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Featured researches published by Y.T. Jia.


Numerical Heat Transfer Part A-applications | 2016

Numerical simulation and multiobjective optimization of a microchannel heat sink with arc-shaped grooves and ribs

Guodong Xia; Y.T. Jia; Yanxia Li; D.D. Ma; Bo Cai

ABSTRACT In order to obtain the optimal structure size of a microchannel heat sink (MCHS) with arc-shaped grooves and ribs according to the actual demand, multiple parameters that influence the performance of the microchannel are analyzed by combining the multi-objective evolutionary algorithm (MOEA) with computational fluid dynamics (CFD). The design variables include the relative groove height, relative rib height and relative rib width, and the two objective functions are to minimize the total thermal resistance and pumping power in constant volume flow rate. The influences of the design variables on the two objective functions are analyzed by CFD firstly. The results show that each design variable has a different impact on the two functions. The competitive relationship between the two objective functions is depicted in plots of the Pareto front obtained by MOEA. Pareto sensitivity analysis is carried out to find that the relative rib height has the most significant impact on the two objective functions.


Volume 2: Micro/Nano-Thermal Manufacturing and Materials Processing; Boiling, Quenching and Condensation Heat Transfer on Engineered Surfaces; Computational Methods in Micro/Nanoscale Transport; Heat and Mass Transfer in Small Scale; Micro/Miniature Multi-Phase Devices; Biomedical Applications of Micro/Nanoscale Transport; Measurement Techniques and Thermophysical Properties in Micro/Nanoscale; Posters | 2016

Channel Size Optimization for 3D-IC Integrated Interlayer Microchannel Liquid Cooling

D.D. Ma; Guo-Dong Xia; W. Wang; X. F. Li; Y.T. Jia

3D-IC is getting increasingly attractive, as it improves speed and frequency, and reduces power consumption, noise and latency. However, three dimension (3D) integration technologies bring a new serious challenge to chip thermal management with the power density increased exponentially. Interlayer microchannel liquid cooling is thought as a promising and scalable solution for cooling high heat flux 3D-IC. In this paper, firstly channel number, channel width and height parameters of rectangular channel are optimized by the method of multi-objective parameter optimization under given overall size of 5mm in length and 5mm in width. The results show the total thermal resistances can reach very small under individual constraint condition of volume flow rates, but the pressure drop is too larger to accept. The minimum thermal resistance structure can be got by multi-objective optimization at various constraint conditions. It is found that the channel height and width increase with increasing of flow rates at pumping power less than 0.1W and pressure drop less than 20kPa. Secondly, the zigzag channels are designed on the basis of the optimized rectangular channel structure. The expansion and contraction ratio as an important parameter is optimized by numerical simulation. The thermal enhancement factor and Nusselt number measure the comprehensive performances of heat transfer. The results show heat transfer characteristic is enhanced with the decreasing of expansion and contraction ratio. Besides, the maximum junction temperature and maximum temperature difference are also reduced. 3D-IC with wave channel of β=3/7 is more promising for interlayer cooling.Copyright


Numerical Heat Transfer Part A-applications | 2017

Effect of geometric configuration on the laminar flow and heat transfer in microchannel heat sinks with cavities and fins

Yifan Li; Guodong Xia; Y.T. Jia; D.D. Ma; Bo Cai; Jun Wang

ABSTRACT A numerical simulation is performed to investigate the characteristics of flow and heat transfer in microchannels with cavities and fins. Nine microchannels with various shaped cavities and fins are presented and compared to the smooth microchannel. The effect of cavity and fin shapes on the flow field and temperature field is analyzed. Results show that the presence of cavity and fin can increase the heat transfer area, intensify mainstream disturbance, and induce chaotic advection, which result in obvious heat transfer enhancement. The shape of cavity or fin has a great influence on the hydrodynamic and thermal performance for such micro heat sinks. Based on the performance evaluation criterion (PEC), the overall performance of the microchannel is evaluated. The combination of cavities and fins leads to lower bottom temperature, lower net temperature gradient of fluid, and better heat transfer performance, which has the potential to meet the increased heat removal requirement.


International Journal of Heat and Mass Transfer | 2016

Characteristics of laminar flow and heat transfer in microchannel heat sink with triangular cavities and rectangular ribs

Yanxia Li; Guodong Xia; D.D. Ma; Y.T. Jia; Jingfu Wang


International Journal of Heat and Mass Transfer | 2017

Experimental investigation of flow boiling performance in microchannels with and without triangular cavities – A comparative study

Yifan Li; Guodong Xia; Y.T. Jia; Yue Cheng; Jun Wang


Energy Conversion and Management | 2016

Design study of micro heat sink configurations with offset zigzag channel for specific chips geometrics

D.D. Ma; Guodong Xia; Yanxia Li; Y.T. Jia; Jingfu Wang


Applied Thermal Engineering | 2017

Multi-parameter optimization for micro-channel heat sink under different constraint conditions

D.D. Ma; Guo-Dong Xia; Y.T. Jia; Yanxia Li; Jingfu Wang


International Journal of Heat and Mass Transfer | 2016

Effects of structural parameters on fluid flow and heat transfer characteristics in microchannel with offset zigzag grooves in sidewall

D.D. Ma; Guodong Xia; Yanxia Li; Y.T. Jia; Jingfu Wang


International Communications in Heat and Mass Transfer | 2018

Heat transfer and fluid flow characteristics of combined microchannel with cone-shaped micro pin fins

Y.T. Jia; Guodong Xia; Yifan Li; D.D. Ma; Bo Cai


Experimental Thermal and Fluid Science | 2018

Experimental study and modelling of average void fraction of gas-liquid two-phase flow in a helically coiled rectangular channel

Guodong Xia; Bo Cai; Lixin Cheng; Zhipeng Wang; Y.T. Jia

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D.D. Ma

Beijing University of Technology

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Guodong Xia

Beijing University of Technology

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Jingfu Wang

Beijing University of Technology

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Yanxia Li

Beijing University of Technology

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Bo Cai

Beijing University of Technology

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Guo-Dong Xia

Beijing University of Technology

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Yifan Li

Beijing University of Technology

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Jun Wang

Beijing University of Technology

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L.X. Zong

Beijing University of Technology

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Lixin Cheng

Beijing University of Technology

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