Q2 2026

Significance of variable thermal conductivity on magnetized Sutterby nanofluid over stretching sheet with viscous dissipation impacts

M. M. Ghazy · Kh.S. Mekheimer · Rabea E. Abo elkhair · Ahmed M. Megahed
10.1007/s44444-025-00080-0 386 المشاهدات 1 الاقتباسات
1
الاقتباسات
386
المشاهدات
الملخص

Abstract
This study presents a novel mathematical model for Sutterby nanofluid flow over a stretched sheet, uniquely integrating the combined effects of variable thermal conductivity, viscous dissipation, and nonlinear thermal radiation. The novelty of this work lies in the simultaneous consideration of these complex phenomena within the framework of a Sutterby nanofluid, a specific combination that has not been extensively studied previously. The model is motivated by applications in engineering and industrial processes where enhanced heat transfer is critical. We formulate the governing equations as partial differential equations incorporating the nanofluid properties and boundary conditions. Applying appropriate similarity variables reduces the governing partial differential equations to a coupled system of nonlinear ordinary differential equations, which are solved numerically using the Chebyshev spectral collocation method due to its high accuracy for strongly nonlinear systems. A detailed convergence analysis is carried out to ensure the stability and reliability of the spectral solution, confirming the exponential rate of convergence characteristic of Chebyshev-based schemes. The impacts of key physical parameters that govern the mathematical model are presented in both tabular and graphical formats. Notable findings indicate that the velocity profile increases with the power-law index and the Deborah number, whereas the temperature and concentration profiles decrease. The applied magnetic field enhances the thermal and concentration fields while attenuating the velocity profile. The temperature of Sutterby nanofluid grows with a higher fluid conductivity parameter. The findings of this study were assessed against existing literature, showing strong consistency that substantiates the reliability of the present solutions. Consequently, the current model offers initial guidance for various biotechnological and industrial uses.

الاستشهاد بهذا المقال (APA)
M., M. G., Kh.S., M., Rabea, E. A. E., Ahmed, M. M. (2026). Significance of variable thermal conductivity on magnetized Sutterby nanofluid over stretching sheet with viscous dissipation impacts. Journal of King Saud University - Engineering Sciences. https://doi.org/10.1007/s44444-025-00080-0
أبحاث ذات صلة
The impact of using rice husk ash as a replacement material in concrete: An experimental study
Asad A. Khedheyer Al-Alwan; Mustafa Al-Bazoon; Faten I.Mussa; Hayder A. Alalwan; · 2024
57
استشهاد
396
45
استشهاد
391
Electric vehicle speed tracking control using an ANFIS-based fractional order PID controller
Mary Ann George; Dattaguru V. Kamat; Ciji Pearl Kurian · 2024
40
استشهاد
394
Effectiveness of replacing cement partially with waste brick powder in mortar
Saif Saad Mansoor; Sheelan Mahmoud Hama; Dhifaf Natiq Hamdullah · 2024
37
استشهاد
394
Financial risk management in the construction projects
Abdussalam Shibani; Dyaa Hasan; Jalal Saaifan; Heba Sabboubeh; Mohamad Eltaip; M · 2024
32
استشهاد
392
الوصول
عرض النص الكامل عبر DOI
نُشر في
الرقم الدولي ISSN 1018-3639
الربعية Q2
درجة المؤشر القياس العربي 91
التخصص Engineering & Technology
الناشر Elsevier / King Saud University
الدولة 🇸🇦 Saudi Arabia
عرض ملف المجلة →
المؤلفون
تفاصيل النشر
السنة 2026
اللغة English
أُضيف في 23 Jul 2026