Repository logo
  • English
  • 中文
Log In
Have you forgotten your password?
  1. Home
  2. College of Engineering / 工學院
  3. Applied Mechanics / 應用力學研究所
  4. Large-eddy simulation of coaxial powder flow for the laser direct deposition process
 
  • Details

Large-eddy simulation of coaxial powder flow for the laser direct deposition process

Journal
Physics of Fluids
Journal Volume
33
Journal Issue
12
Date Issued
2021
Author(s)
Chou Y.-J
Mai Y.-H
Tseng C.-C.
YI-JU CHOU  
DOI
10.1063/5.0074404
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85121498102&doi=10.1063%2f5.0074404&partnerID=40&md5=c52745113d40f1c59091ed0de30c564a
https://scholars.lib.ntu.edu.tw/handle/123456789/598912
Abstract
We conduct a large-eddy simulation with Lagrangian particle tracking to study the coaxial powder flow for the laser direct deposition process. To our knowledge, this is the first numerical study in which the high-fidelity, eddy-resolving simulation approach is applied to this process. Via the eddy-resolving simulations, we show the instantaneous flow structures and the associated turbulent quantities in great detail during the development of the transient state. We examine the effect of the flow on the particles and the resulting distributions of particle positions on various horizontal planes. Moreover, we demonstrate how the particle velocities affect the particle temperatures. On assessing three settings of initial particle distributions, we find that the simulation assuming a parabolic distribution for particle velocities gives good predictions of particle velocities and temperatures that are consistent with experimental data. Finally, we examine the effect of a substrate by moving the bottom boundary to the point of intersection of the particle streams. We find that due to increased flow dissipation, the substrate raises the location of the interaction point by approximately 10%. Moreover, the resulting reduction in particle velocity slightly increases the particle temperature. These differences can lead to a quite different distribution of the powder stream and have a significant impact on the mass and energy balance of the cladding model depending on the spot size of the laser beam and powder stream. ? 2021 Author(s).
Subjects
Cerenkov counters
Deposition
Large eddy simulation
Laser beams
Velocity
Deposition process
Eddy-resolving simulations
High-fidelity
Lagrangian particle tracking
Large-eddy simulations
Laser direct depositions
Particle temperature
Particle velocities
Powder Flow
Powder stream
Velocity control
Type
journal article

臺大位居世界頂尖大學之列,為永久珍藏及向國際展現本校豐碩的研究成果及學術能量,圖書館整合機構典藏(NTUR)與學術庫(AH)不同功能平台,成為臺大學術典藏NTU scholars。期能整合研究能量、促進交流合作、保存學術產出、推廣研究成果。

To permanently archive and promote researcher profiles and scholarly works, Library integrates the services of “NTU Repository” with “Academic Hub” to form NTU Scholars.

總館學科館員 (Main Library)
醫學圖書館學科館員 (Medical Library)
社會科學院辜振甫紀念圖書館學科館員 (Social Sciences Library)

開放取用是從使用者角度提升資訊取用性的社會運動,應用在學術研究上是透過將研究著作公開供使用者自由取閱,以促進學術傳播及因應期刊訂購費用逐年攀升。同時可加速研究發展、提升研究影響力,NTU Scholars即為本校的開放取用典藏(OA Archive)平台。(點選深入了解OA)

  • 請確認所上傳的全文是原創的內容,若該文件包含部分內容的版權非匯入者所有,或由第三方贊助與合作完成,請確認該版權所有者及第三方同意提供此授權。
    Please represent that the submission is your original work, and that you have the right to grant the rights to upload.
  • 若欲上傳已出版的全文電子檔,可使用Open policy finder網站查詢,以確認出版單位之版權政策。
    Please use Open policy finder to find a summary of permissions that are normally given as part of each publisher's copyright transfer agreement.
  • 網站簡介 (Quickstart Guide)
  • 使用手冊 (Instruction Manual)
  • 線上預約服務 (Booking Service)
  • 方案一:臺灣大學計算機中心帳號登入
    (With C&INC Email Account)
  • 方案二:ORCID帳號登入 (With ORCID)
  • 方案一:定期更新ORCID者,以ID匯入 (Search for identifier (ORCID))
  • 方案二:自行建檔 (Default mode Submission)
  • 方案三:學科館員協助匯入 (Email worklist to subject librarians)

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science