2024
[1] Jingyi Zheng, Chengxu Tu, Pengfei Du, Ji Chen, Yichen Li, Shanqing Gao, Jianzhong Lin, Fubing Bao. On-Demand Transport Bubbles Adhering to Noncontiguous Patterned Superhydrophobic Surfaces Using a Superhydrophobic Tweezer. Langmuir, 2024, 40 (29): 15322-15331.
[2] Junhao Wang, Ran Chen, Chen Zhao, Fubing Bao. Tuning the thermoregulatory and tensile performance of electro spun hydrophobic microfibers through a low-cost water doping method. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 681: 132765.
[3] Fei Xu, Yaowen Cao, Hanwen Gong, Juan Li, Ying Xu, and Lei Shi. Mass Transport and Energy Conversion of Magnetic Nanofluids from Nanoparticles’ Movement and Liquid Manipulation[J]. Processes, 2024, 12(5): 955.
[4] Fei Xu, Zheng Wang, Wei Hu, Caihao Yang, Xiaolong Li, Yaning Zhang, Bingxi Li, Gongnan Xie. Simulation of phase change during the freezing of unsaturated porous media by using a coupled lattice Boltzmann model[J]. International Journal of Numerical Methods for Heat & Fluid Flow, 2024, 34(4): 1631-1657.
[5] Fei Xu, Caihao Yang, Jiaqi Zhang, Xiaolong Li, Chao Lu, Fubing Bao, Xiaoyan Gao, Yaning Zhang. Droplet-driven particle motions in fluids studied using coupled lattice Boltzmann method[J]. Journal of Dispersion Science and Technology, 2024, 45(5): 931-942.
[6] Tong Ye, Zhihua Liu, Chenguang Cai, Fubing Bao, Fei Xu, Xiangkun Lian. A novel ultra-low-frequency micro-vibration calibration method based on virtual pendulum motion trajectories of the stewart platform. Metrollogy and Measurement System, 2024, Published online.
[7] Xi Lin, Tao Lin, Gaojie Xu, Gangqiang Chen and Fei Xu. Three-Dimensional Numerical Simulation of High-Speed Shear Crushing of High-Density Fluid. Processes, 2024, Accepted.
[8] Yuying Zhong, Yang Zhao, Xiaoyan Gao, Fubing Bao. Experimental study on interaction between a cavitation bubble and an oil layer–water interface[J]. AIP Advances, 2024, 14(6). Published online.
[9] Jian Yu, Xueqing Kan, Zhaoyang Xiang, Jiachen Liu, Fubing Bao, Likai Hou. On-Chip Droplet Splitting with High Volume Ratios Using a 3D Conical Microstructure-Based Microfluidic Device. Langmuir 2024. Published online.
[10] Zhaoze Lu, Jian Yu, Kaihua Wang, Wei Cheng, Likai Hou. NIR light-triggered bursting of double-emulsion drops (DEDs) for microdroplet generation. Analytical Methods 2024, 16(38): 6501-6508.
[11] Mingyu Yu, Zhijie Xie, Likai Hou, Jiuqing Liu, Kailiang Zhang. Controllable Double‐Emulsion Droplet Manipulation Actuated by a Triboelectric Nanogenerator. Advanced Functional Materials. 2024: 2408095
[12] Jian Yu, Wei Cheng, Jinchun Ni, Changwu Li, Xinggen Su, Hui Yan, Fubing Bao and Likai Hou. High-Speed Generation of Microbubbles with Constant Cumulative Production in a Glass Capillary Microfluidic Bubble Generator. Micromachines 2024. 15(6): 752.
[13] Tianbo Yang, Likai Hou, Xu Fan, Hui Yan, Fubing Bao. One-Step Microfibers with Spindle-knots Structure for Fog Harvest. ACS Applied Materials & Interfaces, 2024, 16(11): 13756-13762.
[14] 侯立凯,范旭,金羽卓,刘铭扬,包福兵. 液体微小流量测量技术研究进展. 力学学报,2024, 56(6): 1573-1584.
[15] 侯立凯,范旭,包福兵. 微小液体流量校准技术. 化工进展,2024, 43(2): 579-585.
[16] 成伟,杨添波,李长武,侯立凯,包福兵,倪金春. 多气源格局下天然气计量体系国内外进展. 计量科学与技术. 2024, 68(1): 3-9, 75
[17] 李有强,王俊,包福兵,侯立凯. 流体粘度测量技术发展现状. 计量科学与技术. 2024, Published online.
[18] 许飞,胡巍,杨才浩,高晓燕,包福兵,张亚宁. 基于局部节点的非稳态天然气管网能量计量赋值算法,计量学报,2024, 收录
[19] 彭慧,池辉,徐聪,尹招琴,包福兵,凃程旭. 温度对撞击器内颗粒沉积粒径影响的研究. 力学学报, 2024, 56: 79-93.
[20] 沈家鑫,彭慧,王彦入,尹招琴,包福兵. 荷电颗粒在旋转环形通道内分离性能研究. 计算力学学报, 2024, 41(3): 491-498.
2023
[1] Likai Hou, Zhongjun Liang, Xu Fan, Jian Yu, Fubing Bao. Bioinspired self-coiling Janus microfiber actuators for micro-lifter and humidity sensing. Sensors and Actuators B: Chemical, 2023, 394: 134344.
[2] Chen X., Hou L., Wang K., Zhang Z., Bao F., NIR light-triggered core-coalescence of double-emulsion drops for micro-reactions. Chemical Engineering Journal, 2023, 454: 140050.
[3] Junhao Wang, Xiangchu Cao, Ran Chen, Jiangwei Zhou, Hanqian Zhang, Xiaoting Ma, Fubing Bao. Encapsulation of Monodisperse Microdroplets in Nanofibers through a Microfluidic–Electrospinning Hybrid Method. Langmuir, 2023, 39(2): 813-819.
