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张永海

教授

基本信息 / Basic Information

  • 电子邮箱:
  • 所在单位: 化学工程与技术学院
  • 学历: 硕博连读
  • 办公地点: 西安交通大学创新港19-2184
  • 性别: 男
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  • 学位: 博士
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  • 博士生导师: 是
  • 硕士生导师: 是

论文成果

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Pool boiling heat transfer of FC-72 on pin-fin silicon surfaces with nanoparticle deposition

发布时间:2025-04-30
点击次数:
发布时间:
2025-04-30
论文名称:
Pool boiling heat transfer of FC-72 on pin-fin silicon surfaces with nanoparticle deposition
发表刊物:
International Journal of Heat and Mass Transfer, 2018, 126: 1019–1033.
摘要:
In the present study, two types of micro-pin–fin configurations were fabricated on silicon surfaces by a dry etching method, i.e., staggered pin fins (#1) and aligned pin fins with empty areas (#2). The micropin–fin surfaces were then further modified by depositing FeMn oxide nanoparticles (35 nm) electrostatically for 8 h and 16 h, respectively, namely #1-8h, #1-16h, #2-8h and #2-16h. Subcooled pool boiling heat transfer was experimentally studied on these surfaces at atmospheric pressure, using FC-72 as the working fluid. The results showed that in comparison to the smooth surface, pool boiling heat transfer was significantly enhanced by the micro-pin-fin surfaces and the maximum superheat was considerably decreased. Additionally, critical heat fluxes were also greatly improved, e.g., the critical heat flux on #1 was almost twice of that on the smooth surface. Generally, the nanoparticle deposition could further enhance pool boiling heat transfer, including the heat transfer coefficient and critical heat flux (CHF). High speed visualizations were taken to explore the mechanisms behind the heat transfer performance. The bubble behavior on the micro-pin–fin surfaces with and without nanoparticles was compared at low, moderate and high heat fluxes, respectively. The wickability of FC-72 on the test surfaces was measured, based on which, a modified CHF model was proposed to predict the experimental CHFs. Accordingly, a possible mechanism of CHF enhancement was described.
合写作者:
Z Cao, B Liu, C. Preger, Z Wu, Y.H. Zhang, X.Wang, M.E. Messiing et al.
卷号:
126
页面范围:
1019–1033
是否译文:
发表时间:
2018-05-05