Run large-scale environmental simulations with HPC.
High-Performance Computing for Environmental Simulations teaches how to run the big models environmental science depends on. You learn the HPC essentials — parallelism, distributed computing and performance — and how they apply to compute-heavy environmental simulations: climate, weather, ocean, hydrology and pollution models. The course connects HPC practice to the scale these simulations demand, from setting up runs to managing and analysing large outputs. You finish able to reason about running an environmental simulation on HPC. A verified e-Certificate of competency and e-Marksheet from the Deep Science & Technology Consortium.
This course covers high-performance computing for environmental simulations — using parallel and HPC techniques to run large climate, weather and environmental models.
1. Understand HPC and parallel-computing basics.
2. Run compute-heavy environmental models.
3. Manage distributed simulation workloads.
4. Handle and analyse large model outputs.
5. Optimise simulation performance.
• Environmental and climate modellers
• Computational scientists
• HPC and research-computing staff
• Students of environmental modelling
• An understanding of HPC for the environment.
• A large-scale simulation perspective.
• A computational-environmental foundation.
• A verified e-Certificate of competency and e-Marksheet from the Deep Science & Technology Consortium.
Analyze the fundamental principles of high-performance computing and their applications in environmental simulations • Develop a comprehensive understanding of core biological principles and their relevance to environmental simulations • Configure a basic high-performance computing environment for environmental simulations using Linux and scripting languages
Design and implement laboratory experiments to collect data for environmental simulations • Evaluate the quality and integrity of collected data using statistical methods and data visualization techniques • Develop a data management plan to ensure proper storage, backup, and retrieval of collected data
Implement bioinformatics tools and pipelines to analyze and interpret large-scale biological data • Analyze genomic and transcriptomic data using computational methods and tools such as BLAST and Bowtie • Develop a computational workflow to integrate and visualize biological data using tools such as Python and R
Develop a research hypothesis and design an experiment to test it using high-performance computing simulations • Evaluate the statistical power and sample size requirements for an experiment using power analysis and simulation studies • Configure a high-performance computing environment to run large-scale simulations and analyze results using parallel computing techniques
Design and implement advanced high-performance computing applications for environmental simulations using machine learning and deep learning techniques • Analyze and interpret results from high-performance computing simulations using data visualization and statistical methods • Develop a translational research plan to apply high-performance computing simulations to real-world environmental problems
Evaluate the regulatory compliance and bioethics requirements for high-performance computing simulations in environmental research • Develop a safety plan to ensure proper handling and disposal of hazardous materials and data in high-performance computing simulations • Implement a quality control and quality assurance plan to ensure the integrity and reliability of high-performance computing simulations
Analyze the industry applications and career pathways for high-performance computing professionals in environmental research • Evaluate the skills and knowledge required for a career in high-performance computing and environmental research • Develop a professional development plan to enhance skills and knowledge in high-performance computing and environmental research
| Parameter | Requirement |
|---|---|
| Covered Tool / Platform | Python |
| Covered Tool / Platform | Linux |
| Covered Tool / Platform | TensorFlow |
| Covered Tool / Platform | BLAST |
| Covered Tool / Platform | Bowtie |
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