[4]
[5] Jinghan Pan, Chengxu Tu, Taohou Chen, Xufeng Xia, Pengfei Du, Fubing Bao, Jianzhong Lin. Non-spherical collapse of a cavitation bubble induced by a rigid filament. Ocean Engineering, 2023, 287: 115838.
[6] Minglu Dai, Chengxu Tu, Pengfei Du, Fubing Bao, Jianzhong Lin. Spontaneous rising of a whirling-swimmer driven by a bubble. Langmuir, 2023, 39(30): 10638-10650.
[7] Hongbo Yang, Chengxu Tu, Zhouxia Jia, Qingfu Meng, Jinghao Zhang, Jiaxiang Wang, Yalei Zhao, Chenbin Zhu, Fubing Bao. Dynamic Characterization of Thermocouples under Double-Pulse Laser-Induced Thermal Excitation. Sensors, 2023, 23(5): 2367.
[8] Jinghan Pan, Chengxu Tu, Mengwen Kan, Jiaming Shan, Fubing Bao, Jianzhong Lin. Settling velocity variation induced by a sphere moving across a two-layer stratified fluid with different rheological characteristics. RSC advances, 2023, 13(14): 9773-9780.
[9] Yiting Zou, Chengxu Tu*, Weijie Chen, Xianfeng Li, Wenkun Gao, Xianzhi Jiang, Fubing Bao. On the effect of the electrode shape and contraction section on the right-angled electromagnetic flowmeter. Flow Measurement and Instrumentation, 2023, 92:102400.
[10] 曹全伟, 凃程旭, 许好好, 包福兵, 李想, 沈佳园. 基于支持向量机的激光甲烷浓度量化研究. 计量学报, 2023, 44(06):981-985.
[11] 李占鹏, 凃程旭, 包福兵等. 活塞式标准体积管发展现状.机床与液压, 2023, 51(08):150-158.
[12] 史青松, 凃程旭, 徐坠, 李想, 许好好, 刘易, 卓银杰, 王佳香, 陈维杰, 包福兵. 低温流体流量标准装置研究进展, 低温与超导, 2023, 51(11): 51-60.
[13] 赵扬,钟俞盈,高晓燕,凃程旭,包福兵. 激光空泡与油膜水界面相互作用的实验研究. 中国激光, 2023, 50(13): 1301005.
[14] 孟哲健, 包福兵, 闫小克, 尹招琴, 凃程旭, 滕俊恒. 高准确度水三相点容器. 计量学报, 2023, 44(2), 195-202.
[15] 任立太, 郭立功, 包福兵, 王金涛, 暴雪松. 肺功能仪用定标筒容量校准方法. 计量学报, 2023, 44(1), 5.
[16] 郑乐梅, 尹招琴, 王彦入, 沈家鑫, 包福兵, 周锟. 双柱状颗粒在线性剪切流场中的动力学分析. 计算力学学报, 2023, 40(1), 79-85.
2022
223. Dai M, Tu C, Du P, Kuang Z, Shan J, Wang X, Bao F. Near-Wall Settling Behavior of a Particle in Stratified Fluids. Micromachines. 2022, 13(12):2070.
222. Chen X., Hou L., Zhang Z., Lin R., Lin R., Yan C., Bao F., Microfluidic encapsulation of soluble reagents with large-scale concentration gradients in a sequence of droplets for comparative analysis. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 655: 130227.
221. Wu W., Ren Y., Jiang T., Hou L., Zhou J., Jiang H., Anti-drying, transparent, ion-conducting, and tough organohydrogels for wearable multifunctional human–machine interfaces. Chemical Engineering Journal, 2022, 430: 132635.
220. Wang Y., Shen J., Yin Z., Bao F., Numerical simulation of non-spherical submicron particle acceleration and focusing in a converging-diverging micronozzle. Applied Sciences, 2022, 12(1): 343.
219. Song Y., Chen J., Yang X., Zhang D., Zou Y., Ni D., Ye J., Yu Z., Chen Q., Jin S., Liang P., Fabrication of Fe3O4@Ag magnetic nanoparticles for highly active SERS enhancement and paraquat detection. Microchemical Journal, 2022, 173: 107019.
2021
218. Zhang K., Ren Y., Zhao M., Jiang T., Hou L., Jiang H., Flexible microswimmer manipulation in multiple microfluidic systems utilizing thermal buoyancy-capillary convection. Analytical Chemistry, 2021, 93(4): 2560-2569.
217. Zhang C., Yin Z., Tu C., Huang Z., Chen T., Bao F., Lu J., Ge X., Dynamic behavior of the cavitation bubbles collapsing between a rigid wall and an elastic wall. AIP Advances, 2021, 11(6): 065025.
216. Ye Y., Tu C., Zhang Z., Xu R., Bao F., Lin J., Deagglomeration of airborne nanoparticles in a decelerating supersonic round jet. Advanced Powder Technology, 2021, 32(5): 1488-1501.
215. Yang S., Tu C., Dai M., Ge X., Xu R., Gao X., Bao F., Sedimentation of two side-by-side heavy particles of different density in a shear-thinning fluid with viscoelastic properties. Applied Sciences, 2021, 11(15): 7113.
214. Xu F., Liang S., Zhang Y., Li B., Hu Y., Numerical study of water–air distribution in unsaturated soil by using lattice Boltzmann method. Computers & Mathematics with Applications, 2021, 81: 573-587.
213. Wang X., Wang S., Wang R., Yuan Z., Shao B., Fan J., Numerical simulation of semi-dry desulfurization spouted bed using the discrete element method (DEM). Powder Technology, 2021, 378: 191-201.
