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Intel AcuSolve Case Study: Analyzing Complex Designs Faster

Working in collaboration with Intel’s technical support team and utilizing key Intel® software development tools, Altair was able to improve performance, scalability, and time-to-results for AcuSolve, Altair’s leading CFD flow solver.

Performance Evaluation, Scalability Analysis, and Optimization Tuning of Altair HyperWorks on a Modern HPC Compute Cluster

Engineers from wide ranges of industries face ever increasing needs for complex, realistic models to analyze the most challenging industrial problems; AcuSolve is designed to tackle these finite element-based Computational Fluid Dynamics (CFD) simulations with superior robustness, speed, and accuracy. AcuSolve simulations are designed to carry out on large-scale computational systems effectively. The breakthrough in HPC parallel computing that allows such complex analyses to be performed that generate the high-quality results, while reducing simulation time from days to just hours. Behind this type of computational improvement that makes AcuSolve perform, it involves complex calculations and data exchanges among computational systems. The more complex simulations are being performed, the higher demands from the cluster performance are. In this analysis, the HPC Advisory Council has performed a deep investigation and profiling for the AcuSolve CFD solver to evaluate its performance and scaling capabilities and to explore potential optimizations. This study presents the optimization techniques and networking profiling results to further understand AcuSolve dependencies on the CPUs, communication networks, IO subsystems and the underlying hardware. The paper will review the effects by comparing various hardware using different simulation models.

Benchmark Study: Optimizing High Fidelity Crash & Safety Simulation Performance

Cray, Intel and Altair have collaborated to analyze crash and safety simulation performance that provides engineers the power, speed and accuracy needed for their design analysis.

Benchmark Study: Optimized Drop Testing with Dell, Intel and Altair

Dell, Intel and Altair have collaborated to analyze a virtual drop test solution with integrated simulation and optimization analysis, delivering proven gains in speed and accuracy.

Intel Solution Brief: Maximize Performance and Scalability of RADIOSS on Intel® Xeon® Processor E7 v2 Family-Based Platforms

This paper summarizes the findings of a benchmark study with RADIOSS and Intel® Xeon® processors. In the study, Altair benchmarked RADIOSS using a modified crash simulation model on a single-node platform -- RADIOSS was able to easily take advantage of all 60 cores, running the workload 2.75X faster than on a comparable 24-core platform.

Accelerating Complex Simulations: An Example From Manufacturing - RADIOSS

Altair's software products enable a wide range of industries to conduct complex simulations crucial to engineering innovation and deliver reliable products to market. In a sector where supporting enhanced performance and new feature sets is critical, Altair is using Intel® Software Development tools to scale on Intel® Xeon® and Intel® Xeon Phi™ processors and coprocessors as quickly as possible to improve its customers' competitive advantage. Join us as Altair's Director of Engineering, Eric Lequiniou, discusses how Intel® tools help drive application innovation to provide the best possible performance.

ChassisSim Case Study: Suspension Geometry Design

This case study describes a method to short circuit the suspension geometry design of a vehicle using the motorsport simulation package ChassisSim.

Workshop28 - Coupling AcuSolve and HyperStudy

This tutorial demonstrates how to provide a DOE study using AcuSolve and HyperStudy

FEKO Case Study

FEKO Case Study: Advanced Computational Tools for Antenna Placement Studies in the automotive, aerospace and marine industries

Whirlpool Optimizes Design Problems and Significantly Cuts Prototyping Time and Cost

Case study on Whirlpool India’s usage of the Altair Partner Alliance

Multimatic Engages Altair Partner Alliance to Boost Business and Extend Analysis of Its Automotive Systems

As challenges to the auto industry became more complex, Multimatic needed to adopt new software tools to offer a broader range of component and system analyses. By accessing the APA suite of software, they were able to expand their capabilities and complete simulation work in a faster and more complete fashion, thus helping customers mitigate risk in their system designs.

Increasing Robustness and Reliability of a Race Car Engine with AcuSolve

This study is part of Prodrive’s implementation of AcuSolve to enhance its CFD capability after many years of outsourcing these simulations.

Biogemma Uses Improved Memory Sharing to Minimize Research Time

Written by SGI, this case study discusses how Biogemma, a plant biotechnology research firm, used PBS Professional to optimize the analysis pipeline, reducing runtimes by over 60%.

LinceoVR Case Studies

High level overview of the case studies that have taken place to demonstrate the usefulness and success of LinceoVR.

FEKO Webinar: EM Field Considerations in Healthcare

This webinar covers several case studies highlighting how electromagnetics simulation is applied to develop technology for the healthcare industry.

Intel-Colfax-Altair Trial Cluster Testimonial: Suncoke Energy

Suncoke used Colfax’s “Try Before You Buy” cluster trial program to run an AcuSolve simulation for analyzing the flow dynamics of a system under negative pressure and extreme temperatures. Their job ran over 16x faster on the cluster.

Reducing Weight and Maximising Fuel Efficiency of a Formula Student Car with OptiStruct

Durham University Electric Motorsport (DUEM), are a UK-based team of students who design, build and race electric vehicles. In this project, DUEM wanted to demonstrate how they have applied the latest weight saving technology to achieve a faster, more efficient car by optimising an upright design for multiple load cases. As existing users of the Altair HyperWorks simulation suite, the DUEM team looked to OptiStruct to help meet this challenge.

Topology Optimization of PMH Structures

This was an HTC 2011 presentation given by Vasant Pednekar from Lanxess Corporation. Design time, a major component of product design, is vastly reduced by application of computational FEA. However, optimizing a product for light weight design while conforming to its structural requirements in shortest possible time is always a Herculean task. This presentation highlights how the application of Optistruct methods in different stages of product design yields unorthodox design patterns pertaining to load cases analyzed leading to efficient design in lesser time.

PBS Professional Utilizes Intel Cluster Checker to Validate the Health of an HPC Cluster

On clusters that are Intel® Cluster Ready (ICR) certified, PBS Professional can utilize Intel® Cluster Checker for gathering real-time information about the cluster at the very moment a job has been scheduled. Using this immediate feedback, PBS Professional can ensure that a job is only being executed on a cluster that has passed a check by Intel Cluster Checker.

Scania

<b>Reducing the Development Cycle with Assembly Automation</b><br><br> European based heavy vehicles manufacturer, Scania, is known for its ability to deliver highly customized products. This concept creates a significant challenge for computer aided engineering (CAE) departments, as engineers must rapidly verify a number of different variants with finite element simulations. Therefore, automating the entire virtual model assembly process was a major goal for Scania. The process, which included tasks such as positioning hundreds of components, creating contact definitions and building part connections with pre-strained bolts, was time consuming and prone to error.

Dana Holding Corporation Increases Flexibility while Reducing Software Cost

Dana engineers increased their productivity and efficiency by gaining access to the APA suite of applications.

The Successful Application of HyperWorks at Lenovo

To increase efficiency, improve the quality of meshing and shorten CAE simulation time, Lenovo engineers needed to own a powerful pre-processing tool, one that would really meet the demands of scientific research and engineering innovation. For this task, they chose HyperMesh, an important component of the Altair HyperWorks suite.

QIMR Case Study: Altair and Dell Improve HPC Capabilities for Leading Research Institute

Queensland Institute of Medical Research (QIMR) is using PBS Professional on a Dell cluster to improve HPC computing. According to the CIO, “Everyone has benefited from this installation. Researchers can do things they couldn’t do before, like running jobs multiple times or utilizing larger data sets, to achieve outcomes they couldn’t otherwise get. It’s pretty easy to see the value."

HyperWorks, especially OptiStruct is one of the central tools supporting the CAE efforts of BASF Engineering Plastics

Mathematical optimisation methods can provide significant support in virtual CAE part development. In the early phases of the project topology optimisation affords valuable clues to the design of the geometry of the part.

Intel-Colfax-Altair Trial Cluster Testimonial: Nexteer Automotive

Nexteer Automotive used Colfax’s “Try Before You Buy” cluster trial program to run an OptiStruct simulation for design optimization. Their job ran in just 30 minutes instead of 2-3 days.

Topology Optimization of Racecar Suspension Uprights

This was an HTC 2011 presentation given by Billy Wight of Luxon Engineering. This presentation is a case study of applying Altair HyperWorks topology optimization techniques to the design and analysis of racecar suspension uprights. Utilizing manufacturing constraints, stress constraints, and multiple loadcases, topology optimization revealed an optimum material distribution in an efficient manner minimizing development time while maximizing design goals. This optimized design increases stiffness by 225% and reduces mass by 40% versus the original design while meeting stress constraints.

