White Paper

Validation of BLOWDOWN Technology in Aspen HYSYS

See how the results of BLOWDOWN Technology in Aspen HYSYS compare with published results.

White Paper

A Study of Terrain-Induced Slugging in Pipelines Using Aspen Hydraulics Within Aspen HYSYS Upstream

Terrain-induced slugging can cause damage to processing equipment, but predicting slug volumes for sizing slugcatchers is challenging. Learn how Aspen HYSYS can be used to predict slug volumes due to terrain-induced slugging.  

White Paper

An Integrated Approach to Pipeline Modeling in a Gathering and Production System

Learn how you can eliminate the need to employ separate third-party tools for pipeline hydraulics by modeling the entire gathering and production system (be it offshore, onshore, topside, etc.) within one tool. Using this new pipeline hydraulics modeling capability, you can optimize the design from a capital and energy perspective, and also ensure the overall safety of the system.

On-Demand Webinar

Quick and Easy Batch Modeling within Aspen Plus®

Learn how batch processing industries can take advantage of new batch modeling capabilities within Aspen Plus to guide experimentation and streamline new process development. Filippo Dama, senior product manager at AspenTech, demonstrates how you can accelerate process design, facilitate collaboration and reduce the time to market for new products.

On Demand Webinar

Non-Linear Modelling with PIMS-AO

Non-linear modelling is a key capability of PIMS-AO, enabling users to develop more accurate models in critical areas such as reactors and complex plant constraints. This feature is being used by a number of petrochemical companies and there are benefits for refining and aromatics. This webinar will showcase how this technology can be leveraged, including concrete examples for refining, aromatics and olefins companies.

On-Demand Webinar

Uncover Hidden Value with Advanced Solution Analysis in Aspen PIMS-AO

While many companies are using PIMS-AO for its performance (parallel processing), solution quality (avoid local optima) and higher model accuracy (non-linear modelling), each one of the Advanced Solution features can deliver significant benefits – boosting your bottom line. Tap into even more benefits with PIMS-AO’s Advanced Solution Features. Join us and see real-world examples of common business processes such as feedstock selection and operational planning.

Blog

Technology Convergence Comes to a "Tipping Point"

At CERAWeek 2018, we'll be exploring how advancements such as machine learning are helping energy companies achieve asset optimization and maximize profitability.

On-Demand Webinar

Prevent Operational Issues in Gas Treating with Aspen HYSYS®

A small operational issue in dehydration, acid gas treating, or sulfur recovery units can turn into a loss of production—or worse, a frustrating and costly shutdown. Keep on top of operations and prevent issues in design with insight from process simulation designed for accuracy and full gas plant integration. Learn how the latest technology in Aspen HYSYS can empower you to troubleshoot and prevent issues in dehydration units, make confident decisions around acid gas units with predictive modeling and much more!

White Paper

Extended Functionality and Validation of Sulsim Sulfur Recovery in Aspen HYSYS

Download this white paper and learn how the leading technology for sulfur recovery was incorporated into Aspen HYSYS, as well as its new functionality. With the market-leading accuracy of Sulsim Sulfur Recovery and Acid Gas Cleaning, you can now model and optimize the whole gas process in one environment.

Jump Start

Jump Start Guide: Sulsim™ Sulfur Recovery in Aspen HYSYS® V9

Sulsim™ Sulfur Recovery in Aspen HYSYS® V9 Sulsim technology, the leading sulfur recovery process simulator developed by Sulphur Experts, has been fully integrated in V9 of Aspen HYSYS, allowing users to optimize the entire gas plant in one simulator. This jump start guide will elaborate on the benefits of using Sulsim Sulfur Recovery in Aspen HYSYS to optimize your Sulfur Recovery Unit (SRU) design and operational performance. 

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