212. Wang C., Zhao C., Xu F., Hydrodynamic analysis of one deformed double emulsion droplet under shear. Journal of Dispersion Science and Technology, 2021: 1-11: 1.
211. Wang A., Wu Z., Huang Y., Zhou H., Wu L., Jia C., Chen Q., Zhao J., A 3D-printed microfluidic device for qPCR detection of macrolide-resistant mutations of mycoplasma pneumoniae. Biosensors, 2021, 11(11): 427.
210. Deng X., Ren Y., Hou L., Jiang T., Jiang H., Continuous microfluidic fabrication of anisotropic microparticles for enhanced wastewater purification. Lab on a Chip, 2021, 21(8): 1517-1526.
209. Cui X., Hu T., Chen Q., Zhao Q., Wu Y., Xie T., Liu P., Su X., Li G., A facile and rapid route to self-digitization of samples into a high density microwell array for digital bioassays. Talanta, 2021, 233: 122589.
208. Chen Y., Tu C., Yang Q., Wang Y., Ye Y., Chen Q., Jiang R., Yang M., Bao F., Dynamic behavior of a deformable bubble rising near a vertical wire-mesh in the quiescent water. Experimental Thermal and Fluid Science, 2021, 120: 110235.
207. Chen X., Ren Y., Jiang T., Hou L., Jiang H., Characterization of particle movement and high-resolution separation of microalgal cells via induced-charge electroosmotic advective spiral flow. Analytical Chemistry, 2021, 93(3): 1667-1676.
206. Chen R., Liu J., Wang X., Kong L., Feng L., Han J., Bai H., Bao F., Electrospun fibrous membrane with controlled hierarchical structure and wettability for effective emulsion separation. Separation and Purification Technology, 2021, 260: 118246.
205. Bao F., Hao H., Yin Z., Tu C., Numerical study of nanoparticle deposition in a gaseous microchannel under the influence of various forces. Micromachines (Basel), 2021, 12(1): 47.
204. 叶煜航, 凃程旭, 包福兵, 汪钰锟, 杨森森, 不同壁面取向下超疏水平面直轨道上的气泡滑移. 力学学报, 2021, 53(04): 962-972.
203. 包福兵, 沈家鑫, 王彦入, 尹招琴, 郑乐梅, 柱状颗粒在线性剪切流场中运动的数值模拟研究. 力学与实践, 2021, 43(5): 734-739.
2020
202. Yuan F., Cao Y., Tu C., Lin J., Control of vortex shedding from two side-by-side cylinders using a pair of tangential jets. AIP Advances, 2020, 10(10): 105129.
201. Yin Z., Huang Z., Tu C., Gao X., Bao F., Dynamic characteristics of bubble collapse near the liquid-liquid interface. Water, 2020, 12(10): 10.
200. Yin Z., Huang Z., Lin X., Gao X., Bao F., Droplet generation in a flow-focusing microfluidic device with external mechanical vibration. Micromachines (Basel), 2020, 11(8): 743.
199. Wu H., Ren Y., Hou L., Jiang T., Jiang H., Fabrication of syntactic foam fillers via manipulation of on-chip quasi concentric nanoparticle-shelled droplet templates. Lab on a Chip, 2020, 20(24): 4600-4610.
198. Tu C., Yang Q., Chen Y., Ye Y., Wang Y., Du P., Yang S., Bao F., Yin Z., Jiang R., Liang X., Anisotropic spreading of bubbles on superaerophilic straight trajectories beneath a slide in water. Water, 2020, 12(3): 798.
197. Tian R., Wang S., Wang S., Li M., Wang X., Ma Y., Sun Q., Application of the kinetic theory of rough spheres to the simulation of the hydrodynamics of particles and liquid phases in a fluidized bed. Powder Technology, 2020, 364: 467-477.
196. Shen P., Dou H., Wei Y., Tu C., Xu H., Investigation on flapping dynamics and wake characteristics of a flexible plate in nonlinear hysteresis region. International Journal of Modern Physics C, 2020, 31(11): 2050164.
195. Ren Y., Xue R., Liu W., Tao Y., Bao F., Liquid metal droplet-enabled electrocapillary flow in biased alternating electric fields: a theoretical analysis from the perspective of induced-charge electrokinetics. Journal of Micromechanics and Microengineering, 2020, 30(8): 085007.
194. Qian L., Liu J., Cong H., Zhou F., Bao F., A numerical investigation on the collision behavior of unequal-sized micro-nano droplets. Nanomaterials, 2020, 10(9): 1746.
193. Hou L., Ren Y., Liu W., Deng X., Chen X., Jiang T., Wu G., Jiang H., Eccentric magnetic microcapsule for on-demand transportation, release, and evacuation in microfabrication fluidic networks. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020, 599: 124905.
192. Guo J., Hou L., Hou J., Yu J., Hu Q., Generation of ultra-thin-shell microcapsules using osmolarity-controlled swelling method. Micromachines, 2020, 11(4): 444.
191. 周思佳, 王昊利, 包福兵, 基于单颗粒追踪法研究聚氧化乙烯溶液的微流变特性. 实验流体力学, 2020, 34(02): 89-98.
190. 周思佳, 王昊利, 包福兵, 滤纸纤维多孔介质中颗粒反常扩散的实验研究. 中国计量大学学报, 2020, 31(02): 183-191.
189. 徐熔俊, 凃程旭, 包福兵, 尹招琴, 单佳明, 旷忠科, 不同密度并列双颗粒在水中沉降特性研究. 中国计量大学学报, 2020, 31(02): 168-176.
188. 王舰航, 尹招琴, 凃程旭, 包福兵, 激光空化气泡溃灭对SAP弹性小球的作用. 空气动力学学报, 2020, 38(04): 814-819.
