Get Free Shipping on orders over $79
Model Order Reduction Techniques with Applications in Finite Element Analysis - Zu-Qing Qu

Model Order Reduction Techniques with Applications in Finite Element Analysis

By: Zu-Qing Qu

eText | 14 March 2013

At a Glance

eText


$239.00

or 4 interest-free payments of $59.75 with

 or 

Instant online reading in your Booktopia eTextbook Library *

Why choose an eTextbook?

Instant Access *

Purchase and read your book immediately

Read Aloud

Listen and follow along as Bookshelf reads to you

Study Tools

Built-in study tools like highlights and more

* eTextbooks are not downloadable to your eReader or an app and can be accessed via web browsers only. You must be connected to the internet and have no technical issues with your device or browser that could prevent the eTextbook from operating.
Despite the continued rapid advance in computing speed and memory the increase in the complexity of models used by engineers persists in outpacing them. Even where there is access to the latest hardware, simulations are often extremely computationally intensive and time-consuming when full-blown models are under consideration. The need to reduce the computational cost involved when dealing with high-order/many-degree-of-freedom models can be offset by adroit computation. In this light, model-reduction methods have become a major goal of simulation and modeling research. Model reduction can also ameliorate problems in the correlation of widely used finite-element analyses and test analysis models produced by excessive system complexity. Model Order Reduction Techniques explains and compares such methods focusing mainly on recent work in dynamic condensation techniques: - Compares the effectiveness of static, exact, dynamic, SEREP and iterative-dynamic condensation techniques in producing valid reduced-order models; - Shows how frequency shifting and the number of degrees of freedom affect the desirability and accuracy of using dynamic condensation; - Answers the challenges involved in dealing with undamped and non-classically damped models; - Requires little more than first-engineering-degree mathematics and highlights important points with instructive examples. Academics working in research on structural dynamics, MEMS, vibration, finite elements and other computational methods in mechanical, aerospace and structural engineering will find Model Order Reduction Techniques of great interest while it is also an excellent resource for researchers working on commercial finite-element-related software such as ANSYS and Nastran.
on
Desktop
Tablet
Mobile

More in Applied Mathematics

Discrete and Computational Geometry, 2nd Edition - Satyan L. Devadoss

eBOOK

Markov Chains : Theory and Applications - C.R. Rao

eBOOK

RRP $359.04

$323.99

10%
OFF
Handbook of Computer Architecture - Anupam Chattopadhyay

eBOOK

RRP $969.00

$872.99

10%
OFF
Grape Explications - Neal D. Hulkower

eBOOK

RRP $18.69

$17.99

Pi the Laws of Duality - G. Neal

eBOOK