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High-Value Software Solutions to Costly Industrial Corrosion

Recommended Corrosion Prediction Software and Corrosion Modeling Software

Corrosion Prediction Software Selection by Industry

Corrosion Prediction Software Selection by Corrosion Type

Corrosion Prediction Software Selection by Service Environments

Alphabetical List of All Corrosion Prediction Software

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Why WebCorr | Performance Guarantee | Unparalleled Functionality | Unmatched Usability | Any Device Any OS | Free Training & Support | CorrCompass


Corrosion is a disease to materials just like a disease to human beings. Corrosion affects the material's properties and weakens the mechanical integrity of engineering systems. It poses a major risk to many industrial facilities and structures such as pipelines, storage tanks, boilers, heat exchangers, and other equipment and systems. To estimate the design life or residual life of an industrial component, corrosion rate data for a given material-environment system must be known.
WebCorr's high-value corrosion prediction software and corrosion modeling software can provide essential corrosion rate data to the design team and the operation, inspection, and maintenance personnel, making possible a more realistic estimation of the design life or residual life of a component or asset.
WebCorr has developed 47 integrated predictive software programs for corrosion prediction and corrosion modeling, cementing a CorrCompass-based ecosystem encompassing different types of corrosion in every industry and service environment. Click the corrosion software title for details on each software and the relevant application examples. If you cannot find the corrosion prediction software of your interest, do let us know through the Contact Us link and we will work with you to develop a customized software for you.

 

CorrCompass Suites 

  1. ABC-Compass: Ammonium Bisulfide Corrosion Modeling and Life Prediction

  2. ACE - Apps for Corrosion Engineers: A Collection of Essential Corrosion Software Applications for Corrosion Engineers, Corrosion Researchers, and Corrosion Technicians in Laboratories and in Fields 

  3. ACMF-Compass: Modeling and Prediction of the Effects of AC and Magnetic Field on Metal Corrosion

  4. ANC-Compass: Modeling and Prediction of Ant Nest Corrosion (Formicary Corrosion) in Copper Tubes

  5. Atmosphere-Compass: Prediction and Modeling of Atmospheric Corrosion of Metals and Alloys 

  6. CCC-Compass: Modeling and Prediction of Caustic Corrosion and Caustic Stress Corrosion Cracking 

  7. CIPAL-Compass: Copper-Induced Pitting in Aluminium Alloys - Modeling, Life Prediction and Process Control 

  8. Cl2Compass: Modeling and Prediction of Corrosion by Dry Chlorine Gas

  9. CO2Compass: Modeling and Prediction of Corrosion by Carbon Dioxide (CO2), Hydrogen Sulfide (H2S), Acetic Acid (HAc), Elemental Sulfur (S), and Mercury (Hg) in Oil and Gas Pipelines and Production Tubing

  10. Concrete-Compass: Concrete Corrosion Prediction and Modeling 

  11. CP-Compass-Pipeline: Cathodic Protection Design Calculations, Verification, Assessment and Solution for Underground Pipelines

  12. CP-Compass-Concrete: Design Calculations for Cathodic Protection of Reinforced Concrete Structures

  13. CRA-Compass: Corrosion Modeling and Corrosion Prediction for Corrosion Resistant Alloys - the Threshold Temperature and Chloride Concentration for Pitting, Crevice Corrosion, and Stress Corrosion Cracking (SCC

  14. CSR-Compass: Modeling and Remaining Life Prediction of Creep and Stress Rupture of Boiler and Heater Tubes 

  15. CUI-Compass: Prediction and Risk Assessment of Corrosion Under Insulation and Fireproofing

  16. Dew-Point-Compass: Prediction of Dew Point Temperatures of Flue Gases and the Risk of Dew Point Corrosion

  17. DWD-Compass: Modeling and Life Prediction of Corrosion in Drinking Water Distribution Systems

  18. EN-Compass: Modeling and Prediction of the Corrosion Resistant Properties of Electroless Nickel Coatings

  19. EVS-Compass: Extreme Value Statistics in Corrosion Modeling and Corrosion Life Prediction of Structures and Plant Assets

