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林梅

研究员

基本信息 / Basic Information

  • 博士生导师 硕士生导师
  • 学历: 大学本科毕业
  • 学位: 硕士
  • 学科: 动力工程及工程热物理

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祝贺贺静硕士生撰写的科研论文被“Entropy”国际期刊录用

发布时间:2019-02-18
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发布时间:
2019-02-18
文章标题:
祝贺贺静硕士生撰写的科研论文被“Entropy”国际期刊录用
内容:

Coherent Structure of Flow Based on Denoised Signals in T-junction Tubes with Vertical Blades

Jing He,  Xiaoyu Wang and Mei Lin *

School of Energy and Power Engineering, Xi’an Jiaotong University, Xi’an 710049, China; 15172383587@163.com (J.H.); wdy94820@163.com (X.W.)

*   Correspondence: janeylinm@mail.xjtu.edu.cn; Tel./Fax: +86-29-82667936

Received: 24 December 2018; Accepted: 15 February 2019; Published: date

Abstract: The skin friction consumes some of the energy when a train is running, and the coherent structure plays an important role in the skin friction. In this paper, we focus on the coherent structure generated near the vent of a train. The intention is to investigate the effect of the vent on the generation of coherent structures. The ventilation system of a high-speed train is reasonably simplified as a T-junction duct with vertical blades. The velocity signal of the cross duct was measured in three different sections (upstream, mid-center and downstream), and then the coherent structure of the denoised signals was analyzed by continuous wavelet transform (CWT). The analysis indicates that the coherent structure frequencies become abundant and the energy peak decreases with the increase of the velocity ratio. As a result, we conclude that a higher velocity ratio is preferable to reduce the skin friction of the train. Besides, with the increase of velocity ratio, the dimensionless frequency St of the high-energy coherent structure does not change obviously and St=3.09×10-4–4.51×10-4.