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ROHR2

Static and Dynamic Analysis of Complex Piping Structures

 

Downloads

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ROHR2 Feature list

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ROHR2 Interfaces

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ROHR2ISO Features

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ROHR2FESU Features

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ROHR2STOSS Features

 

 

 

 

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ROHR2 Tutorial/Introduction

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ROHR2 Update Info

 

 

 

Related product pages

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ROHR2 basics

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ROHR2 Interfaces

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ROHR2ISO

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ROHR2FESU

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ROHR2STOSS

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ROHR2 Demo Program

 

ROHR2 Movie filmstreifen_s3

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ROHR2 Training examples

 

 

 

ROHR2 Services

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Maintenance and User support

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Program Training

 

 

 

 

 

 

 

 

 

ROHR2 is the standard tool for Pipe Stress Analysis
 covering a variety of specifications like ASME, ANSI, EN 13480, STOOMWEZEN D1101 and BS 7159 or ISO 14692.
The software environment can be supplemented by a range of programs enhancing the engineers daily job, as there are FE- analysis, isometric capabilities and interfaces covering the leading CAD/CAE systems.
ROHR2 was used by generations of engineers doing their jobs in power plants, nuclear power engineering, chemical industry, gas piping and technical control authorities.
 

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ROHR2 Piping model

ROHR2 stresses

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ROHR2 dimensions

ROHR2 isometric drawing
(using optional ROHR2ISO)

ROHR means PIPE

Expertise in pipe analysis is expressed in the product name: the German word ROHR means PIPE.

Since nearly 40 years ROHR2 supports you with permanently developed program versions at pipe stress analysis tasks. Many well-known national and international plant construction companies as well as operators of the energy- , chemical - and petro-chemical industry trust in the quality of ROHR2.

 

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ALSTOM - AIB Vinçotte - AE&E Austria - ANDRITZ AG - AXIMA - BABCOCK BORSIG - BABCOCK & WILCOX - BALCKE DÜRR - BATEMAN - BAYER - BHEL -  BHR  Bilfinger + Berger - Bioener - Celanese -  CIMTAS - CITEC - COGNIS - DONG ENERGI A/S - Doosan Babcock - DSD  - ESKOM  - ESTEQ - FMT Industrieholding - ENBW - E.ON -  FISIA - FOTAV RT - FRAMATOME ANP - GEA - GRONTMIJ - HITACHI - IDEA LTD - IHI Corporation - INFOSYS - INFRASERV – Israel Electric - JACOBS - J&P-AVAX - J. Christof - KRAFTANLAGEN Heidelberg - KRAFTANLAGEN MÜNCHEN - LAHMEYER - LENZING TECHNIK - LEWA - LURGI LENTJES - MAN DIESEL - MAN Turbo - MEYER WERFT- MCE ENERGIETECHNIK - NOELL - NORDON INDUSTRIES - OMV AG -  OSCHATZ - PAUL WURTH - R&M IKR - RWE - SIEMENS POWER GENERATION - SPX COOLING SYSTEMS - STANDARDKESSEL - STEINMUELLER - TYSSENKRUPP UHDE - TECHNIP - TUEV Nord - TUEV SUED - VATTENFALL - VEBA RUHR OEL – VAM - VOESTALPINE Stahl – WESTINGHOUSE - WINGAS

AND NATIONAL TECHNICAL CONTROL BOARDS (TÜV), POWER STATIONS, LOCAL ENERGY SUPPLIERS, MANUFACTURERS OF PIPE COMPONENTS , UNIVERSITIES AND A LARGE NUMBER OF ENGINEERING COMPANIES.

The program system ROHR2 in includes Stress Analyses according to

ASME B31.1, ASME B31.3, ASME B31.4,
ASME B31.5, ASME B31.8
ASME Cl. 1, ASME Cl. 2, ASME Cl. 3
EN 13480
STOOMWEZEN D1101
KTA 3201.2, KTA 3211.2
FDBR, AGFW, AGFW FW401
VGLSR Equivalent stresses according to von Mises and Tresca

Steel Pipes

ISO 14692
British Standard 7159
KRV, WAVISTRONG GFK

GRP Pipes

VGLSP Stress analysis for Structural Steel Sections

Steel frameworks

ROHR2 pipe stress analysis  - Stress analyses Select window

Learn more about

 

ROHR2 Basics

 

How ROHR2 is working

 

Integration of ROHR2

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Program Version and
 Scope of Delivery

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System and Load case Input

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ROHR2 integrated interfaces

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Program licensing and System requirements

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Documentation and Results

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Optional Interfaces

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ROHR2 introduction

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Stress Analysis

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Third Party Interface Products

 

 

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Loads on nozzles and supports

 

 

 

 

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Additional results

 

 

 

 

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isometric drawings in ROHR2

 

 

 

 

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FE analysis in ROHR2

 

 

Last Changes:

06/17/10