There are 1483 results
POWERFLOW FOR HVAC SYSTEM AND BLOWER NOISE

As vehicle manufacturers seek to reduce the noise levels experienced by passengers, the noise due to the heating, ventilation, and air conditioning (HVAC) system becomes a target for improved acoustic performance. An HVAC system is complex, consisting of a blower and mixing unit coupled to many ducts through which air is transported to various locations, including faces and feet of front and rear passengers, as well as windshield and side glass defrost.

Solution Briefs

POWERFLOW FOR HVAC SYSTEM AND BLOWER NOISE
POWERFLOW FOR PANEL DEFORMATION

To maximize fuel efficiency and performance, vehicles are designed with minimum weight, which can reduce the cost of parts and directly reduces the engine power required for vehicle acceleration. However, the reduction of material from structural parts and body panels leads to reduced stiffness and increases the susceptibility of the parts to vibration, which might transmit noise to the vehicle interior.

Solution Briefs

POWERFLOW FOR PANEL DEFORMATION
XFEM Modeling of Mixed-Mode Cracks in Thin Aluminum Panels

The Extended Finite Element Method (XFEM) capabilities of Abaqus V6.9-EF1 could have a significant impact on finite element modeling of failure for the U. S. Army. The Army has many areas where fracture is important from failure of components, to penetration, to warhead development. To assess the value of XFEM under static loading, comparisons were made with experimental data of notched panels.

Customer Papers

XFEM Modeling of Mixed-Mode Cracks in Thin Aluminum Panels
Predictive Crashworthiness Simulation in a Virtual Design Process without Hardware Testing

This paper intends to demonstrate some of the capabilities of Abaqus/Explicit for crashworthiness and occupant safety, with a strong focus on predictiveness and reliability. These factors are prerequisites for an efficient, cost-effective vehicle development process that relies less and less on physical prototypes and testing. And it explains why BMW has now reconfirmed the earlier decision to use Abaqus/Explicit for its crashworthiness and occupant safety simulation.

Customer Papers

Predictive Crashworthiness Simulation in a Virtual Design Process without Hardware Testing
Novel Approach to Conducting Blast Load Analyses Using AbaqusExplicit-CEL

A new method is introduced for conducting blast load analyses using the new CoupledEulerian-Lagrangian (CEL) capability of Abaqus/Explicit. In the past, either a 1-D blast code or tabular data was used to determine a pressure vs. time curve that would be applied to the exterior surfaces that were assumed to interact with the blast wave. These pressure curves were generated using knowledge of the amount/type of explosive and line-of-sight distance away from the explosion. While this method remains valid, with increasingly complex structural geometry, oblique surfaces, and with corners facing the blast, the amount of overhead required to analytically determine the necessary pressure loading for each of the various surfaces becomes exhaustive.

Customer Papers

Novel Approach to Conducting Blast Load Analyses Using AbaqusExplicit-CEL
Investigation of the failure behavior of a cranial implant-skull model under different load conditions using FEM

Cranioplasty is a surgical treatment that uses cranial prostheses to restore skull bone defects. However, the reconstruction of large osseous defects is still challenging. A method of treatment was developed at the MUMC in a collaboration of radiologists, computer engineers and cranio-maxillofacial surgeons where Titanium and Polyetheretherketone were used to manufacture the implants. The purpose of the present work - performed at the AME - was to build a simulation model to investigate the effect of stresses on the aforementioned prostheses, with a focus on fixation screws and bone-implant interface.

Customer Papers

Investigation of the failure behavior of a cranial implant-skull model under different load conditions using FEM
Validation of Abaqus Explicit – CEL for classes of problems of interest to the U.S. Army

In developing weapon systems for the warfighter, the US Army uses modeling and simulation tools to support the design, test and manufacturing of these systems. One of these tools is Abaqus/Explicit, including the coupled Eulerian-Lagrangian capability CEL. The addition of CEL in version 6.7EF-1 opened the door to a new realm of problems that could not be previously be modeled. With the addition of this new capability came the need for internal validation to establish a level of confidence for the class of problems of interest to the U.S. Army. Over the course of 2 years, several validation problems were modeled and the results compared to either experimental or analytical results.