187. 王舰航, 陈韬厚, 包福兵, 王月兵, 超声对近壁微气泡溃灭过程的影响. 应用声学, 2020, 39(03): 329-335.
186. 黄泽民, 包福兵, 陈韬厚, 陈界, 汪钰锟, 凃程旭, 分层流体界面附近气泡溃灭的动力学特性研究. //第十一届全国流体力学学术会议, 2020.
185. 鲍鲁威, 张超, 包福兵, T型微通道内液滴生成过程中的压力研究. 实验力学, 2020, 35(05): 851-858.
2019
184. Zhang K., Ren Y., Hou L., Tao Y., Liu W., Jiang T., Jiang H., Continuous microfluidic mixing and the highly controlled nanoparticle synthesis using direct current-induced thermal buoyancy convection. Microfluidics and Nanofluidics, 2019, 24: 1.
183. Yuan F., Tu C., Yu J., Cui Z., High-pressure dispersion of nanoparticle agglomerates through a continuous aerosol disperser. Applied Nanoscience, 2019, 9(8): 1857-1868.
182. Xu F., Zhang Y., Liang S., Li B., Hu Y., Model development for infiltration of unfrozen water in saturated frozen soil using lattice Boltzmann method. International Journal of Heat and Mass Transfer, 2019, 141: 748-756.
181. Xu F., Song W., Zhang Y., Li B., Hu Y., Kim Y., Fu Z., Water content variations during unsaturated feet-scale soil freezing and thawing. Cold Regions Science and Technology, 2019, 162: 96-103.
180. Wu Y., Tu C., Zhang Z., Yang M., Bao F., Yin Z., Effect of divergence angle of ejector nozzle on aerosolisation of powdered nanoparticles. Molecular Simulation, 2019, 45(7): 556-563.
179. Wang S., Li H., Wang R., Wang X., Tian R., Sun Q., Effect of the inlet angle on the performance of a cyclone separator using CFD-DEM. Advanced Powder Technology, 2019, 30(2): 227-239.
178. Wang S., Li H., Tian R., Wang R., Wang X., Sun Q., Fan J., Numerical simulation of particle flow behavior in a screw conveyor using the discrete element method. Particuology, 2019, 43: 137-148.
177. Sun H., Ren Y., Hou L., Tao Y., Liu W., Jiang T., Jiang H., Continuous particle trapping, switching, and sorting utilizing a combination of dielectrophoresis and alternating current electrothermal flow. Analytical Chemistry, 2019, 91(9): 5729-5738.
176. Shen P., Lin L., Wei Y., Dou H., Tu C., Vortex shedding characteristics around a circular cylinder with flexible film. European Journal of Mechanics-B/Fluids, 2019, 77: 201-210.
175. Lin X., Bao F., Tu C., Yin Z., Gao X., Lin J., Dynamics of bubble formation in highly viscous liquid in co-flowing microfluidic device. Microfluidics and Nanofluidics, 2019, 23(5): 74.
174. Kong L., Chen R., Wang X., Zhao C.X., Chen Q., Hai M., Chen D., Yang Z., Weitz D.A., Controlled co-precipitation of biocompatible colorant-loaded nanoparticles by microfluidics for natural color drinks. Lab on a Chip, 2019, 19(12): 2089-2095.
173. Hu Q., Ren Y., Zheng X., Hou L., Jiang T., Liu W., Tao Y., Jiang H., A micro-needle induced strategy for preparation of monodisperse liquid metal droplets in glass capillary microfluidics. Microfluidics and Nanofluidics, 2019, 23(1): 13.
172. Hong T., Yang M., Tu C., Huang Q., Bao F., Yin Z., Gao X., Simultaneous verification of multi-ultrasonic-flowmeters in tandem arrangement for natural gas. Applied Sciences, 2019, 9(17): 3632.
171. Gao X., Zhang Y., Xu F., Yin Z., Wang Y., Bao F., Li B., Experimental and kinetic studies on the intrinsic reactivities of rice husk char. Renewable Energy, 2019, 135: 608-616.
170. Gao X., Xu F., Bao F., Tu C., Zhang Y., Wang Y., Yang Y., Li B., Simulation and optimization of rice husk gasification using intrinsic reaction rate based CFD model. Renewable Energy, 2019, 139: 611-620.
169. Feng X., Ren Y., Sun H., Chen X., Zhang K., Jia Y., Hou L., Xiao M., Jiang H., Effect of vortex on mass transport and mixing in microcapillary channels. Chemical Engineering Journal, 2019, 362: 442-452: 442.
168. Feng X., Ren Y., Hou L., Tao Y., Jiang T., Li W., Jiang H., Tri-fluid mixing in a microchannel for nanoparticle synthesis. Lab on a Chip, 2019, 19(17): 2936-2946.
167. Deng X., Ren Y., Hou L., Liu W., Jiang T., Jiang H., Compound-droplet-pairs-filled hydrogel microfiber for electric-field-induced selective release. Small, 2019, 15(42): e1903098.
166. Chen X., Ren Y., Hou L., Jiang T., Jiang H., Fluid mixing using induced charge electro-osmotic transverse flow actuated by asymmetrical driving electrode sequence. //Proceedings of the Asme 6th International Conference on Micro/Nanoscale Heat and Mass Transfer, 2019.
165. Chen X., Ren Y., Hou L., Feng X., Jiang T., Jiang H., Microparticle separation using asymmetrical induced-charge electro-osmotic vortices on an arc-edge-based floating electrode. Analyst, 2019, 144(17): 5150-5163.
164. Chen X., Ren Y., Hou L., Feng X., Jiang T., Jiang H., Induced charge electro-osmotic particle separation. Nanoscale, 2019: 6410-6421.
