Flow-Induced Vibration Analysis of Supported Pipes Conveying Pulsating Fluid Using Precise Integration Method

المؤلفون المشاركون

Xuan, Fuzhen
Liu, Long

المصدر

Mathematical Problems in Engineering

العدد

المجلد 2010، العدد 2010 (31 ديسمبر/كانون الأول 2010)، ص ص. 1-15، 15ص.

الناشر

Hindawi Publishing Corporation

تاريخ النشر

2010-09-21

دولة النشر

مصر

عدد الصفحات

15

التخصصات الرئيسية

هندسة مدنية

الملخص EN

Dynamic analysis of supported pipes conveying pulsating fluid is investigated in Hamiltonian system using precise integration method (PIM).

First, symplectic canonical equations of supported pipes are deduced with state variable vectors composed of displacement and momentum.

Then, PIM with linear interpolation formula is proposed to solve these equations.

Finally, this approach's precision is testified by several numerical examples of pinned-pinned pipes with different fluid velocities and frequencies.

The results show that PIM is an efficient and rapid approach for flow-induced dynamic analysis o f supported pipes.

نمط استشهاد جمعية علماء النفس الأمريكية (APA)

Liu, Long& Xuan, Fuzhen. 2010. Flow-Induced Vibration Analysis of Supported Pipes Conveying Pulsating Fluid Using Precise Integration Method. Mathematical Problems in Engineering،Vol. 2010, no. 2010, pp.1-15.
https://search.emarefa.net/detail/BIM-499568

نمط استشهاد الجمعية الأمريكية للغات الحديثة (MLA)

Liu, Long& Xuan, Fuzhen. Flow-Induced Vibration Analysis of Supported Pipes Conveying Pulsating Fluid Using Precise Integration Method. Mathematical Problems in Engineering No. 2010 (2010), pp.1-15.
https://search.emarefa.net/detail/BIM-499568

نمط استشهاد الجمعية الطبية الأمريكية (AMA)

Liu, Long& Xuan, Fuzhen. Flow-Induced Vibration Analysis of Supported Pipes Conveying Pulsating Fluid Using Precise Integration Method. Mathematical Problems in Engineering. 2010. Vol. 2010, no. 2010, pp.1-15.
https://search.emarefa.net/detail/BIM-499568

نوع البيانات

مقالات

لغة النص

الإنجليزية

الملاحظات

Includes bibliographical references

رقم السجل

BIM-499568