What's new
Warez.Ge

This is a sample guest message. Register a free account today to become a member! Once signed in, you'll be able to participate on this site by adding your own topics and posts, as well as connect with other members through your own private inbox!

Gas Turbine Blade Design with SolidWorks - 5 Projects Based

voska89

Moderator
Staff member
Top Poster Of Month
16bfe079e8632b6ffc7594795ffcc139.webp

Free Download Gas Turbine Blade Design with SolidWorks - 5 Projects Based
Published 9/2025
Created by Roy Academy
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Beginner | Genre: eLearning | Language: English | Duration: 75 Lectures ( 7h 53m ) | Size: 5 GB​

Learn to design compressor and turbine blades with industrial drawings & CAD modeling using SolidWorks -Using 5 Projects
What you'll learn
Design Turbine and Compressor blades using Industrial Standards
Understand the basics of aerofoil through real industrial drawings
Convert 2D technical blade drawings into 3D CAD models
Apply engineering design principles to gas turbine components
Use SolidWorks to model blade profiles, airfoils, and root geometries
Understand key elements of blade design (e.g., chord, twist, camber)
Develop a professional project portfolio for blade design
Requirements
Computer loaded with any version of Solidworks
Knowledge of Basic tools of Solidworks
Enthusiasm to learn hands-on design with real-world examples
Description
Are you ready to master the design of gas turbine blades - both compressor and turbine - with real-world projects?This project-based course will take you through five industrial-grade projects, from interpreting technical drawings to creating fully-detailed CAD models in SolidWorks. It's designed to bridge the gap between theory and industry practice, making you job-ready and confident in turbine blade design and modeling.What You'll LearnHow to read and interpret industrial drawings of gas turbine bladesCAD modeling techniques for compressor and turbine blades in SolidWorksBest practices for design intent, constraints, and featuresWorking with real-world parameters, tolerances, and profilesCreating assembly-ready models suitable for manufacturingThis course is ideal for:Mechanical / Aerospace engineering studentsCAD designers and draftersProfessionals working in gas turbine or turbo-machinery industriesAnyone interested in advanced CAD modeling and industrial designThe power generation in a gas turbine engine mainly depends upon the amount of air it can suck from the atmosphere and how efficiently the airflow through the engine to finally get utilized in the turbine and exhaust section.All these depend on the 1000's of blades that are used inside the gas turbine engine. Blades are the most critical and abused part inside the gas turbine engine which is the power plant of an aircraft that gives it the ability to propel ahead.The gas turbine engine's application is limitless as it has great power to weight ratio. It is used for powering aeroplanes, helicopters, ships, trains, power plants, pumps, gas compressors, tanks, etc.And behind each successful gas turbine is a set of highly sophisticated and precise blades.In this course; we have the right content covered which will give you ample knowledge of blades.At the beginning of this course ; you will be given a fundamental orientation on a Gas turbine engine. After that we shall discuss about the importance of the Blades in the Gas turbine engines' operation and power generation.Further, we will start an Industrial Project on the 5th stage blade of the Gas Turbine Engine Compressor Module of an Aero Engine.All the knowledge that you will get in this course is purely industrial based and this will upgrade your knowledge level to match with the Gas Turbine industry professionals.
Who this course is for
Engineering students (Mechanical, Aerospace, Power)
Professionals in turbo-machinery or CAD design roles
Job seekers wanting project experience in design
Educators or researchers working in turbomachinery design
Homepage

Recommend Download Link Hight Speed | Please Say Thanks Keep Topic Live

Rapidgator
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part1.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part2.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part3.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part4.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part5.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part6.rar.html
Fikper
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part1.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part2.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part3.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part4.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part5.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part6.rar.html

FreeDL
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part1.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part2.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part3.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part4.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part5.rar.html
fkvcl.Gas.Turbine.Blade.Design.with.SolidWorks..5.Projects.Based.part6.rar.html
No Password - Links are Interchangeable
 

Users who are viewing this thread

Back
Top