Ansys Reference Book

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Ansys Reference Book

  1. 1. ANSYS 參考書籍 虎門科技 整理 Michle Chen Edited, 2001/9/13 Matien Yang Modified, 2004/6/16
  2. 3. 出版日期: 2004/2/2
  3. 10. 電腦輔助工程分析之實務與應用 <ul><li>電腦輔助工程分析 CAE ,為現今熱門之課題,舉凡應用電腦以自行設計開發之程式或商用軟體,進行工程問題之解析,均可謂之。本書內容介紹工程分析之步驟與流程及有限元素分析之基本概念及名詞釋義,包括元素、節點、自由度、元素類別、應用範圍、及有限元素分析之應用步驟。再循序漸進介紹各種不同結構特性之靜力分析,如桁架元素、樑元素、平面元素 ... 等。最後探討結構振動分析與 CAE 應用之進階,使讀者能更有效率的使用 CAE 軟體。本書適合大專院校機械科系、土木科系電腦輔助工程分析之有限元素、架構分析課程使用,及對此軟體有興趣者。 </li></ul>作者:王柏村 出版社:全華科技圖書公司
  4. 11. ANSYS 電腦輔助工程分析 <ul><li>主要針對 CAE 之初學者而編著 </li></ul><ul><li>電腦輔助工程分析( CAE:Computer Aided Engineering )可彌補一般專科生在經驗和學理上的不足 ,加強在精密結構和元件設計的能力 </li></ul>作者:賴育良 出版社:儒林出版社
  5. 12. ANSYS 工學解析入門 <ul><li>書籍名「 ANSYS 工學解析入門」 </li></ul><ul><li>CAD/CAE 研究會編 </li></ul><ul><li>主編:東京理科大學教授 吉本 成香 </li></ul><ul><li>日文編寫 </li></ul><ul><li>出版社:理工學社 </li></ul><ul><li>定價: 2900 日圓 </li></ul>
  6. 13. Finite Element Analysis: Theory and Application with ANSYS <ul><li>From Book News, Inc. </li></ul><ul><li>A textbook for undergraduate engineering students and professionals in the field new to finite element analysis. Introduces the technique using the general-purpose finite element computer program, ANSYS. Generally avoids deep theory, but provides enough on each topic to allow readers to use the software intelligently. Presents simple problems that can be solved with hand calculations, then more difficult ones that require a computer, in order to set out the steps clearly then show how they translate into automation. A final chapter introduces design optimization and parametric programming. Book News, Inc.R, Portland, OR </li></ul><ul><li>Book Info </li></ul><ul><li>Designed to assist engineering students and practicing engineers new to the field, to gain a clear understanding of the fundamentals to finite element modeling. Offers insight into the theoretical aspects of finite element analysis, without overwhelming the student with it. DLC: Finite element method--Data processing. </li></ul>Author: Saeed Moaveni Publish: Prentice Hall
  7. 14. Vibration Simulation Using MATLAB and ANSYS <ul><li>Book Description </li></ul><ul><li>Transfer function form, zpk, state space, modal, and state space modal forms. For someone learning dynamics for the first time or for engineers who use the tools infrequently, the options available for constructing and representing dynamic mechanical models can be daunting. It is important to find a way to put them all in perspective and have them available for quick reference.It is also important to have a strong understanding of modal analysis, from which the total response of a system can be constructed. Finally, it helps to know how to take the results of large dynamic finite element models and build small MATLAB?state space models.Vibration Simulation Using MATLAB and ANSYS answers all those needs. Using a three degree-of-freedom (DOF) system as a unifying theme, it presents all the methods in one book. Each chapter provides the background theory to support its example, and each chapter contains both a closed form solution to the problem-shown in its entirety-and detailed MATLAB code for solving the problem. Bridging the gap between introductory vibration courses and the techniques used in actual practice, Vibration Simulation Using MATLAB and ANSYS builds the foundation that allows you to simulate your own real-life problems.FeaturesoDemonstrates how to solve real problems, covering the vibration of systems from single DOF to finite element models with thousands of DOFoIllustrates the differences and similarities between different models by tracking a single example throughout the bookoIncludes the complete, closed-form solution and the MATLAB code used to solve each problemoShows explicitly how to take the results of a realistic ANSYS finite element model and develop a small MATLAB state-space modeloProvides a solid grounding in how individual modes of vibration combine for overall system response </li></ul>Author: Michael R. Hatch Publish: CRC Press
