabolic trough solar collector are investigated. Fluid includes 1% and 2% volume concentrations of ZnO/water nanofluid and mass flow rates of 0.15 to 0.25 to 0.35 kg/min. The experimental study took place over the course of three months (February, March and April) in Kirkuk, Iraq. The solar collector's thermal losses decreased as the flow rate increased, heat gain increased with sun intensity and the collector's actual and theoretical efficiencies all improved. The efficiency found in experiments was found to be 10% lower than that predicted by theory. At the greatest volumetric flow rate, using a nanofluid composed of 2% ZnO and water improves the performance of solar collectors by 9%.

Downloads

Published

2024-12-05

How to Cite

Hussien, Adnan Mohammed, Hussein Hayder Mohammed Ali, Zaynab Ismail Abdullah, and Ali Azeez Ali. 2024. “Efficiency Enhancement of Parabolic through Solar Collector Using ZnO/Water Nanofluid”. Journal of Advanced Research in Micro and Nano Engineering 27 (1):88-99. https://doi.org/10.37934/armne.27.1.8899.
سرور مجازی ایران Decentralized Exchange

Issue

Section

Articles
فروشگاه اینترنتی