Introduction to the Program

Thanks to this Internship program, you will master the principles of Fluid Mechanics and its mathematical formulation for Computational treatment”

A new report by the International Monetary Fund recognizes that Computational Fluid Dynamics is a fundamental pillar in the simulation of transport phenomena. In this regard, the institution highlights that its global market has exceeded $2 billion and is estimated to grow at a compound annual rate of 8.5% in the coming years. This progress is driven by the demand for more accurate and faster simulations in sectors such as automotive, energy, and biomedicine. To this end, IT professionals need to acquire advanced skills to develop optimized algorithms, master parallel computing techniques, and efficiently handle large volumes of data.

In this context, TECH has created a cutting-edge program consisting of a 120-hour placement at a leading center in the field of Computational Fluid Dynamics. Over the course of 3 weeks, graduates will become part of a team of top-level specialists, with whom they will actively work on the development of simulation algorithms, the optimization of CFD models, and the advanced processing of large volumes of data. This experience will allow computer scientists to apply their technical skills in a highly demanding technological environment and specialize in one of the most strategic fields of Computational engineering.

It should be noted that during the internship, participants will have the support of an assistant tutor, who will ensure that all the requirements for which this Internship program has been designed are met. Based on this, the specialist will work with complete confidence and assurance in the use of CFD simulation tools, the implementation of advanced numerical models, and the accurate interpretation of complex flow results.

practicas externas mecanica fluidos computacional informatica TECH Global University

Enjoy an intensive 3-week stay in a prestigious center and update yourself on the latest procedures to grow professionally”

Teaching Objectives

Through this Internship program, IT professionals will develop key skills in modeling, programming, and flow simulation. They will also acquire advanced skills in implementing numerical methods, optimizing CFD algorithms, and managing large volumes of data. They will also strengthen their skills in validating results, analyzing complex phenomena, and advanced Fluid visualization. As a result, experts will be prepared to lead simulation projects in highly demanding technological and industrial environments.

You will implement CFD simulation codes, from discretization to resolution and visualization of results”

General Objectives

  • Understand the physical fundamentals of fluid mechanics and its computational representation
  • Use various CFD simulation tools and apply them in development environments used in industry
  • Apply programming concepts to implement and customize fluid simulation algorithms
  • Develop skills in computational modeling and meshing, which are essential for accurate and efficient simulations
  • Interpret and analyze simulation results, identifying common errors and proposing optimization solutions
  • Integrate data visualization techniques to represent flow fields and other relevant parameters in CFD

Specific Objectives

  • Implement highly efficient computational methods for fluid simulation
  • Develop mathematical techniques for stability and convergence in simulations
  • Model experimental scenarios to predict results and validate hypotheses
  • Apply method optimization techniques in high-resolution simulations
  • Analyze the implementation of optimization algorithms in fluid simulations
  • Validate turbulent simulations with experiments and real data
  • Evaluate the effects of compressibility in transonic and supersonic flows
  • Apply modeling and simulation techniques for multiphase systems
  • Implement advanced models for reactive and heat transfer flows
  • Use advanced CFD result post-processing techniques

You will master the use of mesh tools, adapting them to the requirements of flow phenomena”

Internship Program in Computational Fluid Dynamics

Computational Fluid Dynamics, ideal for combining physical fundamentals with advanced simulation techniques, is positioned as an indispensable tool for analyzing, predicting, and optimizing fluid behavior in complex systems. In this context, TECH presents a rigorous and up-to-date educational program designed for those who wish to acquire practical and real-world mastery of this field from the perspective of applied computer science. In this intensive experience, you will address aspects such as the numerical solution of Navier-Stokes equations, turbulence modeling, multiphase flow analysis, and the use of specialized software such as ANSYS Fluent or OpenFOAM, always applying logic to real-world contexts. The academic program has been designed to provide specific tools for solving complex problems in a computational environment, fostering a deep understanding that can be adapted to various fields of application.

Develop key skills in this Internship Program in Computational Fluid Mechanics

The aim of this program is to enable you to transform your professional profile by integrating highly valued technical skills in multidisciplinary environments. It is not just about understanding the theoretical fundamentals of fluid dynamics, but about applying that knowledge to create accurate and efficient simulations. Throughout this intensive program, you will delve into topics such as quality mesh generation, interpretation of computational results, sensitivity analysis, and model validation, all with a focus on practical solutions to real-world challenges. In addition, you will explore how CFD tools are impacting strategic decision-making in industries such as automotive, aerospace, and biomedical. In short, this Internship Program represents a unique opportunity to integrate computational knowledge with high-impact physical applications, fostering a technical, critical, and decisive vision. In this way, you will gain transformative experience that will prepare you to lead complex projects in contexts where numerical simulation is no longer an option, but a necessity. Where others see turbulence, you will see precision! Enroll now and start mastering flows.