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DTSTART:20180423T130000
DTEND:20180423T140000
SUMMARY:DCAMM Seminar - Nonlinear Response Structural Optimization Using the Equibalent Static Loads Method
DESCRIPTION:<p style="text-align: left;">A DCAMM seminar&nbsp;will be presented by </p>\n<p align="center" style="text-align: center;"><strong><span>Professor Gyung-Jin Park<br>\nDepartment of Mechanical Engineering,<br>\nHanyang University, Korea<br>\n</span></strong></p>\n<br>\n<p align="center" style="text-align: center; margin-bottom: 0pt;"><strong><span>\n</span></strong>\n<strong style="text-align: justify;"></strong></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><strong style="text-align: justify;">Abstract</strong><span style="text-align: justify;">:&nbsp;</span><strong>&nbsp;<br>\n<br>\n<span></span></strong><span>Linear static response structural response has been developed quite well by using the finite element method for linear static analysis. However, development is extremely slow for structural optimization where a non linear static analysis technique is required.&nbsp;Optimization methods using equivalent static loads (ESLs) have been proposed to solve various structural optimization disciplines. The disciplines include linear dynamic response optimization, structural optimization for multi-body dynamic systems, structural optimization&nbsp; for flexible multibody dynamic systems, nonlinear static response optimization and nonlinear dynamic response optimization. The ESL is defined as the static load that generates the same displacement field by an analysis which is not linear static. An analysis that is not linear static is carried out to evaluate the displacement field. ESLs are evaluated from the displacement field, linear static response optimization&nbsp;is performed by using the ESLs, and the design is updated. This process proceeds in a cyclic manner. The method is named as Equivalent Static Loads method for non linear static response Structural Optimization (ESLSO or ESLM).<br>\n<br>\nOut of various methods of ESLM, nonlinear dynamic response optimization is introduced. Nonlinear dynamic response analysis is carried out by a commercial system such as LS/DYNA, the ESLs are generated and linear static optimization is performed by a commercial optimization system such as OptiStruct, Genesis and Nastran. The interface module for the software systems is developed. Size and shape optimizations as well as topology optimization are demonstrated by using examples. Especially, crashworthiness and metal forming optimizations using ESLSO are presented with various examples. Recent development such as the hydroforming problem and the optimal control problem is demonstrated. Currently, ESLM is working with LS/DYNA for nonlinear analysis. The interface with other systems <br>\nsuch as Abaqus, Ansys, etc. is discussed. The installation status of the method in the commercial software systems is shown and the future direction of the method is discussed</span></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><span> <span style="text-align: left;">&nbsp; <br>\n</span><span style="text-align: left;">Danish pastry, coffee and tea will be served 15 minutes before the seminar starts.</span></span></p>\n<p style="text-align: justify;"><span>&nbsp;&nbsp;</span><br>\nAll interested persons are invited.<br>\n<br>\n</p>
X-ALT-DESC;FMTTYPE=text/html:<p style="text-align: left;">A DCAMM seminar&nbsp;will be presented by </p>\n<p align="center" style="text-align: center;"><strong><span>Professor Gyung-Jin Park<br>\nDepartment of Mechanical Engineering,<br>\nHanyang University, Korea<br>\n</span></strong></p>\n<br>\n<p align="center" style="text-align: center; margin-bottom: 0pt;"><strong><span>\n</span></strong>\n<strong style="text-align: justify;"></strong></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><strong style="text-align: justify;">Abstract</strong><span style="text-align: justify;">:&nbsp;</span><strong>&nbsp;<br>\n<br>\n<span></span></strong><span>Linear static response structural response has been developed quite well by using the finite element method for linear static analysis. However, development is extremely slow for structural optimization where a non linear static analysis technique is required.&nbsp;Optimization methods using equivalent static loads (ESLs) have been proposed to solve various structural optimization disciplines. The disciplines include linear dynamic response optimization, structural optimization for multi-body dynamic systems, structural optimization&nbsp; for flexible multibody dynamic systems, nonlinear static response optimization and nonlinear dynamic response optimization. The ESL is defined as the static load that generates the same displacement field by an analysis which is not linear static. An analysis that is not linear static is carried out to evaluate the displacement field. ESLs are evaluated from the displacement field, linear static response optimization&nbsp;is performed by using the ESLs, and the design is updated. This process proceeds in a cyclic manner. The method is named as Equivalent Static Loads method for non linear static response Structural Optimization (ESLSO or ESLM).<br>\n<br>\nOut of various methods of ESLM, nonlinear dynamic response optimization is introduced. Nonlinear dynamic response analysis is carried out by a commercial system such as LS/DYNA, the ESLs are generated and linear static optimization is performed by a commercial optimization system such as OptiStruct, Genesis and Nastran. The interface module for the software systems is developed. Size and shape optimizations as well as topology optimization are demonstrated by using examples. Especially, crashworthiness and metal forming optimizations using ESLSO are presented with various examples. Recent development such as the hydroforming problem and the optimal control problem is demonstrated. Currently, ESLM is working with LS/DYNA for nonlinear analysis. The interface with other systems <br>\nsuch as Abaqus, Ansys, etc. is discussed. The installation status of the method in the commercial software systems is shown and the future direction of the method is discussed</span></p>\n<p align="center" style="text-align: justify; margin-bottom: 0pt;"><span> <span style="text-align: left;">&nbsp; <br>\n</span><span style="text-align: left;">Danish pastry, coffee and tea will be served 15 minutes before the seminar starts.</span></span></p>\n<p style="text-align: justify;"><span>&nbsp;&nbsp;</span><br>\nAll interested persons are invited.<br>\n<br>\n</p>

URL:http://www.dcamm.dk/da/Kalender/2018/04/Seminar_No_722
DTSTAMP:20260929T084300Z
UID:{1B5B519B-354C-4953-BE29-0188B6C67FB6}-20180423T130000-20180423T130000
LOCATION: Room Poul la Cour, , Building 118, DTU Risø Campus, Frederiksborgvej 399, , 4000  Roskilde, , , , 
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