  8. 15. ANSYS, INC.: International Competitive Benchmarks and Financial Gap Analysis (Financial Performance Series) <ul><li>Excerpted from ANSYS, INC.: International Competitive Benchmarks and Financial Gap Analysis (Financial Performance Series) by Icon Group Ltd.. Copyright c 2000. Reprinted by permission. All rights reserved </li></ul><ul><li>Though we heavily rely on historical performance, the figures reported in this report are not historical but are forecasts and projections for the coming fiscal year. The forecasts are updated quarterly. This particular report was updated in the last quarter. In order to maintain comparability over time and across companies and countries, we use an index system. In the case of a firm's assets, we treat the total assets as equaling 100, irrespective of the value of the local currency. All other assets are then calculated as a percent from total assets. In this way, the structure of the firm's assets can be easily interpreted and compared with international benchmarks. For liabilities, total liabilities and equity are indexed to equal to 100. For the income statement, total revenue is indexed to equal 100, and all other figures are calculated as a percent of these figures. Ratios are projected using raw financial statistics and, as ratios, are therefore comparable. The source(s) for the various raw statistics include public filings, corporate releases, and various other data sources. </li></ul><ul><li>Given a company's financial structure, the resulting figures are benchmarked across &quot;leading competitors&quot;. In choosing the leading competitors, Icon Group chooses only those firms with sound financial situations or those not undergoing radical restructuring, or where random volatility, mergers, or bankruptcy affects financial performance. </li></ul><ul><li>Since the calculation of competitors' benchmarks proceeds in a similar fashion, but are aggregated across all competitors, one can directly conduct a financial gap analysis. Here, Icon Group graphically reports, for each part of the financial statement, the larger gaps that the firm has vis--vis the leading competitors. A gap need not be a bad sign. Rather, it is simply a substantial difference that might merit further attention or signal a firm's relative strength or weakness for the coming fiscal year. Again, all figures are projections, so due caution is required. </li></ul>Author:Icon Group Ltd. Publish:Icon Group International
  9. 16. ANSYS, INC.: Labor Productivity Benchmarks and International Gap Analysis (Labor Productivity Series) <ul><li>Excerpted from ANSYS, INC.: Labor Productivity Benchmarks and International Gap Analysis (Labor Productivity Series) by Icon Group Ltd.. Copyright c 2000. Reprinted by permission. All rights reserved </li></ul><ul><li>Though we heavily rely on historical performance, the figures reported in this report are not historical but are forecasts and projections for the coming fiscal year. The forecasts are updated quarterly. The source(s) for the various raw statistics include public filings, corporate releases, and various other data sources. </li></ul><ul><li>Given a company's financial structure, the resulting figures are benchmarked across &quot;leading competitors&quot;. In choosing the leading competitors, Icon Group chooses only those firms with sound financial situations or those not undergoing radical restructuring, or where random volatility, mergers, or bankruptcy affects financial performance. </li></ul><ul><li>Since the calculation of competitors' labor ratios proceeds in a similar fashion, but are aggregated across all competitors, one can directly conduct a gap analysis. Here, Icon Group graphically reports, for each labor productivity area the larger gaps that the firm has vis--vis the leading competitors. A gap need not be a bad sign. Rather, it is simply a substantial difference that might merit further attention or signal a firm's relative strength or weakness for the coming fiscal year. </li></ul>Author:Icon Group Ltd. Publish:Icon Group International
  10. 17. Vibration Spectrum Analysis : A Practical Approach <ul><li>Written in a clear, understandable style, this new edition of Vibration Spectrum Analysis includes new information on current instrumentation as well as additional appendixes, case histories and practice questions. Vibration analysts, predictive maintenance specialists, and field mechanics will find valuable information on using the latest techniques of spectrum analysis in solving problems and enhancing machine reliability in this key reference text. A book good for both engineers and non-engineers alike. </li></ul><ul><li>Card catalog description </li></ul><ul><li>&quot;The second edition of Vibration Spectrum Analysis includes vital new information on current instrumentation, along with case studies, additional appendixes, and new practice questions.&quot;--BOOK JACKET. &quot;Written for vibration analysts, predictive maintenance specialists, field mechanics, and a wide variety of engineers, Vibration Spectrum Analysis assumes no prior knowledge of advanced mathematics or mechanical engineering. It carefully guides the reader through sophisticated analysis techniques in a logical, easy-to-understand manner.