TAITherm
Simulate the complete range of heat transfer phenomena, from convection to radiation, storage to dissipation, and steady-state to dynamic and transient environmental influences. TAITherm thermal analysis software is as easy to use as it is powerful. It solves for solar and thermal radiation, convection, and conduction, including ever-changing environments. TAITherm removes the burden of complicated thermal simulations and ensures that your design will function optimally in real-world scenarios. TAITherm is used by thousands of engineers and teams around the globe. Our customers use TAITherm for an array of applications including the latest advancements in automotive, electronics, wearables, military technology, architecture, and more. Our customers are pushing the boundaries of new technology by increasing usability, safety, and effectiveness in their industries through thermal simulations and thermal analysis.
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Diabatix ColdStream
ColdStream is a cloud-native thermal simulation engineering platform that supports your entire thermal management and cooling design process, from thermal analysis to thermal design. Diabatix's thermal simulation software lets your business speed up product development using only state-of-the-art technologies. Get essential heat transfer analyses and insights into temperature distribution, heat dissipation, fluid flow, thermal resistance, thermal radiation, cooling capacity, and more. Do not spend more time looking for the best-suited heat sinks to cool your electronic devices and products, let ColdStream do this for you. You can upload the geometry, configure the thermal simulation operating conditions, and set up the design objectives of your heat sinks in just a few clicks.
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SimScale
SimScale is a cloud-based web application that plays a key part in simulation software for many kinds of industries. The platform allows the use of Computational Fluid Dynamics (CFD), Finite Element Analysis (FEA), and Thermal Simulation. It also offers 3D simulation, continuous modeling, and motion & dynamic modeling.
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Thermal Desktop
Thermal Desktop includes all aspects of model creation. Built-in finite difference, finite element, and lumped capacitance objects can be combined in any configuration. Thermal-specific objects such as contact conductance, insulation, heat loads, and heaters can be added to model anything from automotive components to manned spacecraft. Thermal Desktop provides full parameterization using variables and arbitrarily complex expressions as input rather than hardwired numbers. These variables, called symbols, allow models to be rapidly manipulated with a few keystrokes, meaning updating or maintaining the model is easy, as is performing sensitivity studies and investigating what-if scenarios. This also provides access to SINDA/FLUINT’s optimization and reliability modules and automatic model correlation.
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