Stanley Black & Decker Case Study

Stanley Black & Decker chose Altair’s HyperWorks Unlimited to optimize their CAE processes for power tool design, enabling them to explore concepts more deeply, reduce cycle times and make better decisions faster.

Fatigue Life from Sine-on-Random Excitation

Fatigue life prediction of structures whose natural frequencies lie near the frequencies of the input loading requires the stress results from dynamic analyses. These analyses can be performed in either the time or the frequency domains depending on the nature or the loading. This presentation will outline the approaches available for fatigue life prediction using Altair OptiStruct and APA product, nCode DesignLife for both time and frequency based dynamic analyses. The strengths, weaknesses and assumptions of each approach will be presented, along with typical applications enabling the user to select the proper technique for their particular use case.

Intel Solution Brief: Maximize Performance and Scalability with RADIOSS on Intel® Xeon®

This paper summarizes the findings of a benchmark project to evaluate the performance and scalability of RADIOSS on Intel® Xeon® Processor E7 v2 family-based platforms.

AcuSolve Solver Setup in HyperMesh

Discrete or continous parameters can be defined and assigned to AcuSolve solver variables once the AcuSolve case is setup. The HyperStudy Job Launcher is used to transfer the relevant data to HyperStudy.

AcuSolve Validation - NACA0012 Airfoil

This benchmark validates AcuSolve for external aerodynamic applications. NACA0012 has been studied in depth both numerically and experimentally. AcuSolve results are compared with other CFD software results and with available test data

Weight Analytics Brochure

Altair's Weight Analytics (WA) solution manages the entire Weight and Balance (W&B) process empowering engineering and management teams to control and ensure W&B attributes meet program requirements. Deployed as a common weight management tool across the enterprise, WA enables faster and more accurate decision-making with on-demand access to visualize, analyse and predict W&B at any point in time during the entire Product Lifecycle (PLC). Highly configurable to work seamlessly within any IT environment, WA’s open architecture design streamlines time consuming repetitive tasks associated with data consolidation to provide the “right” information when it is needed.

Scheduling Jobs onto Intel® Xeon Phi™ using PBS Professional

Working closely with Intel, Altair has ensured that PBS Professional supports the Intel® Xeon Phi™ architecture targeting high performance computing applications. This paper describes the basic and advanced configurations of PBS Professional for scheduling jobs onto Intel Xeon Phi devices. <br> <a href="http://www.pbsworks.com/ResLibSearchResult.aspx?keywords=PBS%20Configuration%20Toolkit%20for%20Intel%20Xeon%20Phi:%20Download"><font color="#0099cc">PBS users: Download the toolkit to automate configuration of PBS for a Xeon Phi environment</font></a>

Luxon Engineering Applies Optimization-driven Design to Motocross Components

The motorcycles used in motocross racing demand light weight and high strength components in order to gain a performance advantage over the competition. In this video testimonial Billy Wight, President of Luxon Engineering, presents a case study of applying Altair HyperWorks optimization techniques in the design of a motocross triple clamp assembly and rear suspension linkage.

Luxon Engineering Applies Optimization-driven Design to Motocross Components

The motorcycles used in motocross racing demand light weight and high strength components in order to gain a performance advantage over the competition. In this video testimonial Billy Wight, President of Luxon Engineering, presents a case study of applying Altair HyperWorks optimization techniques in the design of a motocross triple clamp assembly and rear suspension linkage.

FEKO Webinar Recording: The CMA Advantage

In this webinar we cover some of the theory of CMA, as well as present several new case studies highlighting the CMA design advantage. These include optimum feeding and placement of antennas on platforms and decoupling of antenna elements in a MIMO configuration.

