Wenming Li
wenmingli.weebly.com
0000-0003-1146-927X
Southeast University
28 papers found
Refreshing results…
Experimental investigation of two-phase heat transfer in saw-tooth copper microchannels
Enhanced single-phase and flow boiling heat transfer performance in saw-tooth copper microchannels with high L/Dh ratio
Enhance flow boiling in Tesla-type microchannels by inhibiting two-phase backflow
Tesla valves and capillary structures-activated thermal regulator
Enhanced thermal performance by spatial chaotic mixing in a saw-like microchannel
Optimizing L-shaped heat pipes with partially-hybrid mesh-groove wicking structures
Flow boiling in microchannels enhanced by parallel microgrooves fabricated on the bottom surfaces
Enhanced flow boiling in microchannels by incorporating multiple micro-nozzles and micro-pinfin fences
Wicking Nanofence-Activated Boundary Layer to Enhance Two-Phase Transport in Microchannels
Capillary-assisted evaporation/boiling in PDMS microchannel integrated with wicking microstructures
High-frequency alternating nucleate boiling of water enabled by microslot arrays in microchannels
Phase‐Change Heat Transfer: Supercapillary Architecture‐Activated Two‐Phase Boundary Layer Structures for Highly Stable and Efficient Flow Boiling Heat Transfer (Adv. Mater. 2/2020)
Supercapillary Architecture‐Activated Two‐Phase Boundary Layer Structures for Highly Stable and Efficient Flow Boiling Heat Transfer
Design, modeling, and experimental validation of an acoustofluidic platform for nanoscale molecular synthesis and detection
Realizing highly coordinated, rapid and sustainable nucleate boiling in microchannels on HFE-7100
Effects of thermal conductivity and density on phase change materials-based thermal energy storage systems
Flow boiling of HFE-7100 in silicon microchannels integrated with multiple micro-nozzles and reentry micro-cavities
Realize Highly Coordinated, Rapid and Sustainable Nucleate Boiling in Microchannels on Hfe7100
Enhanced flow boiling in microchannels using auxiliary channels and multiple micronozzles (I): Characterizations of flow boiling heat transfer
Enhanced flow boiling in microchannels using auxiliary channels and multiple micronozzles (II): Enhanced CHF and reduced pressure drop
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