  20. F2Compass: Modeling and Prediction of Corrosion by Dry Fluorine Gas

  21. FAC-Compass: Erosion Corrosion and Flow - Accelerated Corrosion Modeling, Life Prediction and Materials Selection in Water-Steam Systems 

  22. FuelAsh-Compass: Fuel Ash Corrosion Modeling and Life Prediction of Boiler and Heater Tubes 

  23. GC-Compass: Galvanic Corrosion Prediction and Materials Compatibility Assessment

  24. H2Compass: Modeling and Prediction of Low Temperature Hydrogen Damages (Hydrogen Blistering, Hydrogen-Induced Cracking, Hydrogen Embrittlement) and High Temperature Hydrogen Attack (HTHA)

  25. H2O-Compass: Modeling and Prediction of Water Corrosivity and Scaling Tendency

  26. H2SO4-Compass: Corrosion Prediction and Materials Selection Guide for Sulphuric Acid (H2SO4) Services

  27. HBr-Compass: Corrosion Prediction and Materials Selection Guide for Hydrobromic Acid (HBr) Services 

  28. HCl-Compass: Corrosion Prediction and Materials Selection Guide for Hydrochloric Acid (HCl) Services

  29. HF-Compass: Corrosion Prediction and Materials Selection Guide for Hydrofluoric Acid (HF) Services

  30. ISO15156-Compass: Modeling and Prediction of in-situ pH, Region of Environmental Severity, and Susceptibility to Sulfide Stress Cracking (SSC) of Carbon and Low Alloy Steels

  31. MIC-Compass: Modeling and Prediction of Microbiologically Influenced Corrosion in Oil and Gas Pipelines

  32. MSC -Compass: Modeling and Prediction of Molten Salt Corrosion in TES and MSR Applications 

  33. NAC-Compass: Modeling and Prediction of High Temperature Naphthenic Acid Corrosion

  34. NH3Compass: Modeling and Prediction of Corrosion in Ammonia Production, Storage, and Transport 

  35. O2Compass: Modeling and Prediction of High Temperature Oxidation 

  36. OCTG-Compass: Corrosion Prediction and CRA Materials Selection Guide for Oil and Gas Production Systems

  37. PCW-Compass: Corrosion Prediction and Modeling in Process Cooling Water Systems

  38. PipelineCompass: Pipeline Corrosion Modeling, Prediction, Assessment and Solutions

  39. S-Compass: Modeling and Prediction of High Temperature Sulfidation/Sulfidic Corrosion/H2-H2S Corrosion and Low Temperature Elemental Sulfur Corrosion

  40. SC-Compass: Stray Current Corrosion and AC Corrosion - Identification, Assessment and Prediction

  41. Seawater-Compass: Seawater Corrosion Prediction for Metals and Alloys 

  42. Shipwreck-Compass: Shipwreck Corrosion Modeling and Corrosion Prediction

  43. Soil-Compass: Soil Corrosion Prediction and Modeling for Metals and Alloys 

  44. SPE-Compass: Solid Particle Erosion Modeling and Prediction 

  45. VPC-Compass: Prediction and Modeling of Internal Corrosion in Vapor Phase in Closed Systems

  46. VPC-Compass-SE: Prediction and Modeling of Corrosion in Microelectronic Packages

  47. WebCorr Corrosion Rate Units Converter: Converting Between All Corrosion Rate Units for All Metals and Alloys

Each and every one of WebCorr's corrosion prediction and modeling software was developed at the request of our clients worldwide. Our clients' inputs and specific requirements help make our corrosion software always stay relevant, practical, and directly applicable to the various systems, processes and industries. If you cannot find a corrosion prediction software of your interest from the list above, please let us know and we will work with you to customize an existing software or develop a new one to meet your specific requirements.

