Flame Simulation FORTRAN Program

Job ID: 37750698

Budget: ₹12,500 – ₹37,500 INR

I am seeking a skilled programmer with experience in FORTRAN IV to develop a computer program that simulates the behavior of flames under various conditions. This project is currently in the initial concept and design phase, and I require both the creation of the program and a detailed write-up on the algorithm and methodology.

Key Requirements:

- Proficient in FORTRAN IV programming.
- Strong understanding of combustion processes and multiple-flame systems.
- Ability to translate complex combustion models into efficient code.
- Experience with scientific programming and algorithm development.

Project Scope:

- **Development of a Multiple-Flame Combustion Model**: The core task is to develop a FORTRAN IV computer program capable of simulating flame behavior in different conditions. This involves accurately modeling the combustion process within multiple-flame systems.

- **Comprehensive Documentation**: Alongside the program, a detailed paper is required. This paper should include references to existing literature, a thorough explanation of the underlying scientific principles of combustion, and a detailed description of the algorithm and methodology used. The purpose is to not only create a functional program but also to ensure that the scientific basis and the programming logic are well understood.

Ideal Skills and Experience:

- A background in physics or engineering, with a specific focus on thermodynamics or combustion, is highly desirable.
- Prior experience in creating simulation software, particularly with a focus on combustion or fluid dynamics.
- Strong analytical and problem-solving skills, with a proven ability to work on complex scientific programming tasks.
- Excellent written communication skills, for producing clear, comprehensive documentation.

I am looking for a freelancer who is not just proficient in programming but also has a firm grasp of the scientific concepts involved in this project. Your work will contribute significantly to understanding and simulating multiple-flame combustion processes.