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Search Symbol (Half-width) Description of Search Symbols
Space "AND" indicates the intertwining of key terms used in a search
Double Quotation Marks ("") ( " " ) Double quotation marks indicate the beginning and end of a phrase, and the search will only include terms that appear in the same order of those within the quotations. Example: "image process" : " image process "
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* Indicates an unlimited number of variable letters to follow, from 1~n. Example: Enter "appl*", search results will yield apple, apples, apply, applied, application…(often used in English word searches) e , appl es , appl y , appl ied , appl ication … ( (often used to English word searches) )

Boolean logic combinations of key words is a skill used to expand or refine search parameters.
(1) AND (1) AND: Refines search parameters
(2) OR (2) OR: Expands search parameters (3) NOT: Excludes irrelevant parameters


DOI stands for Digital Object Identifier ( D igital O bject I dentifier ) ,
and is the unique identifier for objects on the internet. It can be used to create persistent link and to cite articles.

Using DOI as a persistent link

To create a persistent link, add「http://dx.doi.org/」 「 http://dx.doi.org/ 」 before a DOI.
For instance, if the DOI of an article is 10.5297/ser.1201.002 , you can link persistently to the article by entering the following link in your browser: http://dx.doi.org/ 10.5297/ser.1201.002
The DOI link will always direct you to the most updated article page no matter how the publisher changes the document's position, avoiding errors when engaging in important research.

Cite a document with DOI

When citing references, you should also cite the DOI if the article has one. If your citation guideline does not include DOIs, you may cite the DOI link.

DOIs allow accurate citations, improve academic contents connections, and allow users to gain better experience across different platforms. Currently, there are more than 70 million DOIs registered for academic contents. If you want to understand more about DOI, please visit airiti DOI Registrationdoi.airiti.com ) 。

Abstract 〈TOP〉
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Reference ( 25 ) 〈TOP〉
  1. [3] T. N. Wong, B. Y. Tong, S. M. Lim and K. T. Ooi, “Theoretical Modeling of Pulsating Heat Pipe”, Proc. 11th International Heat Pipe Conference, Tokyo, Japan, pp. 159-163 (1999).
  2. [4] Tong, B.Y., Wong, T.N. , Ooi, K.T. “Closed-loop pulsating heat pipe”, Applied Thermal Engineering, Vol. 21, pp. 1845-1862 (2001).
  3. [5] S. Khandekar, N. Dollinger and M. Groll, “Understanding Operational Regimes of Closed Loop Pulsating Heat Pipes: An Experimental Study”, Applied Thermal Engineering, Elsevier Science, Vol. 23, pp. 707-719 (2003).
  4. [7] S. Khandekar , M. Groll, “An insight into thermo-hydrodynamic coupling in closed loop pulsating heat pipes”, Proc. International Journal of Thermal Sciences, Vol. 43, pp. 13–20 (2004).
  5. [8] X. M. Zhang, J. L. Xu, and Z. Q. Zhou, “Experimental study of a pulsating heat pipe using FC-72, ethanol, and water as working fluids”, Experimental Heat Transfer, Vol.17, pp 47-67 (2004).
Times Cited (3) 〈TOP〉
  1. 羅新旻(2015)。磁場效應對磁性奈米流體震盪式熱管之研究。淡江大學機械與機電工程學系碩士班學位論文。2015。1-80。 
  2. 王耀羣(2014)。磁場對磁性奈米流體震盪式熱管性能之探討。淡江大學機械與機電工程學系碩士班學位論文。2014。1-89。 
  3. 蕭百鈞(2013)。封閉迴路式震盪熱管之單向穩態循環流研究。淡江大學機械與機電工程學系碩士班學位論文。2013。1-67。 
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