SELEX Galileo Deployed HyperMesh to Generate Electrically Large Surface Meshes with Dielectric Regions for Radar Cross Section (RCS) or Antenna Placement

This case study describes the process by which HyperMesh was used to generate 100 million mesh elements of a fast jet, with defined electrical properties at the element level. This was destined for use within electromagnetic (EM) solvers to calculate either the RCS of the aircraft, or to determine where to place an antenna for optimum performance. This was the first time that electrical properties could be assigned to models in a GUI environment, and the process has helped SELEX Galileo designers reduce development time in creating large EM models, which will drive down the cost of design activities.<br><br>

NVH Webinar Series : Squeak and Rattle Simulation at Scania and LeanNova

Altair's Squeak and Rattle Director is a novel set of comprehensive software automations to rapidly identify and analyze design alternatives to eliminate the root causes of squeak and rattle in assemblies.

Composites Analysis and Optimization

This webinar explores and demonstrates the comprehensive capabilities of HyperWorks to analyze, design, and optimize composite laminated composite structures.

nanoFluidX Product Brochure

Introduction to nanoFluidX, a particle-based fluid dynamics simulation tool to predict the flow in complex geometries with complex motion.

Introduction to nanoFluidX by FluiDyna

nanoFluidX is a particle-based fluid dynamics simulation tool to predict the flow in complex geometries with complex motion.

Automotive Closures Webinar

Automotive closures are a focus for innovation and vehicle weight reduction. Effectively utilizing simulation enables companies to reduce costs, improve efficiency and reduce risk while addressing these challenges. This webinar will discuss how CAE can assist engineers in finding solutions for closure design issues.

DSM Success Story

Thermal Analysis of LED Lamps using AcuSolve

Workshop21 - Modeling of Porous Media in AcuSolve

This tutorial teaches how to model porous media in AcuSolve

Workshop22 - Modeling of Fan Component in AcuSolve

This tutorial shows how to use the fan component in AcuSolve

Workshop24 - AcuTrace_Bidirectional Coupling with AcuSolve for flow of Miscible Fluids

This tutorials shows how to run AcuSolve and AcuTrace concurrently for flow of miscible fluids

Targeting Composite Wing Performance – Optimum Location of Laminate Boundaries

This paper investigates the application of newly available optimization functionality available in OptiStruct to provide design guidance to generate innovative laminate composite solutions. Due to the flexibility of laminate composites, it has great potential to exhibit displacement characteristics that could significantly increase the aerodynamic performance. Free element sizing technology is used to determine concept lay-up solutions. These solutions determine the laminate make-up, thickness and the various laminate boundaries of an aircraft wing covers under multiple loading conditions which meet the required displacement targets whilst also minimising mass. These preliminary studies demonstrate that the technology can successfully achieve displacement targets for multiple load cases. Each analysis study can be completed within minutes and consequently can be utilised as a valuable concept design tool.

AcuSolve Overview

See an overview of the new features within AcuSolve for 14.0.

ESAComp for Aerospace

One page flyer showcasing how ESAComp can be applied for design optimization in the aerospace industry.

Development of Tools to Streamline the Analysis of Turbo-Machinery

This was a 2012 Americas HTC Presentation given by Tom Lincoln from Cooper Standard. Cooper Standard partnered with Altair to create a tool in AcuSolve to speed the set-up of centrifugal pump CFD analyses. This tool steps the engineer through the selection of the components to the pump and then automatically identifies and meshes the surfaces in the model.

Multi-physics with MotionSolve

This was a 2012 Americas HTC Presentation given by Keshav Sundaresh & Rajiv Rampalli from Altair. Due to its system level focus, multi-body simulation is a natural environment for integrating the different technologies together. MotionSolve is an Industry proven multi-body simulation tool that provides a logical environment to integrate different technologies and solve the combined problem. This presentation discusses three topics: (a) The need for multi-disciplinary simulations and strategies for combining models; (b) Simulating real world phenomena using MotionSolve; (c) Case studies illustrating how customers have successfully used MotionSolve to solve multi-physics problems.

HyperWorks in the Development of Aeronautic Sensors

Esterline Advanced Sensors offers its customers a broad range of high precision solutions for aeronautics (cockpit, airframe and engine) and derivative products for marine, defense and the industrial sector. Read the Case Study to see how HyperMesh improved FE accuracy and saved on development time and costs.

Time v Frequency Domain Analysis For Large Automotive Systems

It has been recognised since the 1960’s that the frequency domain method for structural analysis offers superior qualitative information about structural response; But computational and technological issues have held back the implementation for fatigue calculation until now. Recent technological developments have now enabled the practical implementation of the frequency domain approach and this paper will demonstrate this, with particular reference to the technology limitations that have been overcome, the resultant performance advantages, and accuracy. These techniques are of relevance to all the large automotive OEM’s as well as aerospace T1 suppliers and example case studies from these companies will be included.

