Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Lizhan Bai is active.

Publication


Featured researches published by Lizhan Bai.


international conference on mechanical and aerospace engineering | 2016

Study on trajectory divergence technology for double-seat escape system and experimental validation

Jia Yu; Xiaodong Mao; Guiping Lin; Lizhan Bai; Haichuan Jin; Zuodong Mu

Trajectory interference is a critical problem for the two-seat escape system in low speed which will seriously threaten the pilots life. In this research, a divergence technology was designed and adopted. The computational simulation method was firstly utilized to analyze and evaluate the trajectory divergence characteristics involving divergence performance and the influence of divergence on ejection height. The mathematical formulations of the entire ejection sequence were established. According to the thoughts of modularization, a solver platform containing many modules depend on the basic physical parts was programmed. By the data flow between modules the realistic physical process could be simulated. The simulation results indicated that the divergence technology effectively prevent the two seats from interference at whole velocity range. Although the ejection height was maximum reduced 12 meters, the integrate performance of the system sufficed the life-saving demands. Subsequently, two-seat rocket sled test was implemented. The results showed that the interference was prevented and the parachute developed successfully before landing which ultimately verified the divergence technology in improving the performance of the two-seat escape system. Consequently, the technology could be applied in engineering.


Nano Energy | 2016

Steam generation in a nanoparticle-based solar receiver

Haichuan Jin; Guiping Lin; Lizhan Bai; Aimen Zeiny; Dongsheng Wen


Applied Thermal Engineering | 2009

Mathematical modeling of steady-state operation of a loop heat pipe

Lizhan Bai; Guiping Lin; Hongxing Zhang; Dongsheng Wen


Applied Thermal Engineering | 2009

Experimental investigation of startup behaviors of a dual compensation chamber loop heat pipe with insufficient fluid inventory

Lizhan Bai; Guiping Lin; Dongsheng Wen; Jianting Feng


Solar Energy | 2016

Photothermal conversion efficiency of nanofluids: An experimental and numerical study

Haichuan Jin; Guiping Lin; Lizhan Bai; Muhammad Amjad; Enio Pedone Bandarra Filho; Dongsheng Wen


Applied Thermal Engineering | 2010

Modeling and analysis of startup of a loop heat pipe

Lizhan Bai; Guiping Lin; Dongsheng Wen


International Journal of Heat and Mass Transfer | 2010

Experimental investigation of a dual compensation chamber loop heat pipe

Guiping Lin; Nan Li; Lizhan Bai; Dongsheng Wen


International Journal of Heat and Mass Transfer | 2012

Operating characteristics of a miniature cryogenic loop heat pipe

Lizhan Bai; Guiping Lin; Hongxing Zhang; Jianyin Miao; Dongsheng Wen


International Journal of Heat and Mass Transfer | 2015

Experimental study of jet impingement heat transfer on a variable-curvature concave surface in a wing leading edge

Xueqin Bu; Long Peng; Guiping Lin; Lizhan Bai; Dongsheng Wen


Applied Thermal Engineering | 2015

Development of cryogenic loop heat pipes: A review and comparative analysis

Lizhan Bai; Lianpei Zhang; Guiping Lin; Jiang He; Dongsheng Wen

Collaboration


Dive into the Lizhan Bai's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Hongxing Zhang

China Academy of Space Technology

View shared research outputs
Top Co-Authors

Avatar

Jianyin Miao

China Academy of Space Technology

View shared research outputs
Top Co-Authors

Avatar

Jiang He

China Academy of Space Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Long Peng

Chinese Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge