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Aspen HYSYS - Petroleum Assays and Oil Characterization
This is course on Plant Simulation will show you how to setup hypothetical compounds, oil assays, blends, and petroleum characterization using the Oil Manager of Aspen HYSYS. You will learn about: Hypothetical Compounds (Hypos)Estimation of hypo compound dataModels via Chemical Structure UNIFAC Component BuilderBasis conversion/cloning of existing components Input of Petroleum Assay and Crude OilsTypical Bulk Properties (Molar Weight, Density, Viscosity)Distillation curves such as TBP (Total Boiling Point)ASTM (D86, D1160, D86-D1160, D2887)ChromatographyLight EndOil CharacterizationUsing the Petroleum Assay Manager or the Oil ManagerImporting Assays: Existing DatabaseCreating Assays: Manually / ModelCutting: Pseudocomponent generation Blending of crude oilsInstalling oils into Aspen HYSYS flowsheets Getting Results (Plots, Graphs, Tables)Property and Composition TablesDistribution Plot (Off Gas, Light Short Run, Naphtha, Kerosene, Light Diesel, Heavy Diesel, Gasoil, Residue)Oil PropertiesProperBoiling Point CurvesViscosity, Density, Molecular Weight Curves This is helpful for students, teachers, engineers and researchers in the area of R&D, specially those in the Oil and Gas or Petroleum Refining industry. This is a "workshop-based" course, there is about <

Mastering PID Controller
This course is designed to teach you everything you need to know about PID controllers in a simple and practical way. Whether you’re a student, an engineer, or simply interested in control systems and industrial automation, this course is tailored for you!What Will You Learn?Complete Introduction to PID Controllers: Understand what Proportional, Integral, and Derivative actions mean and how they work together.Real-World Applications: Learn how PID controllers are used to control flow, level, temperature, and speed in industrial systems.Tuning and Optimization: Master the techniques for tuning PID parameters (Kp,Ti,TdK_p, T_i, T_dKp,Ti,Td) to achieve precise and efficient control.Advanced Strategies: Dive into advanced control methods like Cascade Control and Feedforward Control, with practical examples such as reactor temperature control.Hands-On Projects: Apply your knowledge to real-world projects using PLCs or simulation tools to control systems effectively.Who Is This Course For?Students and engineers who want to learn PID control from scratch.Professionals working in industrial automation, maintenance, and process control.Anyone interested in enhancing their knowledge of control systems and automation.What Are the Prerequisites?No prior experience with control systems is required.Basic math (addition, subtraction) and curiosity are all you need to get started.Why Choose This Course?Clear, beginner-friendly explanations of PID concepts.Real-world examples and practical applications.Full support and guidance for your questions and

Static Modeling in Petrel
The Reservoir Static Modeling in Petrel Course is an in-depth program designed to provide participants with the knowledge and skills necessary to create accurate and reliable static models of underground reservoirs using the industry-standard Petrel software. Through a combination of theoretical lectures, practical exercises, and hands-on projects, participants will gain a comprehensive understanding of reservoir static modeling principles, techniques, and best practices.Course Objectives:Understand the role and importance of reservoir static modeling in reservoir characterization.Gain proficiency in using the Petrel software, including navigating the interface, and utilizing relevant modules and functionalities.Learn how to construct realistic reservoir models by integrating geological, geophysical, and engineering data, and applying grid construction and property modeling techniques.Course Outline:List of Required DatasetStructural Framework ConstructionFault Modeling (Pillar Gridding)Horizon ModelingGrid Construction: Techniques for creating structured and unstructured grids in Petrel.Property Modeling: Estimating and assigning petrophysical properties to reservoir models.Who Should Attend:Reservoir Engineers involved in reservoir characterization.Geoscientists, including geologists and geophysicists, working with subsurface data and contributing to reservoir modeling.Petroleum Engineers engaged in reservoir simulation and field development planning.Students pursuing degrees or conducting research in reservoir engineering, geology, or related disciplines.Prerequisites:Basic knowledge of reservoir engineering and geology concepts is recommended.Familiarity with Petrel software is beneficial, but not mandatory.<

Simulate a Thermoelectric generator in ANSYS
In this set of lectures, you will find the complete steps to simulate the thermoelectric generators inside ANSYS.The course starts with geometry creation using SpaceClaim. A step-by-step guide on how to create the 3D model in the most flexible and easy way. The exact dimensions and placement of each component is explained in full detail supported with actual images of an actual commercial thermoelectric generator.Following this, the different materials definitions and their assignments to various components of the TEG. The used materials are actual properties referenced from published scientific articles.Next, you will see the meshing process. A good uniform mesh is formed. The mesh includes hexahedrons only. Detailed steps are shown and using connections between components are explained.After that, the analysis settings and the definitions of boundaries' conditions are explained in ANSYS Mechanical. Defining temperature boundaries and convection coefficients.Finally, you will learn how to display the different results in different forms (Contours, exact values, etc...). Contours of temperature and voltage. Also, you will learn how to do parametric analysis. Variation of performance at different temperatures and the at different loads.This is recorded using version 2021R1. The attached files can be opened in this version and any other later version released after 2021R1.

4D BIM for linear projects using Tilos 11 & Navisworks
Course aimed at engineers who work as Planning Engineers or Project Contols Managers who are passionate about BIM for infrastructures. In this course you will discover how to plan the construction of a bridge and a tunnel with the Trimble Tilos software, the most famous time-space scheduling tool that allows you to analyze not only the construction times of a work, but also its location in the space. Indeed, Tilos scheduling and planning software provides a simplified, visual look at your construction project through a powerful linear scheduling view. Always know the status of your construction project in order to stay on time and check how your planning and schedule are working together using comprehensive linear software, project management and linear scheduling methods. This advanced technology software for linear infrastructure projects combines time and distance into one graphical view, giving you more power to keep your projects on schedule and keep everyone on track. Without the space dimension it is difficult to plan the construction of a linear work efficiently, especially when you operate on several fronts of the work at the same time. You will also see how to make different software interactions with Tilos, including Autodesk Revit and Autodesk Navisworks, which allow you to model your structures in a 3D environment, to export the quantities (QTO) and then to integrate them with the 4D BIM (virtual construction sequencing).

Occupational Health and Safety Management Systems
Enroll in my comprehensive Udemy course, "Occupational Health and Safety Management Systems", and gain expertise in safety management systems across industries. This course covers the fundamentals of Occupational Health and Safety Management Systems, HSG 65, ISO 45001, and ILO-OSH 2001. It discusses their management, requirements, and application in the industry. It emphasizes creating a safety culture, implementing strategies, and continuous improvement. With real-world examples, mapping, and brainstorming, you'll be equipped to make workplaces safer, whether you're an OHS professional or aspiring to improve workplace safety while enhancing your career prospects. In this course, you'll delve into the core principles of OHS management, gaining a deep understanding of the legal and ethical responsibilities that organizations hold toward their employees' well-being. We'll explore the significance of aligning with globally recognized standards such as ISO 45001 and ILO-OSH 2001, ensuring that your organization meets and exceeds safety benchmarks.You'll also learn the critical skills of identifying, assessing, and mitigating workplace hazards, a key aspect of creating safer work environments. Moreover, we'll delve into the crucial role of organizational culture and leadership in fostering a safety-first mindset among employees, promoting a workplace where safety is paramount.The course will provide you with practical insights into the steps required to implement safety management systems within your organization and achieve certification. You'll gain the knowledge and tools needed to continually evaluate and enhance your OHS management system, ensuring its effectiveness and relevance over time.Join us on this educational journey to become a proficient advocate for occupational health and safety. Your commitment to safety begins here!