ChassisSim Case Study: Tuning Dampers on a Road Car

This case study focuses on applying ChassisSim to tune dampers of a road car - particularly by using the lap time simulation to tune the dampers of a vintage Porsche 911 car and how the shaker rig toolbox was used to tune the dampers on a GT car.

Virtual and Augmented Reality for the GDO Sector

An Italian Business Case About the Digital Marketing Suite, LinceoVR, and the Mass Retail Channel.

DSHplus + APA Usage Scenarios

One slide representing different use cases of the systems simulation tool within the APA.

What's New in Inspire 2015: G Loads

Apply G Loads in an existing or new load case to create more realistic outputs.

ExoMars Rover Airbag Design and Reliability Optimization

Astrium used HyperStudy with LS-Dyna to not only optimize the landing behavior of the ExoMars lander but also to investigate the probability of failure using HyperStudy’s stochastic engine. HyperWorks’ process automation engine helped to quickly create design variations.

Designing All-Terrain Vehicle Frames Using Topological Optimization

Upfront concept design optimization on a all terrain vehicle frame resulted in a 9% mass reduction. Using Design of Experiment (DOE) methods, peak accelerations during crash decreased by 22%.

AlphaCell Top Use Cases

Presentation introducing a few of the top use cases for the NVH software, AlphaCell.

CADdoctor Top Use Cases

Presentation introducing a few of the top use cases for the geometry cleaning software, CADdoctor.

KTex Family Top Use Cases

Presentation introducing a few of the top use cases for the composites software, KTex Family.

MADYMO Top Use Cases

Presentation introducing a few of the top use cases for the crash and safety software, MADYMO.

nanoFluidX Top Use Cases

Presentation introducing a few of the top use cases for the CFD software, nanoFluidX.

nCode DesignLife Top Use Cases

Presentation introducing a few of the top use cases for the durability software, nCode DesignLife.

Intel Case Study: Altair Speeds Complex Simulations and Workload Management with RADIOSS and PBS Professional on Xeon Phi

Altair is one of the first software vendors to support the Intel Xeon Phi Coprocessor. PBS Professional, Altair’s leading workload management product, supports Xeon Phi out of the box, and we have ported our RADIOSS solver to Xeon Phi.

White Paper: HPC Advisory Council studies performance, scalability and optimization tuning of RADIOSS 12.0 on a modern HPC cluster

This white paper discusses results from a benchmark study conducted by the HPC Advisory Council, who analyzed RADIOSS 12.0 to determine its performance, scaling and optimization capabilities on a modern high performance computing (HPC) cluster. The paper also presents an overview of RADIOSS features and capabilities that support the software’s scalability, quality and robustness.

Intel Solution Brief: Altair and Simulation-Driven Design

Altair and Intel offer a simple, cost-effective on-ramp to a complete simulation-driven design platform. This paper describes joint offerings including HPC and CAE in the public cloud.

Optimization Methods Land Results in ExoMars Project

Sophisticated simulation tools enable aerospace engineers to study the feasibility of airbag landing systems.

Applications of Advanced Composite Simulation and Design Optimization

Usage of fiber reinforced composite material entered an new era when leading aircraft OEMs took an unprecedented step to design and manufacture essentially full composite airframe for commercial airliners. Composite structures offer unmatched design potential as the laminate material properties can be tailored almost continuously throughout the structure. However, this increased design freedom also brings new challenges for the design process and software. Moreover, as a relatively new material, composite behaviors are more complex and less fully understood by design engineers. Therefore, reliable simulation for highly complex events like bird strike and ditching can play an important role in shortening the product design cycle. This paper showcases two area of CAE tools for composite applications. On advanced simulation, bird strike simulation with Altair RADIOSS [1] is demonstrated on an aircraft underbelly fairing. On design optimization, an airplane wing structure is designed using an innovative composite optimization process implemented in Altair OptiStruct [1-3]. OptiStruct has seen increasing adoption among aerospace OEMs, as demonstrated in the Bombardier application process described in this paper.

