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COMSOL Inc solid heat transfer module
Solid Heat Transfer Module, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/heat+transfer+in+solids+module/heat+transfer+in+solids+module/pm40572963-89-7-19
Average 90 stars, based on 1 article reviews
solid heat transfer module - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Feasibility exploration of nano-thermal rod applied to deicing of tunnel pavement in cold region.
Article Snippet: Using the Heat Transfer in Solids Module in COMSOL Multiphysics, a three-dimensional model was employed to verify the heating effect of the nano-thermal rod.

Article Title: Study of microstructure, phase and mechanical properties of a novel titanium aluminide-based alloy fabricated by direct energy deposition
Article Snippet: Titanium aluminide (TiAl) alloy is deemed to possess desirable properties but exhibits significant drawbacks such as poor fracture toughness, wear and ductility that impedes its structural application and limit workability and production.. Hence, it is crucial to accomplish a sufficient stability in relation to strength and ductility without losing other attractive material properties of the TiAl alloy.. Therefore, this work is aimed at studying a novel TiAl-based alloy synthesized using direct energy deposition (DED) technique.

Article Title: Feasibility exploration of nano-thermal rod applied to deicing of tunnel pavement in cold region
Article Snippet: Using the Heat Transfer in Solids Module in COMSOL Multiphysics, a three-dimensional model was employed to verify the heating effect of the nano-thermal rod.

Article Title: Dark-field mid-infrared photothermal microscopy
Article Snippet: In the second step, the present disclosure includes calculating the transient temperature rise using the COMSOL's heat transfer in solids module which takes the pre-calculated absorbed power as an input from the initial step.

Article Title: Feasibility exploration of nano-thermal rod applied to deicing of tunnel pavement in cold region
Article Snippet: 260 261 Fig.9 Schematic diagram of the heat of the deicing system 262 2.2.2.1 Governing equation 263 Using the Heat Transfer in Solids Module in COMSOL 264 Multiphysics, a three-dimensional model was employed to verify the 265 heating effect of the nano-thermal rod.

Software:

Article Title: Comprehensive Performance-Oriented Multi-Objective Optimization of Hemispherical Resonator Structural Parameters.
Article Snippet: .. Therefore, a finite element simulation model of the hemispherical resonator was developed using the multi-physics coupling software, COMSOL Multiphysics 6.0, in the Solid Mechanics and Heat Transfer in Solids modules. ..

Expressing:

Article Title: Simulation-Based Design and Machine Learning Optimization of a Novel Liquid Cooling System for Radio Frequency Coils in Magnetic Hyperthermia
Article Snippet: .. The Magnetic Fields module was one-way coupled with the Heat Transfer in Solids module to compute the electromagnetic heating, (3) Q = J · E COMSOL computes the final temperature, T , for each point in the simulation space, considering the steady-state scenario, with the following expression: (4) 0 = ∇ · ( k ∇ T ) + Q where k is the thermal conductivity of the material, ∇ T is the gradient of temperature, which gives the rate of change in temperature at a point in space, indicating the direction of the steepest temperature increase. ..

Article Title: Simulation-Based Design and Machine Learning Optimization of a Novel Liquid Cooling System for Radio Frequency Coils in Magnetic Hyperthermia.
Article Snippet: .. The Magnetic Fields module was one-way coupled with the Heat Transfer in Solids module to compute the electromagnetic heating, Q = J·E (3) COMSOL computes the final temperature, T, for each point in the simulation space, considering the steady-state scenario, with the following expression: 0 = ∇·(k∇T) + Q (4) where k is the thermal conductivity of the material, ∇T is the gradient of temperature, which gives the rate of change in temperature at a point in space, indicating the direction of the steepest temperature increase. ..



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