Request for Licensing Details


 

Why You Should Consider WebCorr  WebCorr was founded in 1995 and has been a leader in corrosion prediction and modeling software development. WebCorr has developed 47 integrated predictive software programs for corrosion prediction and modeling, cementing a CorrCompass-based ecosystem encompassing different types of corrosion in every industry and service environment.  Extensive field data from our corrosion consulting work help keep the predictive engines in our corrosion software always accurate and up-to-date with applicable codes, standards, and best industry practices. Unlike other corrosion prediction software and corrosion modeling software developed by computer programmers, mechanical engineers, metallurgists or chemists, WebCorr's corrosion prediction software and corrosion modeling software are developed by NACE certified Corrosion Specialists with both BEng and PhD degrees in corrosion and decades of practical corrosion experience. The WebCorr team knows corrosion from inside out. Our confidence in the accuracy of WebCorr's corrosion prediction and modeling software is backed by our performance guarantee.  

 

Performance Guarantee  WebCorr is the only corrosion software developer who offers performance guarantee. If at any time during the licensing period, the corrosion rates predicted by WebCorr's corrosion prediction software and corrosion modeling software are not closer to the measured values than the values predicted by any other corrosion prediction and corrosion modeling software on the market, we will refund the pro-rated licensing fee to you.

 

Unparalleled Functionality  WebCorr's corrosion prediction software and corrosion modeling software utilize machine learning and cloud computing to optimize the predictive engines such that all contributing factors to the corrosion process are accurately processed. The prediction and modeling results are validated against field data and lab data. Take CO2 corrosion modeling as an example, traditional CO2 corrosion modeling software is limited in their capability to the prediction of the corrosion rate only, without due consideration to the CO2 corrosion control strategy under the prevailing operating conditions of a pipeline or production tubing. WebCorr's CO2Compass, the next generation CO2 corrosion modeling software goes far beyond the prediction of the corrosion rate, it utilizes machine learning and cloud computing to optimize a particular CO2 corrosion control strategy with specific and quantitative control targets under the prevailing operating conditions of a pipeline or production tubing. Significant cost savings can be realized for asset owners at both the design and operation phases of pipelines. CO2Compass is not just for CO2 corrosion rate prediction, it also provides users with expert guidance on practical solutions for mitigating CO2 corrosion. Based on the predicted corrosion rate, the prevailing operating conditions, the flow regimes, and the water analysis results, CO2Compass makes an overall assessment of the complete system and generates recommendations for CO2 corrosion mitigation strategies. Click here to read more on CO2Compass, the next generation CO2 corrosion prediction and CO2 corrosion modeling software.

 

Unmatched Usability  WebCorr' CorrCompass suites of corrosion software are designed with end users in mind. Experience the industry's first cross-platform and device-independent corrosion modeling and corrosion prediction applications on your iPads, tablets, smart phones, notebooks, and desktops, at any time and anywhere, in the office or in the field. No installation files to download, no browser plug-ins required, no USB dongles to carry around, and no license keys to transfer from one PC to another. WebCorr's Compass series of software simply works on any device running any OS. All you need is an internet browser. The predictive engines in the Compass software perform calculations in the cloud, with real-time display of prediction results and graphical charts. Unlike the black-box style of other corrosion modeling software, WebCorr's Compass series of corrosion software gives the user complete and direct control over the modeling of the effects of all parameters contributing to corrosion. Take CO2 corrosion modeling for example, CO2Compass gives the user complete and direct control over the modeling of the effects of scaling, oil wetting, glycol, CO2 fugacity, in-situ pH, liquid velocity, organic acids, and H2S with user-controlled ON/OFF switches, and direct inputs overriding the default settings. No other CO2 corrosion modeling software gives you all of these controls. Automatically generated and dynamically updated graphs are plotted in real-time as the user makes adjustments to the input parameters. These plots include corrosion rate profile, effect of temperature, effect of velocity, and effect of pH on the predicted CO2 corrosion rates. Saturation indices of carbonates and sulphate scales are also plotted. A clean and concise report is automatically generated and dynamically updated in real-time as you enter or change the input parameters. Click here to read more on CO2Compass, the next generation CO2 corrosion prediction and CO2 corrosion modeling software.

