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Summary. Hello dear. Yes, both MATLAB and ANSYS can run on a single laptop.
You can choose a software to run to solve your task, or you can install it on a single computer at the same time, as long as the computer is powerful enough to do multitasking calculations.
Hello dear. Yes, both MATLAB and Ansys can be run on a single laptop. You can choose a software to run to solve your task, or you can install it on a single computer at the same time, as long as the computer is powerful enough to perform multi-session base calculations.
OK. First, you'll need to install MATLAB and ANSYS software. You can then integrate them together using MATLAB and Ansys APIs.
This allows you to access ANSYS in the MATLAB environment and use MATLAB as a data analysis and visualization tool. You can use MATLAB's command window or scripts to connect Chunpai to ANSYS programs and execute simulations. You can process and visualize data in MATLAB, making it easier to analyze and understand the results of ANSYS simulations.
However, it is important to note that because ANSYS Soft Scraping Greetings require significant computing resources and memory, it is recommended that you use a high-performance workstation or server to run ANSYS. And make sure your laptop has enough RAM and processing power to run two software at the same time.
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First of all: "Build a model with MATLAB, then send the model to MATLAB for analysis, and then send the analysis results back to MATLAB for processing" Here you should make a mistake...
Generally speaking, there is little connection between the two.
1. MATLAB is a very common and efficient programming software for matrix operation, of course, it can also use the finite element method for calculation, but it requires you to have a high ability to control the finite element method and the problems you implement, and you need to deduce the details of the calculation process and the solution method.
2. ANSYS is the most popular finite element commercial software, which covers a wide range of fields. Because I mainly do structural analysis, I don't know much about noise analysis. I guess I could classify it as vibration analysis.
It should also be achievable. However, if you simplify the problem you want to analyze, you can effectively build a finite element analysis model in the software.
Relatively speaking, the two can be carried out separately, and then both can verify each other after getting the results. MATLAB is relatively more open and free, and you can find theoretical solutions. ANSYS, on the other hand, can only obtain numerical solutions using the finite element method.
I think your teacher should mean that both can be used, and you can choose according to the situation, and if you choose both, of course, it is better.
It is important to note that choosing MATLAB requires you to be more clear about the entire analysis process, and many details need to be deduced and solved by yourself. With ANSYS, you need to be familiar with the main processes and key points of the entire analysis, and find the right unit and the right treatment.
And the sentence you typed wrong, do you want to say modeling with Ansys, then MATLAB calculations, and then back to Ansys post-processing? As far as I know, Ansys has interfaces to a lot of other software, and the FeModeler module in Workbench does have the ability to export finite element modeling analysis statements and translate them into other software, but this statement is not recognizable by MATLAB. Conversely, ANSYS doesn't agree with MATLAB statements, but you can use its APDL language for directional programming in ANSYS.
Well, having said all this, in fact, for specific problems, it mainly depends on your personal ability to turn the appearance of the actual problem into the essence. It doesn't matter what you use.
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There is no necessary relationship between the two. One is biased towards programming, and the other is commercial finite element software.
I'm an authority on this issue:
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pwd=ffh6 Extraction code: ffh6MATLAB is a commercial mathematics software produced by Mathworks in the United States, which is used in data analysis, wireless communication, deep learning, image processing and computer vision, signal processing, quantitative finance and risk management, robotics, control systems and other fields. Links contain various versions of MATLAB software and related basic and advanced tutorials and information sources, involving statistics, signal processing, image processing, quantization, etc.