Segui
Jie Lin
Jie Lin
Lecturer/Assistant Professor at School of Mechanical and Aerospace Engineering, Queen's University
Email verificata su qub.ac.uk - Home page
Titolo
Citata da
Citata da
Anno
Study on dew point evaporative cooling system with counter-flow configuration
J Lin, K Thu, TD Bui, RZ Wang, KC Ng, KJ Chua
Energy Conversion and Management 109, 153-165, 2016
1382016
Dual‐encapsulated highly conductive and liquid‐free phase change composites enabled by polyurethane/graphite nanoplatelets hybrid networks for efficient energy storage and …
M Wu, T Li, P Wang, S Wu, R Wang, J Lin
Small 18 (9), 2105647, 2022
1252022
Modelling and experimental investigation of the cross-flow dew point evaporative cooler with and without dehumidification
J Lin, RZ Wang, M Kumja, TD Bui, KJ Chua
Applied Thermal Engineering 121, 1-13, 2017
792017
Thermodynamic analysis of a hybrid membrane liquid desiccant dehumidification and dew point evaporative cooling system
J Lin, SM Huang, R Wang, KJ Chua
Energy Conversion and Management 156, 440-458, 2018
742018
On the fundamental heat and mass transfer analysis of the counter-flow dew point evaporative cooler
J Lin, DT Bui, R Wang, KJ Chua
Applied Energy 217, 126-142, 2018
712018
Unsteady-state analysis of a counter-flow dew point evaporative cooling system
J Lin, K Thu, TD Bui, RZ Wang, KC Ng, M Kumja, KJ Chua
Energy 113, 172-185, 2016
572016
A spatiotemporal indirect evaporative cooler enabled by transiently interceding water mist
MW Shahzad, J Lin, BB Xu, L Dala, Q Chen, M Burhan, M Sultan, ...
Energy 217, 119352, 2021
562021
An improved vehicle to the grid method with battery longevity management in a microgrid application
Q Yang, J Li, W Cao, S Li, J Lin, D Huo, H He
Energy 198, 117374, 2020
552020
On the exergy analysis of the counter-flow dew point evaporative cooler
J Lin, DT Bui, R Wang, KJ Chua
Energy 165, 958-971, 2018
532018
The counter-flow dew point evaporative cooler: Analyzing its transient and steady-state behavior
J Lin, DT Bui, R Wang, KJ Chua
Applied Thermal Engineering 143, 34-47, 2018
532018
Multivariate scaling and dimensional analysis of the counter-flow dew point evaporative cooler
J Lin, RZ Wang, M Kumja, TD Bui, KJ Chua
Energy Conversion and Management 150, 172-187, 2017
512017
Similarity analysis and comparative study on the performance of counter-flow dew point evaporative coolers with experimental validation
Y Wan, J Lin, KJ Chua, C Ren
Energy Conversion and Management 169, 97-110, 2018
462018
Towards a thermodynamically favorable dew point evaporative cooler via optimization
J Lin, R Wang, C Li, S Wang, J Long, KJ Chua
Energy Conversion and Management 203, 112224, 2020
392020
A new method for prediction and analysis of heat and mass transfer in the counter-flow dew point evaporative cooler under diverse climatic, operating and geometric conditions
Y Wan, J Lin, KJ Chua, C Ren
International Journal of Heat and Mass Transfer 127, 1147-1160, 2018
332018
On the in-depth scaling and dimensional analysis of a cross-flow membrane liquid desiccant dehumidifier
J Lin, SM Huang, R Wang, KJ Chua
Applied Energy 250, 786-800, 2019
252019
Novel battery thermal management via scalable dew-point evaporative cooling
J Lin, HN Chu, K Thu, M Wojtala, F Gao, KJ Chua
Energy Conversion and Management 283, 116948, 2023
232023
Experimental and normalized sensitivity based numerical analyses of a novel humidifier-assisted highly efficient indirect evaporative cooler
MA Jamil, BB Xu, L Dala, M Sultan, L Jie, MW Shahzad
International Communications in Heat and Mass Transfer 125, 105327, 2021
232021
Understanding the transient behavior of the dew point evaporative cooler from the first and second law of thermodynamics
J Lin, K Thu, S Karthik, MW Shahzad, R Wang, KJ Chua
Energy Conversion and Management 244, 114471, 2021
222021
All-solid-state microscale lithium-ion battery fabricated by a simple process with graphene as anode
J Lin, Y Wu, R Bi, H Guo
Sensors and Actuators A: Physical 253, 218-222, 2017
162017
Multiscale coupling of surface temperature with solid diffusion in large lithium-ion pouch cells
J Lin, HN Chu, DA Howey, CW Monroe
Communications Engineering 1 (1), 1, 2022
142022
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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