163. Chen R., Sun Z., Chen D., Droplet-based microfluidics for cell encapsulation and delivery, in Microfluidics for Pharmaceutical Applications. 2019. p. 307-335.
162. Chen R., Liu J., Yang C., Weitz D.A., He H., Li D., Chen D., Liu K., Bai H., Transparent impact-resistant composite films with bioinspired hierarchical structure. ACS Applied Materials & Interfaces, 2019, 11(26): 23616-23622.
161. 张振刚, 凃程旭, 包福兵, 尹招琴, 吴逸洋, 泵与风机PIV实验的示踪粒子撒播技术研究. 中国计量大学学报, 2019, 30(01): 25-30.
160. 陈叶宇, 凃程旭, 包福兵, 尹招琴, 高晓燕, 陈强, 杨钦灿, 汪钰锟, 垂直丝网附近单个可变形气泡上升运动研究. 中国计量大学学报, 2019, 30(04): 405-410.
2018
159. Zhang Y., Xu F., Li B., Kim Y.-S., Zhao W., Xie G., Fu Z., Three phase heat and mass transfer model for unsaturated soil freezing process: Part 2 - model validation. Open Physics, 2018, 16(1): 84-92.
158. Zhang Y., Gao X., Li B., Li H., Zhao W., Assessing the potential environmental impact of woody biomass using quantitative universal exergy. Journal of Cleaner Production, 2018, 176: 693-703.
157. Zhang Y., Gao X., Bingxi L., Zhang H., Wang Q., Exergy characteristics of rice husks. Thermal Science, 2018, 22(Suppl. 2): 429-437.
156. Zhang Y., Gao X., Bao F., Li B., Zhao Y., Ke C., Jiang B., CFD modeling of sawdust gasification in a lab-scale entrained flow reactor based on char intrinsic kinetics. Part 2: Parameter study and multi-objective optimization. Chemical Engineering and Processing, 2018, 125: 290-297.
155. Zhang K., Ren Y., Hou L., Feng X., Chen X., Jiang H., An efficient micromixer actuated by induced-charge electroosmosis using asymmetrical floating electrodes. Microfluidics and Nanofluidics, 2018, 22(11): 130.
154. Yin Z., Li X., Bao F., Tu C., Gao X., Thermophoresis and brownian motion effects on nanoparticle deposition inside a 90° square bend tube. Aerosol and Air Quality Research, 2018, 18(7): 1746-1755.
153. Yin Z., Bao F., Tu C., Hua Y., Tian R., Numerical and experimental studies of heat and flow characteristics in a laminar pipe flow of nanofluid. Journal of Experimental Nanoscience, 2018, 13(1): 82-94.
152. Xu F., Zhang Y., Jin G., Li B., Kim Y.-S., Xie G., Fu Z., Three phase heat and mass transfer model for unsaturated soil freezing process: Part 1 - model development. Open Physics, 2018, 16(1): 75-83.
151. Wu Y., Ren Y., Tao Y., Hou L., Jiang H., High-throughput separation, trapping and manipulation of single cells and particles using combined dielectrophoresis at a bipolar electrode array. Analytical Chemistry, 2018, 90(19): 11461-11469.
150. Wang X., Wang S., Tian R., Wang R., Liu L., Sun Q., Fan J., Numerical study on flow behavior of multi-component particles in a fluidized bed using a TFM-DEM hybrid model. Powder Technology, 2018, 338: 795-805.
149. Sun H., Ren Y., Liu W., Feng X., Hou L., Tao Y., Jiang H., Flexible continuous particle beam switching via external-field-reconfigurable asymmetric induced-charge electroosmosis. Analytical Chemistry, 2018, 90(19): 11376-11384.
148. Ren Y., Liu X., Liu W., Tao Y., Jia Y., Hou L., Li W., Jiang H., Flexible particle flow-focusing in microchannel driven by droplet-directed induced-charge electroosmosis. Electrophoresis, 2018, 39(4): 597-607.
147. Lin X., Bao F., Gao X., Chen J., Molecular dynamics simulation of nanoscale channel flows with rough wall using the virtual-wall model. Journal of Nanotechnology, 2018, 2018: 4631253.
146. Li X., Bao F., Wang Y., Shape oscillation of a single microbubble in an ultrasound field. Journal of Nanotechnology, 2018, 2018: 3701047.
145. Jiang R., Lin J., Tu C., Poiseuille flow-induced vibrations of a cylinder in subcritical conditions. Journal of Fluids and Structures, 2018, 82: 272-286.
144. Jia Y., Ren Y., Hou L., Liu W., Jiang T., Deng X., Tao Y., Jiang H., Electrically controlled rapid release of actives encapsulated in double-emulsion droplets. Lab on a Chip, 2018, 18(7): 1121-1129.
143. Gao X., Zhang Y., Li B., Xie G., Zhao W., Experimental investigation into the characteristics of chars obtained from fast pyrolysis of different biomass fuels. Journal of Energy Resources Technology, 2018, 140(4): 044501.
142. Gao X., Zhang Y., Bao F., Li B., Zhao Y., Ke C., Jiang B., CFD modeling of sawdust gasification in a lab-scale entrained flow reactor based on char intrinsic kinetics. Part 1: Model development. Chemical Engineering and Processing, 2018, 125: 280-289.
141. Friedman E.S., Bittinger K., Esipova T.V., Hou L., Chau L., Jiang J., Mesaros C., Lund P.J., Liang X., FitzGerald G.A., Goulian M., Lee D., Garcia B.A., Blair I.A., Vinogradov S.A., Wu G.D., Microbes vs. chemistry in the origin of the anaerobic gut lumen. Proceedings of the National Academy of Sciences USA, 2018, 115(16): 4170-4175.