 

Any Device Any OS  WebCorr's Compass series of corrosion software simply works on any device running any OS. All you need is an internet browser. You can run the corrosion prediction and corrosion modeling software on your tablets, notebooks and desktops, at any time and anywhere, in the office or in the field. There are no installation files to download and install, no browser plugins required, no USB dongles to carry around, and no license keys to transfer from one PC to another. Just login with your username and password, enter your data and print out the report.

 

Free Training and Technical Support  Your initial 1‐year license comes with free training in our Singapore office for 2 persons from your company. Fees for additional persons or on-site training at your company will be quoted on request.

Unlike other corrosion prediction software developer who charges maintenance support fees, WebCorr Corrosion Consulting Services provides free technical support to our customers. Our Compass series of software utilizes cloud computing and every time when you login to the software portal, you are using the most up-to-date version. There is no need for end users to download or apply any update.

WebCorr provides comprehensive corrosion consulting, corrosion training and corrosion expert witness services across the globe. If required, WebCorr can carry out the corrosion modeling, corrosion prediction, corrosion simulation, review and validation of reports/designs/calculations for your company, at a fee to be quoted on request.

WebCorr has provided the following corrosion prediction and corrosion modeling services for our clients:

  • CO2 Corrosion prediction and CO2 corrosion modeling in oil and gas pipelines and production tubing.

  • H2S Corrosion prediction and H2S corrosion modeling in oil and gas pipelines and production tubing.

  • Corrosion prediction and corrosion modeling of bottom of line corrosion (BOL or BLC) in multiphase flow pipelines.

  • Corrosion prediction and corrosion modeling of top of line corrosion (TOL or TLC) in multiphase flow pipelines.

  • Corrosion prediction and corrosion modeling of internal pitting corrosion in pipelines.

  • Corrosion prediction and corrosion modeling of external pitting corrosion of buried pipelines.

  • Corrosion prediction and corrosion modeling of the effects of chemical treatment and corrosion inhibitors on the corrosion rate of specific alloys.

  • Corrosion prediction and corrosion modeling of corrosion in chemical process and pharmaceutical industries

  • Corrosion prediction and corrosion modeling of the effects of process pressure, velocity (flow rate) and temperature (PVT) on the corrosion rate of steels and alloys.

  • Independent 3rd party verification/validation of modeled/predicted corrosion growth rates.  At WebCorr, our NACE certified Corrosion Specialist will validate your modeled/predicted corrosion growth rates using properly selected models, laboratory test results and field data in the literature. Our verification/validation report will come complete with all supporting data and reference documents. If necessary, we can train your engineers on CO2 corrosion modeling. Click the link below to see details on our 5-day training course on CO2 corrosion modeling:
    CO2 Corrosion Modeling for the Prediction of Internal Corrosion in Oil Gas Pipelines and Production Tubing.

  • CO2 Corrosion Model Validation Matrix and CO2 Corrosion Model Validation Index Score (CO2MoVIS).

  • Corrosion and remaining life prediction of a shipwreck.

In the case illustrated below, corrosion modeling is the only solution to establish the safe operation limits (integrity operating windows, IOWs) for process variables in the oil refineries.

From: [redacted]
Sent: Wednesday, December 16, 2020 5:31 PM
To: WebCorr Corrosion Consulting Services
Subject: Corrosion/Material Consultancy
Hi there,
I am looking for a corrosion/material consultancy company to perform a study to determine the highest TAN in crude oil feed to our refinery, based on the existing metallurgy. Does WebCorr offer such services?