Customer Papers

Validation of Abaqus Explicit – CEL for classes of problems of interest to the U.S. Army
Application of CAE to Optimize Wiper System on Wiping and Fatigue Performance

Main function of wiper system is that secure a clear view to driver by removing the various obstacles, such as rain, snow and dust. To obtain optimized performances of wiper system under the consideration of many factors, the applications of CAE are needed. We developed FE analysis techniques based on ABAQUS can evaluate the wiping performance at the initial design stage. Also, It's possible to calculate durability and strength of wiper links for various loading conditions.

Customer Papers

Application of CAE to Optimize Wiper System on Wiping and Fatigue Performance
First Experience with Simulia's Headform Models for Pedestrian Protection Analysis

The development of countermeasures for pedestrian protection in automotive design is based on numerical analysis. The quality of the development depends on the quality of the provided impactor models. Here, the requirements of pedestrian protection testing and the standard procedure of the numerical analysis are explained. First experience with the recently by Simulia developed headform models are described.

Customer Papers

First Experience with Simulia's Headform Models for Pedestrian Protection Analysis
Process Automation for the Construction of a Finite Element Model of a Diesel Powertrain

The design of an industrial product involves the contribution of two main groups of technicians: those who propose design solutions and those who analyze their performances from the points of view of various physical disciplines. Their jointed efforts are aimed at finding a trade-off between several, and sometimes conflicting, needs. Such a process is often very time-consuming, being heavily influenced by the implementation of the procedures for the analyses. This process could be improved by reducing the time spent to perform repetitive actions such as the built-up of the mathematical models, so leaving the analyst more time for carefully assessing the results and propose modifications to the designs.

Customer Papers

Process Automation for the Construction of a Finite Element Model of a Diesel Powertrain
Seismic Response of Floating Roof Storage Tanks Contact Pressure Analysis

This paper discusses an approach used in Abaqus to calculate the stresses and deformations of a liquid storage tank floating roof under seismic loading. It represents a novel application of contact theory to achieve a solution to this problem. The method is validated by a fully coupled fluid-structure interaction (FSI) finite element analysis using actual earthquake ground accelerations.

Customer Papers

Seismic Response of Floating Roof Storage Tanks Contact Pressure Analysis
A Collaborative Engineering Platform for Supporting Design Optimisation of Advanced Aero Engine Sub-Systems

Modern engineering design optimisation processes require an increasing distribution of calculation activities between distributed collaborating teams, laboratories, Universities and companies. The aerospace industry has an increasing need to establish efficient Collaborative Frameworks between partners with the aim at reducing design redundancies and accelerating the required design optimisation loops, moving the focus from separated centres towards a strongly connected innovation network. This paper will present an Italian collaborative innovation network involving Avio S.p.a. and his two university research centres Great Lab and ePaintLab. The scenario presented is focused on the collaborative network set-up aiming at addressing advanced multi-disciplinary design optimisation strategies supporting next generation of jet engine subsystems design.

Customer Papers

A Collaborative Engineering Platform for Supporting Design Optimisation of Advanced Aero Engine Sub-Systems
There are 245 results

Customer stories

There are 130 results

From the communities

There are 6 results

SIMULIA Self Learning

We provide hundreds of self-learning modules so you can continue to learn at your convenience

Blogs

Read the SIMULIA blog on the latest news and innovations from our experts.

There is no result

Learn What SIMULIA Can Do for You

Speak with a SIMULIA expert to learn how our solutions enable seamless collaboration and sustainable innovation at organizations of every size.

Get Started

Courses and classes are available for students, academia, professionals and companies. Find the right SIMULIA training for you. 

Get Help

Find information on software & hardware certification, software downloads, user documentation, support contact and services offering