140. Deng X., Ren Y., Hou L., Liu W., Jia Y., Jiang H., Electric field-induced cutting of hydrogel microfibers with precise length control for micromotors and building blocks. ACS Applied Materials & Interfaces, 2018, 10(46): 40228-40237.
139. Chen R., Liu J., Sun Z., Chen D., Functional Nanofibers with Multiscale Structure by Electrospinning. Nanofabrication, 2018, 4(1): 17-31: 17.
138. 邵宝力, 王淑彦, 田瑞超, 王旭, 钟会影, 赵健, 孔隙介质内流体渗流的三维格子Boltzmann模拟. 高校化学工程学报, 2018, 32(05): 1073-1081.
137. 陈强, 汤腾, 孙安吉, 李刚, 邹炳德, 基于琼脂糖凝胶集成样品预富集功能的微流控芯片. 当代化工, 2018, 47(11): 2249-2251.
2017及以前
136. Zhang Y., Zhao Y., Li B., Gao X., Jiang B., Energy and exergy characteristics of syngas produced from air gasification of walnut sawdust in an entrained flow reactor. International Journal of Exergy, 2017, 23(3): 244.
135. Zhang Y., Fan X., Li B., Li H., Gao X., Assessing the potential environmental impact of fuel using exergy-cases of wheat straw and coal. International Journal of Exergy, 2017, 23(1): 85.
134. Wang W., Zhang Y., Li B., Han H., Gao X., Influence of geometrical parameters on turbulent flow and heat transfer characteristics in outward helically corrugated tubes. Energy Conversion and Management, 2017, 136: 294-306.
133. Wang S., Tian R., Li H., Li X., Wang X., Zhao J., Liu L., Sun Q., Predictions of granular temperatures of particles in a flat bottomed spout bed. Powder Technology, 2017, 322: 147-158.
132. Wang S., Jiang X., Wang R., Wang X., Yang S., Zhao J., Liu Y., Numerical simulation of flow behavior of particles in a liquid-solid stirred vessel with baffles. Advanced Powder Technology, 2017, 28(6): 1611-1624.
131. Tu C., Yin Z., Lin J., Bao F., A review of experimental techniques for measuring micro- to nano-particle-laden gas flows. Applied Sciences, 2017, 7(2): 120.
130. Tu C., Qian L., Bao F., Yan W., Local effective viscosity of gas in nano-scale channels. European Journal of Mechanics - B/Fluids, 2017, 64: 55-59.
129. Tu C., Lin J., Yin Z., Bao F., Du P., Powder disperser for the continuous aerosolizing of dry powdered nanoparticles. Advanced Powder Technology, 2017, 28(11): 2848-2858.
128. Song W., Zhang Y., Li B., Xu F., Fu Z., Macroscopic lattice Boltzmann model for heat and moisture transfer process with phase transformation in unsaturated porous media during freezing process. Open Physics, 2017, 15(1): 379-393.
127. Shi Y., Sun Z., Chen R., Zhu C., Shoemaker R.K., Tsai E., Walba D.M., Glaser M.A., Maclennan J.E., Chen D., Clark N.A., Effect of conformational chirality on optical activity observed in a smectic of achiral, bent-core molecules. Journal of Physical Chemistry B, 2017, 121(28): 6944-6950.
126. Niepa T.H., Hou L., Jiang H., Goulian M., Koo H., Stebe K.J., Lee D., Corrigendum: Microbial nanoculture as an artificial microniche. Scientific Reports, 2017, 7: 42568.
125. Jia Y., Ren Y., Hou L., Liu W., Deng X., Jiang H., Sequential coalescence enabled two-step microreactions in triple-core double-emulsion droplets triggered by an electric field. Small, 2017, 13(46): 1702188: 1702188.
124. Hou L., Ren Y., Jia Y., Deng X., Tang Z., Tao Y., Jiang H., A simple microfluidic method for one-step encapsulation of reagents with varying concentrations in double emulsion drops for nanoliter-scale reactions and analyses. Analytical Methods, 2017, 9(17): 2511-2516.
123. Hou L., Ren Y., Jia Y., Deng X., Liu W., Feng X., Jiang H., Continuously electrotriggered core coalescence of double-emulsion drops for microreactions. ACS Applied Materials & Interfaces, 2017, 9(14): 12282-12289.
122. Hou L., Ren Y., Jia Y., Chen X., Deng X., Tang Z., Hu Q., Tao Y., Jiang H., Osmolarity-controlled swelling behaviors of dual-cored double-emulsion drops. Microfluidics and Nanofluidics, 2017, 21(4): 60.
121. 华轶聪, 尹招琴, 凃程旭, 包福兵, 水基铜纳米流体管内颗粒凝并的数值模拟研究. 中国计量大学学报, 2017, 28(03): 300-305.
120. 陈洁敏, 包福兵, 凃程旭, 尹招琴, 纳米尺度Poiseuille流动中气体黏度的分子动力学研究. 中国计量大学学报, 2017, 28(3): 293-299.
119. Zhang Y., Xu F., Fu Z., Li B., A new constant power line heat-source temperature sensor for determining the thermal conductivity of porous mediums. Journal of Fundamentals of Renewable Energy and Applications, 2016, 06(02): 1000e107.
118. Zhang Y., Gao X., Li B., Zhang H., Exergy of oat straw. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2016, 38(11): 1574-1581.
117. Yang S., Yan W., Wu J., Tu C., Luo D., Numerical investigation of vortex suppression regions for three staggered circular cylinders. European Journal of Mechanics-B/Fluids, 2016, 55: 207-214.
