Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness Strips

In order to understand the gap flow between two cylinders, the characteristics of flow around two stationary cylinders and the flow-induced vibration of two staggered cylinders with roughness strips are numerically studied. The lift&#8722;drag responses, Strouhal number (<i>St</i>) a...

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Main Authors: Zuo-Mei Yang, Lin Ding, Qian-Yun Ye, Lin Yang, Li Zhang
Format: Article
Language:English
Published: MDPI AG 2019-09-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/17/3587
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spelling doaj-8e13ff0076eb44a4b53ffc2a8ac36a142020-11-24T20:47:03ZengMDPI AGApplied Sciences2076-34172019-09-01917358710.3390/app9173587app9173587Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness StripsZuo-Mei Yang0Lin Ding1Qian-Yun Ye2Lin Yang3Li Zhang4Key Laboratory of Low-grade Energy Utilization Technologies and Systems of Ministry of Education, Chongqing University, Chongqing 400044, ChinaKey Laboratory of Low-grade Energy Utilization Technologies and Systems of Ministry of Education, Chongqing University, Chongqing 400044, ChinaKey Laboratory of Low-grade Energy Utilization Technologies and Systems of Ministry of Education, Chongqing University, Chongqing 400044, ChinaKey Laboratory of Low-grade Energy Utilization Technologies and Systems of Ministry of Education, Chongqing University, Chongqing 400044, ChinaKey Laboratory of Low-grade Energy Utilization Technologies and Systems of Ministry of Education, Chongqing University, Chongqing 400044, ChinaIn order to understand the gap flow between two cylinders, the characteristics of flow around two stationary cylinders and the flow-induced vibration of two staggered cylinders with roughness strips are numerically studied. The lift&#8722;drag responses, Strouhal number (<i>St</i>) and wake structure of two stationary cylinders in tandem, as well as the vibration response and vortex pattern of two oscillating staggered cylinders are analyzed. The results indicate that the spacing <i>d<sub>c</sub></i> of two stationary cylinders at which the gap flow can be observed is different for different <i>Re</i>, and <i>d<sub>c</sub></i> is 3<i>D</i> when <i>Re</i> = 2000 and <i>d<sub>c</sub></i> = 2.5<i>D</i> at <i>Re</i> = 6000~14,000. When the distance <i>d</i> = <i>d<sub>c</sub></i>, the force coefficient and <i>St</i> of two cylinders increase sharply. For the two oscillating staggered cylinders, there is a critical reduced velocity <i>U<sub>c</sub>*</i> = 7, which makes the amplitude magnitude relationship of the two cylinders change. With the change of the reduced velocity, the vibration frequencies of the two cylinders are consistent. When the staggered distance increases, the frequency difference of the two cylinders decreases. At the same inflow velocity, with the increase of staggered distance, a gap flow is formed between the two cylinders. When <i>T</i> &gt; 0.6<i>D</i> and <i>U*</i> &lt; 8, the gap flow becomes the main factor affecting the vibration of the two cylinders, which can be divided into the dominant region of gap flow.https://www.mdpi.com/2076-3417/9/17/3587two cylindersgap flowstagger arrangementflow-induced vibrationroughness strips
collection DOAJ
language English
format Article
sources DOAJ
author Zuo-Mei Yang
Lin Ding
Qian-Yun Ye
Lin Yang
Li Zhang
spellingShingle Zuo-Mei Yang
Lin Ding
Qian-Yun Ye
Lin Yang
Li Zhang
Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness Strips
Applied Sciences
two cylinders
gap flow
stagger arrangement
flow-induced vibration
roughness strips
author_facet Zuo-Mei Yang
Lin Ding
Qian-Yun Ye
Lin Yang
Li Zhang
author_sort Zuo-Mei Yang
title Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness Strips
title_short Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness Strips
title_full Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness Strips
title_fullStr Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness Strips
title_full_unstemmed Effect of Gap Flow on the Characteristics of Flow-Around and Flow-Induced Vibration for Two Circular Cylinders with Roughness Strips
title_sort effect of gap flow on the characteristics of flow-around and flow-induced vibration for two circular cylinders with roughness strips
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-09-01
description In order to understand the gap flow between two cylinders, the characteristics of flow around two stationary cylinders and the flow-induced vibration of two staggered cylinders with roughness strips are numerically studied. The lift&#8722;drag responses, Strouhal number (<i>St</i>) and wake structure of two stationary cylinders in tandem, as well as the vibration response and vortex pattern of two oscillating staggered cylinders are analyzed. The results indicate that the spacing <i>d<sub>c</sub></i> of two stationary cylinders at which the gap flow can be observed is different for different <i>Re</i>, and <i>d<sub>c</sub></i> is 3<i>D</i> when <i>Re</i> = 2000 and <i>d<sub>c</sub></i> = 2.5<i>D</i> at <i>Re</i> = 6000~14,000. When the distance <i>d</i> = <i>d<sub>c</sub></i>, the force coefficient and <i>St</i> of two cylinders increase sharply. For the two oscillating staggered cylinders, there is a critical reduced velocity <i>U<sub>c</sub>*</i> = 7, which makes the amplitude magnitude relationship of the two cylinders change. With the change of the reduced velocity, the vibration frequencies of the two cylinders are consistent. When the staggered distance increases, the frequency difference of the two cylinders decreases. At the same inflow velocity, with the increase of staggered distance, a gap flow is formed between the two cylinders. When <i>T</i> &gt; 0.6<i>D</i> and <i>U*</i> &lt; 8, the gap flow becomes the main factor affecting the vibration of the two cylinders, which can be divided into the dominant region of gap flow.
topic two cylinders
gap flow
stagger arrangement
flow-induced vibration
roughness strips
url https://www.mdpi.com/2076-3417/9/17/3587
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