Himanshu Upreti, K. Srikanth
Due to the world's high energy requirement and growing environmental concerns, renewable power systems such as parabolic trough solar collectors (PTSC) have become more efficient. This research delves into the performance of a model related to the PTSC absorber tube section of TiO2-water nanofluid, i.e., a green, non-toxic alternative to conventional nanofluids. In this research, a non-Newtonian fluid with a shear-thinning viscosity model has been considered. This model utilizes the open-source CFD code and OpenFOAM to simulate the laminar flow over a flat plate for various inlet flow velocities. It is observed that the magnitude and spatial gradient of the wall shear stress increase strongly with increasing inlet velocity. Moreover, slow flow rates produce almost uniform, low-magnitude stress distributions, whereas higher flow rates amplify both the stress level and its spatial variation. These observations are consistent with the expected behavior of an external flow of a power-law fluid and thus will prove to be important in characterizing deformation, stress localization, and flow-structure interaction.
@article{6b97769f-a024-4126-9e95-666a8a1c7616,
title={OpenFOAM simulation of hydrodynamic characteristics of non New 2026 Next Mat},
author={Himanshu Upreti and K. Srikanth},
year={2026},
language={en}
}TY - JOUR TI - OpenFOAM simulation of hydrodynamic characteristics of non New 2026 Next Mat AU - Himanshu Upreti AU - K. Srikanth PY - 2026 LA - en ER -
Unknown, Unknown
This chapter discusses metal casting processes, highlighting the diversity and common characteristics among them. The objective is to elucidate the fu
Unknown, Unknown
This study focuses on the fundamental characteristics of solid iron, which is predominantly composed of iron atoms and provides a basis for understand
Ir. Méshac KIME ILUNGA
Ce document traite des procédés métallurgiques spéciaux, en mettant particulièrement l'accent sur l'extraction liquide-liquide, un processus mis au po