116. Wu Y., Ren Y., Tao Y., Hou L., Jiang H., Large-scale single particle and cell trapping based on rotating electric field induced-charge electroosmosis. Analytical Chemistry, 2016, 88(23): 11791-11798.
115. Wu Y., Ren Y., Tao Y., Hou L., Hu Q., Jiang H., A novel micromixer based on the alternating current-flow field effect transistor. Lab on a Chip, 2016, 17(1): 186-197.
114. Wang S., Yang S., Wang X., Liu Y., Yang S., Dong Q., Numerical simulations of the effect of ionic surfactant/polymer on oil-water interface using dissipative particle dynamics. Asia-Pacific Journal of Chemical Engineering, 2016, 11(4): 581-593.
113. Wang S., Wang X., Wang R., Zhao J., Yang S., Liu Y., Dong Q., Simulations of flow behavior of particles in a liquid-solid fluidized bed using a second-order moments model. Powder Technology, 2016, 302: 21-32.
112. Ren Y., Liu J., Liu W., Lang Q., Tao Y., Hu Q., Hou L., Jiang H., Scaled particle focusing in a microfluidic device with asymmetric electrodes utilizing induced-charge electroosmosis. Lab on a Chip, 2016, 16(15): 2803-12.
111. Qian L., Tu C., Bao F., Zhang Y., Virtual-wall model for molecular dynamics simulation. Molecules, 2016, 21(12): 1678.
110. Qian L., Lin J., Bao F., Numerical models for viscoelastic liquid atomization spray. Energies, 2016, 9(12): 1079.
109. Niepa T.H., Hou L., Jiang H., Goulian M., Koo H., Stebe K.J., Lee D., Microbial nanoculture as an artificial microniche. Scientific Reports, 2016, 6: 30578.
108. Liu W., Chen R., Ruan X., Fu X., Polymeric piezoelectric fiber with metal core produced by electrowetting-aided dry spinning method. Journal of Applied Polymer Science, 2016, 133(39): 43968.
107. Lang Q., Ren Y., Hobson D., Tao Y., Hou L., Jia Y., Hu Q., Liu J., Zhao X., Jiang H., In-plane microvortices micromixer-based AC electrothermal for testing drug induced death of tumor cells. Biomicrofluidics, 2016, 10(6): 064102.
106. Jia Y., Ren Y., Liu W., Hou L., Tao Y., Hu Q., Jiang H., Electrocoalescence of paired droplets encapsulated in double-emulsion drops. Lab on a Chip, 2016, 16(22): 4313-4318.
105. Hou L., Jiang H., Lee D., Bubble-filled silica microfibers from multiphasic flows for lightweight composite fabrication. Chemical Engineering Journal, 2016, 288: 539-545.
104. Guan X., Hou L., Ren Y., Deng X., Lang Q., Jia Y., Hu Q., Tao Y., Liu J., Jiang H., A dual-core double emulsion platform for osmolarity-controlled microreactor triggered by coalescence of encapsulated droplets. Biomicrofluidics, 2016, 10(3): 034111.
103. Gao X., Zhang Y., Li B., Zhao Y., Jiang B., Determination of the intrinsic reactivities for carbon dioxide gasification of rice husk chars through using random pore model. Bioresource Technology, 2016, 218: 1073-81.
102. Gao X., Zhang Y., Li B., Yu X., Model development for biomass gasification in an entrained flow gasifier using intrinsic reaction rate submodel. Energy Conversion and Management, 2016, 108: 120-131.
101. Chen R., Liu W., Ruan X., Fu X., A wearable pressure sensor based on the array of polymeric piezoelectric fiber with metal core, in Intelligent Robotics and Applications. 2016. p. 118-124.
100. Zhang Y., Zhao Y., Gao X., Li B., Huang J., Energy and exergy analyses of syngas produced from rice husk gasification in an entrained flow reactor. Journal of Cleaner Production, 2015, 95: 273-280.
99. Zhang Y., Gao X., Li B., Zhang H., Qi B., Wu Y., An expeditious methodology for estimating the exergy of woody biomass by means of heating values. Fuel, 2015, 159: 712-719.
98. Yin Z., Lin J., Lou M., Penetration efficiency of nanoparticles in a bend of circular cross-section. Journal of Hydrodynamics, 2015, 27(1): 93-98.
97. Xia Y., Lin J.Z., Bao F.B., Chan T.L., Flow instability of nanofuilds in jet. Applied Mathematics and Mechanics-English Edition, 2015, 36(2): 141-152.
96. Luo S., bao F., Qiu L., Investigation of gas local effective viscosity in nano-scale channels. //Procedia Engineering-7th International Conference on Fluid Mechanics, 2015.
95. Lin J., Yin Z., Lin P., Yu M., Ku X., Distribution and penetration efficiency of nanoparticles between 8–550nm in pipe bends under laminar and turbulent flow conditions. International Journal of Heat and Mass Transfer, 2015, 85(10): 61-70.
94. Dai Z., Yin Z., Flow and deposition characteristics of nanoparticles in a 90° square bend. Thermal Science, 2015, 19(4): 1235-1238.
93. Chen R., Ruan X., Liu W., Stefanini C., A reliable and fast hydrogen gas leakage detector based on irreversible cracking of decorated palladium nanolayer upon aligned polymer fibers. International Journal of Hydrogen Energy, 2015, 40(1): 746-751: 746.
92. Bao F., Huang Y., Zhang Y., Lin J., Investigation of pressure-driven gas flows in nanoscale channels using molecular dynamics simulation. Microfluidics and Nanofluidics, 2015, 18(5-6): 1075-1084.
91. Bao F., Huang Y., Qiu L., Lin J., Applicability of molecular dynamics method to the pressure-driven gas flow in finite length nano-scale slit pores. Molecular Physics, 2015, 113(6): 561-569.
