Udemy

Pipe Stress Analysis using CAESAR II Full Crash Course

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  • 5,181 名學生
  • 更新於 11/2024
4.5
(1,088 個評分)
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課程資料

報名日期
全年招生
課程級別
學習模式
修業期
4 小時 56 分鐘
教學語言
英語
授課導師
Engineering Training Academy
評分
4.5
(1,088 個評分)
1次瀏覽

課程簡介

Pipe Stress Analysis using CAESAR II Full Crash Course

Learn everything you need to know about piping stress analysis using CAESAR II software, from a beginner to an expert

Unlock Your Engineering Career: Master Piping Stress Analysis with CAESAR II

Are you an engineer aiming to dive into the world of piping stress analysis but feeling lost amidst a sea of unorganized information? Look no further. This course is your comprehensive guide to mastering piping stress analysis using CAESAR II, taking you from a novice to a skilled professional.


What You'll Learn:

This step-by-step course is meticulously designed to walk you through every aspect of the piping stress analysis process. You'll start by understanding the basics and progress towards creating full 3D analysis models, selecting support types and locations, meeting code requirements, and finalizing design drawings and reports.

Course Breakdown:

Section One: Fundamentals of Piping Stress Analysis

  • Understand the essential concepts of piping stress analysis

  • Learn when and why stress analysis is crucial

  • Explore key concepts such as loads, stress combinations, ASME code compliance, and support optimization

  • Familiarize yourself with the complete piping stress analysis workflow

Section Two: Building Your First Model in CAESAR II

  • Create a new model from scratch using CAESAR II

  • Master modeling components like pipe bends, tees, valves, expansion bellows, pumps, and more

  • Discover advanced modeling techniques for pump nozzles, surge vessels, and steel structures

  • Enhance your modeling skills with techniques like stretching, mirroring, and segment additions

Section Three: Analyzing and Optimizing Your Model

  • Dive into the output results of your CAESAR II analysis

  • Assess system deformations, stresses, pump nozzle loads, and support optimization

  • Learn to evaluate system behavior and troubleshoot failing segments

  • Gain valuable insights on pipe rerouting with techniques like expansion loops

Section Four: Underground Pipe Stress Analysis

  • Distinguish between piping and pipelines

  • Understand the necessity and timing for underground pipeline stress analysis

  • Compare above-ground and underground pipeline stress analysis

  • Explore support systems for underground pipelines

  • Access essential information about underground pipeline systems

Extra Resources: By the end of the course, you'll receive several CAESAR II model files used throughout the lessons, providing you with the opportunity to practice and enhance your modeling skills further.

課程章節

  • 5 個章節
  • 36 堂課
  • 第 1 章 Pipe stress analysis basics
  • 第 2 章 CAESAR II 3D Modeling
  • 第 3 章 Pipe stress analysis output
  • 第 4 章 Underground pipeline modeling
  • 第 5 章 Conclusion & Additional tips

課程內容

  • Basics of pipe stress analysis, Types of loads, stresses and loads combinations on piping systems as per ASME code, ASME Code requirements for pipe stress analysis, Types of piping supports [Rigid supports, Variable supports, Hangers...etc], How to use CAESAR II software to create any piping 3D Model, How to add and define different piping fittings such as bends, Tees, Flanges, Valves, Expansion bellows...etc, How to model pumps & vessels nozzles in CAESAR II software, How to interpret the stress analysis output and to optimize supports design, How to compare system stresses and deformations with the code allowable limits

評價

  • c
    chibuzor okwudinma
    5.0

    it was an excellent class

  • P
    Prince Chavda
    5.0

    Its so easy to learn from the recorded videos as i can review all the things and the show practical also thats why

  • T
    Thanusri Pagadala
    3.0

    Good for beginners but, better if you know the topics earlier.

  • B
    Balamurugan Kochadaimuthu
    5.0

    Very useful and good for a basic learner

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