Continuum Models and Singularities for Heat Distributions From Light

Author:

Strömberg Lena

Abstract

Air flow and quasi-static heat around heat sources and shields are exemplified and analysed. The purpose is to (improve thermal efficiency, i.e.,) obtain much heat adjacent to the device and its surrounding. Knowledge from single devices and sources in a row is used and interpreted into comparisons with e.g. heat waves. Navier-Stokes equations, other balance equations, and rules from continuum mechanics are scrutinized and combined with proposals for the buoyancy of heated air. Results for singularities are derived and visualised with the aim to describe heat power potentials in room layers.

Publisher

Qeios Ltd

Reference10 articles.

1. Strömberg L (2023). Response to curvature, gradients and temperature in a PPB-fuel cell, with a LED and a Li-B. Advances in Environment and Energies, Sanderman PH. Volume 2, Issue 1, No. 3.

2. Strömberg L (2023). Viscous and thermal Eulerian velocity models for electric heat generation. Security and Management in Modern Civil Engineering, Sanderman PH. Volume 2, Issue 1, No. 4.

3. Robertson, Glen. (2023). VEM Drive as a Buoyancy Effect. 10.13140/RG.2.2.13814.98886.

4. Li, Scott & Woods, Andrew. (2023). Boundary mixing. Part 1. Transport of buoyancy and passive tracer. Journal of Fluid Mechanics. 976. 10.1017/jfm.2023.796.

5. https://doc.freefem.org/tutorials/thermalConduction.html https://doc.freefem.org/tutorials/poisson.html

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