Title of article :
Transient thermal performance analysis of micro heat pipes
Author/Authors :
Liu، نويسنده , , Xiangdong and Chen، نويسنده , , Yongping، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
9
From page :
585
To page :
593
Abstract :
A theoretical analysis of transient fluid flow and heat transfer in a triangular micro heat pipes (MHP) has been conducted to study the thermal response characteristics. By introducing the system identification theory, the quantitative evaluation of the MHPʹs transient thermal performance is realized. The results indicate that the evaporation and condensation processes are both extended into the adiabatic section. During the start-up process, the capillary radius along axial direction of MHP decreases drastically while the liquid velocity increases quickly at the early transient stage and an approximately linear decrease in wall temperature arises along the axial direction. The MHP behaves as a first-order LTI control system with the constant input power as the ʹstep inputʹ and the evaporator wall temperature as the ʹoutputʹ. Two corresponding evaluation criteria derived from the control theory, time constant and temperature constant, are able to quantitatively evaluate the thermal response speed and temperature level of MHP under start-up, which show that a larger triangular grooveʹs hydraulic diameter within 0.18–0.42 mm is able to accelerate the start-up and decrease the start-up temperature level of MHP. Additionally, the MHP starts up fastest using the fluid of ethanol and most slowly using the working fluid of methanol, and the start-up temperature reaches maximum level for acetone and minimum level for the methanol.
Keywords :
Micro heat pipe , Transient thermal performance , System identification theory
Journal title :
Applied Thermal Engineering
Serial Year :
2013
Journal title :
Applied Thermal Engineering
Record number :
1905960
Link To Document :
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