Free Udemy Course: Solidworks particle study documentation
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Free Udemy Course Details
Language: English
Instructor: Omar Koryakin
Access: Lifetime access with updates
Certificate: Included upon completion
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The "Solidworks particle study documentation" course is thoughtfully crafted to help you gain new skills and deepen your understanding through clear, comprehensive lessons and practical examples. Whether you're just starting out or looking to enhance your expertise, this course offers a structured and interactive learning experience designed to meet your goals.
What You Will Learn in This Free Udemy Course
Throughout this course, you'll explore essential topics that empower you to confidently apply what you've learned. With over 0.0 hours of engaging video lectures, along with 3 informative articles and 0 downloadable resources, you'll have everything you need to succeed and grow your skills.
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Flexibility is at the heart of this course. Access the materials on any device — whether on your desktop, tablet, or smartphone — and learn when it's convenient for you. The course structure allows you to progress at your own speed, making it easy to fit learning into your busy life.
Meet Your Free Udemy Course Instructor
Your guide on this journey is Omar Koryakin , seasoned expert with a proven track record of helping students achieve their goals. Learn from their experience and insights, gaining valuable knowledge that goes beyond the textbook.
Free Udemy Course Overview

Free Udemy Course Description
Solidworks particle study documentationNote: the course will be updated regularly, so expect more lessons to come in the near future.CFD analysis and optimization using SolidWorks topics are covered in every video. The videos discuss problems unique to their industry and illustrate them with straightforward examples. This course was developed with intermediate and advanced students in mind. Unit 1: The Effects of Reduced Nozzle Size and Obstacles on the Flow of FluidsLearning outcome: Students will be able to solve the characteristics of flowing stream in a reduction nozzle.Problem: Find the characteristics of the flowing stream in a nozzle, knowing that a sphere is located in the space between the higher diameter pipe and the reduction zone.Questions to solve:The average velocity at the outlet.Velocity flow field.Pressure distribution within the fluid.Pressure at the surface of the sphere.Pressure at the surface of the duct.Unit 2: Loss coefficient calculations under different conditionsLearning outcome: Students will be able to estimate the loss coefficient under different operating levels.Problem: Estimate the loss coefficient in a ball valve under different opening levels.Questions to solve:Given the formulas for loss of coefficient and Reynolds number, we will find:The calibration curve when the valve opening is at 0 degrees. The calibration curve when the valve opening is at 10 degrees. The calibration curve when the valve opening is at 15 degrees. The calibration curve when the valve opens at 20 degrees extract the data into an excel sheet and graph all the results at different angles.Unit 3: Fluid characteristics of a counter-current heat exchangerLearning outcome: Students will be able to set custom equations to solve complex heat transfer problems.Objectives:Set up a heat transfer model using the Simulation add-in in SolidworksShow how to specify fluid subdomains when multiple fluids are required.Show how to specify solid domains.Set custom equations by using the Goals feature.Problem:Simulate a counter-current two-pipe heat exchanger.Questions to solve:Determine:The outlet temperature of both streams. Display the inlet and outlet velocities of both streams.Display a Cut Plot for the temperature.Display a flow trajectory plot for the temperature.Estimate the Log Mean Temperature Difference (LMTD).Unit 4: The Effects of ventilation systems on the CO2 within an indoor spaceDescription:COVID-19 has been a major public health concern after its outbreak in early 2020. An indirect way of estimating the probability of the presence of the SARS-CoV-2 in an indoor environment is by measuring the concentration of CO2 in the air. CO2 is a regular component of the air at a concentration of around 400ppm. However, in poorly ventilated facilities, this concentration can rise to an unsafe level. Problem:Simulate the ventilation of a classroom with an initial CO2 concentration in the air of 900 ppm. Use a time-dependant approach to track the change in concentration in the room.Questions to solve:Determine:Demonstrate the use of the design features such as: Convert Entities, Extruded Cut, and Extruded Boss/BaseSimulate the transport of multiple species.Demonstrate how to specify the presence and concentration values of multiple species.Demonstrate how to specify a time-dependant model.I really hope that this course will benefit everyone. If you have any questions, please write to me and I will make sure to answer your questions.I wish everyone success in their life, whether it be for their studies or career. Have a great day ahead! Keywords: Solidworks simulation , CFD parametric study optimization , professional spring study
Frequently Asked Questions About Free Udemy Courses
What is this Free Udemy course about?
The Solidworks particle study documentation course provides comprehensive training designed to help you gain practical skills and deep knowledge in its subject area. It includes 0.0 hours of video content, 3 articles, and 0 downloadable resources.
Who is this Free Udemy course suitable for?
This course is designed for learners at all levels — whether you're a beginner looking to start fresh or an experienced professional wanting to deepen your expertise. The lessons are structured to be accessible and engaging for everyone.
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Once enrolled, you can access all course materials through the learning platform on any device — including desktop, tablet, and mobile. This allows you to learn at your own pace, anytime and anywhere.
Is there lifetime access to this Free Udemy course?
Yes! Enrolling in the Solidworks particle study documentation course grants you lifetime access, including any future updates, new lessons, and additional resources added by the instructor.