Risk Analysis of Tubing Design: Integrating DOE and Stochastic Study into Design Optimization

This was a 2010 Americas HTC Presentation given by Guijun Deng from Baker Hughes. In this presentation, a new design approach is presented: risk analysis of tubing design through integrating design of experiment (DOE) and stochastic study into design optimization. Application of the new approach using Altair HyperStudy will be illustrated by a design example involving a tubing design for a high pressure/ high temperature well, where both material properties and geometry are treated as randomized design variables. This process avoids over-conservative design and, therefore, excessive cost.

Seat Design for Crash in the Cloud - NAFEMS World Congress 2015

The benefit of design exploration and optimization is understood and accepted by engineers but the required intensive computational resources have been a challenge for their adoption into the design process. The HyperWorks Unlimited (HWUL) appliance provides an effective solution to these challenges as it seamlessly connects all the necessary tools together in the cloud. The aim of this study is to showcase the benefits of HWUL on an optimization driven design of a complex system. For this purpose an automotive seat design for crash loadcases is selected.

Workshop23 - AcuTrace_Bidirectional Coupling with AcuSolve for Heat Transfer

This tutorials shows how to run AcuSolve and AcuTrace concurrently to compute unsteady flow with heat transfer around a cylinder

MapView CAE Datasheet

MapView is a revolutionary tool for analyzing multi-dimensional data, allowing users to explore itsentire structure.

Demo: Compute Manager and AcuSolve in Display Manager

A 5 minute high resolution demo of using AcuSolve and Compute Manager in Display Manager. Please note there is no audio.

RadTherm + AcuSolve: Customer Validation of Thermoelectric HVAC in Light Duty Vehicles

Ford Motor Company validates the application of RadTherm and AcuSolve for thermoelectric HVAC in light-duty vehicles.

Applications of Acusolve and Optistruct in the High-Temperature Reformation of Biomass

Applications of Acusolve and Optistruct in the High-Temperature Reformation of Biomass presentation given by Tim Laska of sundrop fuels at ATCx Energy.

AcuSolve Tutorial Book

The AcuSolve installation now comes equipped with tutorials that provide detailed instructions for getting started (with a code) and working with some of the commonly used features.

Webinar: PBS Analytics

Our module provides HPC administrators with a suite of simple, customizable tools for analyzing complicated job data, providing visibility into how your valuable HPC assets are being utilized.<br><br> <i>This recording is from a live webinar that took place on September 23, 2010. </i>

Structural Design of Concrete Shells in Seismic Areas Using HyperWorks

Challenge: Structural optimization to design expressive structures that can safely be employed in seismic areas Altair Solution: Investigate shell structures

Introduction to AcuSolve

Altair® AcuSolve® is a leading general-purpose Computational Fluid Dynamics (CFD) solver that is capable of solving the most demanding industrial and scientific applications. Based on the Finite Element method, AcuSolve’s robust and scalable solver technology empowers users by providing unparalleled accuracy on fully unstructured meshes. Applications ranging from steady RANS simulations to complex, transient, multiphysics simulations are handled with ease and accuracy.

SOGECLAIR Aerospace Employs HyperWorks to Optimize Additively Manufactured Aircraft Components: Topology optimization of a large engine pylon structure

To find new development and manufacturing approach to reduce weight while ensuring safety, HyperWorks offers SOGECLAIR Aerospace an innovative, streamlined development environment with more design freedom, faster development cycles, and lower costs. A CAE-driven design process combining topology optimization using OptiStruct and Additive Layer Manufacturing (ALM).

Design Optimization of Axles using Inspire and OptiStruct

Use Inspire to form optimization from the packaging space, performance loading and manufacturing constraints to design an axle close to production ready design. The model setup requires careful setting of axle internal component design and oil flow consideration. Since Inspire does not provide weighting for different load cases, the author was able to gain from trial run to determine the balanced load application, mass target and meshing size requirement to obtain realistic design.

Structural Component Design Optimization for Additive Manufacture

Additive manufacturing (AM) technology enables the possibility of realizing highly efficient, optimized structural components with configurations not achievable using conventional manufacturing methods. The Altair and Solid Thinking toolsets provide advanced capabilities to design structural topologies to minimize weight and maximize other performance criteria. However, conventional manufacturing processes require application of design constraints, such as directional access for machining, in the optimization that limit the structural efficiency of the resulting design. AM can remove many of these constraints to allow for more efficient configurations under the applied loading conditions. Case studies show the potential to reduce weight up to 30% for components with applied bending and torsional loads by allowing increased complexity configurations that could only be manufactured additively.

