Related Experiment Video
Updated: Jan 20, 2026
Generating Pure Bacterial Cultures in a Liquid Medium
Published on: November 28, 2025
Natural Convection from the Outside Surface of an Inclined Cylinder in Pure Liquids at Low Flux
Amir Akbari1, Erfan Mohammadian2,3, Seyed Ali Alavi Fazel1
1Department of Chemical Engineering, Mahshahr Branch, Islamic Azad University, 6351977439 Mahshahr, Iran.
Abstract:
Many studies have investigated natural convection heat transfer from the outside surface of horizontal and vertical cylinders in both constant heat flux and temperature conditions. However, there are poor studies in natural convection from inclined cylinders. In this study, free convection heat transfer was examined experimentally from the outside surface of a cylinder for glycerol and water at various heat fluxes. The tests were performed at 10 different inclination angles of the cylinder, namely, φ = 0°, 10°, 20°, 30°, 40°, 50°, 60°, 70°, 80°, and 90°, measured from the horizon. Our results indicated that the average Nusselt number reduces with the growth in the inclination of the cylinder to the horizon at the same heat flux, and the average Nusselt number enhanced with the growth in heat flux at the same angle. Also, the average Nusselt number of water is greater than that of glycerol. A new experimental model for predicting the average Nusselt number is suggested, which has a satisfactory accuracy for experimental data.
Related Concept Videos
Generating Pure Bacterial Cultures in a Liquid Medium
07:00Thermocapillary Convection Space Experiment on the SJ-10 Recoverable Satellite
09:02Rapid PCR Thermocycling using Microscale Thermal Convection
Work Done Over an Inclined Plane
The work done by gravity to move a rigid body, or the work done by an opposing force to move a rigid body against gravity, can be calculated using the center-of-mass framework. It is the line integral of the force of gravity over the path, considered positive if...
07:28Evolution of Staircase Structures in Diffusive Convection
09:55Surface Renewal: An Advanced Micrometeorological Method for Measuring and Processing Field-Scale Energy Flux Density Data