&quot;--BOOK JACKET. </li></ul><ul><li>From the Back Cover </li></ul><ul><li>The Second Edition of Vibration Spectrum Analysis includes vital new information on current instrumentation, along with case studies, additional appendixes, and new practice questions. Engineers and non-engineers alike will find this clearly-written book an invaluable resource for understanding the latest tehniques of spectrum analysis for solving problems and enhancing machine reliability. Written for vibration analysts, predictive maintenance specialists, field mechanics, and a wide variety of engineers, Vibration Spectrum Analysis assumes no prior knowledge of advanced mathematics or mechanical engineering. It carefully guides the reader through sophisticated analysis techniques in a logical, easy-to-understand manner. </li></ul><ul><li>About the Author </li></ul><ul><li>Steve Goldman holds BME and MS degrees in Mechanical Engineering from New York University, and an MBA from Pace University. The founder of Goldman Machinery Dynamics Corporation, he has consulted in machinery problem diagnosis and monitoring for over 30 years. He also provides vibration analysis training. The author also serves on the adjunct faculty of Rockland Community College (NY) and has lectured extensively on vibration analysis in fixes and rotary aircraft, as well as on rotating machinery design and application in the power, petro-chemical and paper industries. In addition to holding several U.S. patents and a P.E. license in New York State, Goldman serves on the American Society of Non-Destructive Testing's Vibration Analysis P.Q. Committee. </li></ul>Author: Steve Goldman Publish: Industrial Pr
  11. 18. ANSYS program and re-validation of the thermal analysis of the Cornell silicon c <ul><li>Book Description </li></ul><ul><li>Written in a clear, understandable style, this new edition of Vibration Spectrum Analysis includes new information on current instrumentation as well as additional appendixes, case histories and practice questions. Vibration analysts, predictive maintenance specialists, and field mechanics will find valuable information on using the latest techniques of spectrum analysis in solving problems and enhancing machine reliability in this key reference text. A book good for both engineers and non-engineers alike. </li></ul><ul><li>Card catalog description </li></ul><ul><li>&quot;The second edition of Vibration Spectrum Analysis includes vital new information on current instrumentation, along with case studies, additional appendixes, and new practice questions.&quot;--BOOK JACKET. &quot;Written for vibration analysts, predictive maintenance specialists, field mechanics, and a wide variety of engineers, Vibration Spectrum Analysis assumes no prior knowledge of advanced mathematics or mechanical engineering. It carefully guides the reader through sophisticated analysis techniques in a logical, easy-to-understand manner.&quot;--BOOK JACKET. </li></ul><ul><li>From the Back Cover </li></ul><ul><li>The Second Edition of Vibration Spectrum Analysis includes vital new information on current instrumentation, along with case studies, additional appendixes, and new practice questions. Engineers and non-engineers alike will find this clearly-written book an invaluable resource for understanding the latest tehniques of spectrum analysis for solving problems and enhancing machine reliability. Written for vibration analysts, predictive maintenance specialists, field mechanics, and a wide variety of engineers, Vibration Spectrum Analysis assumes no prior knowledge of advanced mathematics or mechanical engineering. It carefully guides the reader through sophisticated analysis techniques in a logical, easy-to-understand manner. </li></ul><ul><li>About the Author </li></ul><ul><li>Steve Goldman holds BME and MS degrees in Mechanical Engineering from New York University, and an MBA from Pace University. The founder of Goldman Machinery Dynamics Corporation, he has consulted in machinery problem diagnosis and monitoring for over 30 years. He also provides vibration analysis training. The author also serves on the adjunct faculty of Rockland Community College (NY) and has lectured extensively on vibration analysis in fixes and rotary aircraft, as well as on rotating machinery design and application in the power, petro-chemical and paper industries. In addition to holding several U.S. patents and a P.E. license in New York State, Goldman serves on the American Society of Non-Destructive Testing's Vibration Analysis P.Q. Committee. </li></ul>Authors: Khounsary, A.; Kuzay, T.

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