CCC and CSC Top Use Cases

Presentation introducing a few of the top use cases for the crash and safety software, Crash Cad Calculate and Cross Section Creator.

Mechanical Simulation Top Use Cases

Presentation introducing a few of the top use cases for the vehicle dynamics simulation software, CarSim, BikeSim and TruckSim.

AcuSolve Optimizations for Scale

This was a 2012 Americas HTC Presentation given by Gilad Shainer & Todd Wilde from the HPC Advisory Council. AcuSolve is a leading general-purpose finite element-based Computational Fluid Dynamics (CFD) flow solver with superior robustness, speed, and accuracy. AcuSolve simulations are typically carried out on HPC systems. The HPC Advisory Council has performed a deep investigation and profiling for AcuSolve to understand its performance and scaling capabilities and to explore potential optimizations. This paper presents the optimization techniques and networking profiling results to further understand AcuSolve dependencies on the network and the MPI library, and options for future optimizations using MPI offloads.

DOE Study Using HyperStudy and MADYMO

This tutorial outlines how to set up a DOE study in HyperStudy using Madymo as a solver.

Creating an Optimization Study Using HyperStudy and MADYMO

This tutorial illustrates how to setup an optimization study that combines MADYMO/Workspace Objective Rating with Hyperstudy.

Altair HyperXtrude 2015 Brings Extrusion Simulation to the Shop Floor

Extrusion companies today must create a more extensive mix of complex profiles in shorter product-development cycles. At the same time, they seek to reduce production costs. With HyperXtrude 2015, engineers can analyze material flow and heat transfer inside a die during extrusion to validate die designs and thereby reduce or eliminate costly and time-consuming trials. This complimentary 45 minute webinar will help you learn how HyperXtrude 2015 and its intuitive interface can help streamlining your workflow for extrusion die design and manufacturing.

RADIOSS Case Study with PSA Peugeot Citroën and Bull

PSA Peugeot Citroën collaborated with Altair, Bull, PRACE and others to perform a study of automotive crash rupture simulations, investigating ways to improve material failure criteria and better predict cracks.

Thales Alenia Space

Companies from across a wide range of industries are attempting to find the potential impact that additive manufacturing (AM) could have on design and manufacturing processes. During its own efforts to explore AM and its potential for space satellite development programs, Thales Alenia Space Spain wanted to conduct a research project to see how optimization techniques could be used in conjunction with new manufacturing technology. The primary objective of the study was to use design optimization techniques to reduce the thermal compliance of a satellite’s aluminium filter bracket, while also optimizing the component for weight and readying the final design for the additive manufacturing process.

ESAComp for Automotive Use Case

ESAComp is software for analysis and design of composites. Its scope ranges from conceptual and preliminary design of layered composite structures to advanced analyses that are applicable to the final verification of a design.

Putting the WHOA! into High-Performance Boats

Baja Marine dives into simulation technology, analyzing force, weight, and resistance to build speedies, and better, boats.

AcuNexus Brochure

Short overview of AcuNexus, highlighting benefits and capabilities of the NVH software.

Intro to AcuNexus Presentation

Introduction to CFD software, AcuNexus, and its use of abstract modeling.

Geometry Preparation in AcuNexus

Guide to preparing geometry for use in AcuNexus.

Workshop19 - Batch Mixer with Reference Frame

This tutorial provides the basic information regarding AcuTrace and how to use it. A Batch Mixer model is solved using AcuSolve and AcuTrace to compute the particle traces for flow field generated by AcuSolve. The output is visualized using AcuDisplay and AcuFieldView

Predicting the Dynamics of Mechanical Systems in the Automotive Industry

The application of CAE tools to help design and develop mechanical systems in the automotive industry is a widely accepted practice. This paper highlights various applications of these tools, in particular, the application of MotionView and MotionSolve from Altair Engineering. Each example demonstrates the advantages of using such tools to work rapidly and seamlessly within the general design process. This results in the development of innovative designs to face challenging problems in a short time frame.

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