WebCorr's Reply:

Yes. NAC-Compass is the only device and OS independent software tool on the market for the modeling and prediction of naphthenic acid corrosion (NAC). NAC-Compass accurately models the effects of total acid number (TAN), temperature, sulfur content, velocity, and alloy composition on the corrosion rate. NAC-Compass predicts the integrity operating windows based on the prevailing operating conditions.


In the case illustrated below, corrosion modeling is the only solution to establish the safe operation limits (temperature, concentrations of impurities) for the tanks carrying phosphoric acid.

From: [redacted]
Sent: Wednesday, March 17, 2010 1:47 PM
To: WebCorr Corrosion Consulting Services Singapore
Subject: Consultancy Services - Carriage of Phosphoric Acid in Stainless Steel Ship Tanks
 

CO2Compass Accurately Models the Effects of Critical Parameters on CO2 Corrosion and Recommends Practical Solutions.

CO2Compass: CO2/H2S/HAc/S/Hg Corrosion Prediction and Corrosion Modeling

CO2Compass Predicts Elemental Sulfur Corrosion in Oil and Gas Production, Transmission, and Processing.

H2Compass Predicts Low Temperature Hydrogen Damages and High Temperature Hydrogen Attack (HTHA).

S-Compass Predicts Sulfidation, Sulfidic Corrosion, H2-H2S Corrosion, and Elemental Sulfur Corrosion.

FAC-Compass Predicts Erosion Corrosion and Flow-Accelerated Corrosion.

GC-Compass Predicts Galvanic Corrosion and Materials Compatibility for Over 500 Metal-to-Metal and Metal-to-CFRP Composite Couples.

CIPAL-Compass Predicts Copper-Induced Pitting Corrosion in Aluminum Alloys.

SC-Compass Predicts Stray Current Corrosion and AC Corrosion.

CP-Compass for Cathodic Protection Design Calculations, Verification, Assessment and Solutions.

prediction of maximum pit depth of buried pipeline

PipelineCompass Predicts the Maximum Pit Depth and the Remaining Life of Underground Pipelines.

CRA selection and application limits

CRA-Compass Predicts Pitting Corrosion, SCC, and Temperature/Chloride Application Limits.

CRA selection and application limits

CRA-Compass Predicts Corrosion Rate of Alloys in Sulphuric Acid.

prediction of CUI risk

CUI-Compass Predicts CUI Likelihood Rating and CUI Risk Ranking.

prediction of dew point corrosion risk

DewPoint-Compass Predicts Dew Point Temperatures and the Risk of Dew Point Corrosion

prediction of vapor phase corrosion

VPC-Compass Predicts Vapor Phase Corrosion in Closed Systems.

prediction of maximum pit depth of buried pipeline

Corrosion-Rate-Units-Converter: Converting between All Corrosion Rate Units for All Metals and Alloys.

We are a ship-owner with a fleet of stainless steel ocean-going tankers.

 

Our ships carry Phosphoric Acid cargo from time to time. We would like to know whether a particular grade of Phosphoric Acid is suitable for our stainless steel tankers. We are not able to provide the phosphoric acid sample to you. However we can provide the specifications of phosphoric acid to you. For example:

 

P2O5        49.0 - 51.0

Sp. Gr       1.65 - 1.67

Fe2O3       min  0.65 pct

Al2O3        min 0.8 pct

MgO          0.45 - 0.55

CaO           0.15 - 0.25

K2O           0.06 - 0.08

Na2O         0.7 - 0.95

SO4           max 4.0 pct

F                max 0.8 pct

Cl              max 200 ppm

Solids        max 1.0 pct

Temp max 45 deg C

Total voyage time about 12-15 days.

 

Question – can this grade of Phosphoric Acid be carried on our ship cargo tanks made of 316L 2.1% Mo and of 316L 2.7% Mo?

If it cannot be carried because of certain parameters out of limits, please advise the max limits allowed and if the temp is too high, what the max temp allowed?


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