90. 骆双双, 包福兵, 林建忠, 纳米尺度通道中气体粘度的分子动力学模拟. 低温工程, 2015, 2015(2): 28-32.
89. 康健, 王春生, 王旭, 王晓虎, 褚会娟, 锦45块重水淹区蒸汽驱数值模拟研究. 数学的实践与认识, 2015, 45(12): 148-153.
88. 高晓燕, 佟海川, 张亚宁, 携带流反应器中生物质气化模型改进. 节能技术, 2015, 33(01): 3-6+24.
87. Yin Z., Liu H., Numerical simulation of nanoparticles diffusion and coagulation in a twin-jet via a TEMOM method. International Journal of Numerical Methods for Heat & Fluid Flow, 2014, 24(6): 1312-1320.
86. Tu C., Zhang J., Nanoparticle-laden gas flow around a circular cylinder at high Reynolds number. International Journal of Numerical Methods for Heat & Fluid Flow, 2014: 1782-1794.
85. Tu C., Bao F., Huang L., Properties of the flow around two rotating circular cylinders in side-by-side arrangement with different rotation types. Thermal Science, 2014, 18(5): 1487-1492.
84. Ren Y., Wu H., Feng G., Hou L., Jiang H., Effects of chip geometries on dielectrophoresis and electrorotation investigation. Chinese Journal of Mechanical Engineering, 2014, 27(1): 103-110.
83. Mao Z., Bao F., Huang Y., Molecular dynamics simulation of rarefied gaseous flows in nano-channels. //Applied Mechanics & Materials, 2014.
82. Lin J., Yin Z., Gan F., Yu M., Penetration efficiency and distribution of aerosol particles in turbulent pipe flow undergoing coagulation and breakage. International Journal of Multiphase Flow, 2014, 61: 28-36.
81. Lin J., Xia Y., Bao F., Hydrodynamic instability of nanofluids in a channel flow. Fluid Dynamics Research, 2014, 46(5): 055512.
80. Chen R., Liu W., Fu X., Dario P., An easy-fabricated hydrogen gas sensor based on palladium-decorated polyurethane nanofibers. //2014 IEEE Sensors Applications Symposium (SAS), 2014.
79. Bao F., Mao Z., Qiu L., Study of gaseous velocity slip in nano-channel using molecular dynamics simulation. International Journal of Numerical Methods for Heat & Fluid Flow, 2014, 24(6): 1338-1347.
78. 项蓉, 严微微, 苏中地, 吴杰, 张凯, 包福兵, 生物过滤器中非均匀性流动的数值研究. 物理学报, 2014, 63(16): 164702.
77. 王春生, 王旭, 赵云婷, 王晓虎, 褚会娟, 蒸汽驱注采井网对比优化设计. 特种油气藏, 2014, 21(01): 92-94+109+155.
76. 李洪涛, 李炳熙, 徐有宁, 高晓燕, 上吸式固定床生物质气化的综合计算法模型. 太阳能学报, 2014, 35(11): 2210-2215.
75. 陈强, 王勤, 戚海燕, 王跃, 章立, 李铭, 张洹千, 金庆辉, 基于氧敏感膜荧光特性的溶解氧传感器研制. 仪表技术与传感器, 2014(11): 1-3.
74. 包福兵, 黄园林, 骆双双, 林建忠, 纳米尺度气体流动的分子动力学研究. //全国流体力学学术会议, 2014.
73. Zhou H., Yao Y., Chen Q., Li G., Yao S., A facile microfluidic strategy for measuring interfacial tension. Applied Physics Letters, 2013, 103(23): 234102.
72. Ren Y., Tao Y., Hou L., Jiang H., Automatic microcircuit formation based on gold-coated SU-8 microrods via dielectrophoresis. Chinese Physics B, 2013, 22(8): 087701.
71. Hou L., Ren Y., Jiang H., Electrorotation characteristics of gold-coated SU-8 microrods at low frequency. Acta Physica Sinica, 2013, 62(20): 200702.
70. Gao X., Zhang Y., Li B., Dong L., CFD modeling of an entrained flow gasifier. Applied Mechanics and Materials, 2013, 448-453: 1624-1627.
69. Chen Q., Li G., Nie Y., Yao S., Zhao J., Investigation and improvement of reversible microfluidic devices based on glass–PDMS–glass sandwich configuration. Microfluidics and Nanofluidics, 2013, 16(1-2): 83-90.
68. Chen M., Jiao Z., Yu S., Yu M., Bao F., Nakamura K., Temperature dependence of coercivity behavior in fe films on fractal rough ceramics surfaces. Japanese Journal of Applied Physics, 2013, 52(1S): 01AC13.
67. 许骁, 包福兵, 张凯, 狄辉彬, 叶片切割对双吸离心泵性能影响的数值研究. 中国计量学院学报, 2013, 24(4): 393-397.
66. 毛志红, 包福兵, 余霞, 双原子氧气液界面特性的分子动力学模拟. 低温工程, 2013, 2013(3): 47-51.
65. 毛志红, 包福兵, 黄园林, 滑移过渡区纳米通道气体流动的分子动力学模拟. //中国力学大会, 2013.
64. 李洪涛, 李炳熙, 徐有宁, 高晓燕, 灼烧方式对稻壳灰形貌特征和成分的影响. 农业机械学报, 2013, 44(04): 131-136.
63. Yu X., Bao F., Wang J., Mao Z., Molecular dynamics simulation of liquid-vapor binary mixture of Lennard-Jones Fluids. //XXIII ICTAM, 2012.
62. Yin Z.Q., Lin J.Z., Qian L.J., An experimental study on the characteristics of nanoparticles emission from a vehicle. Advanced Materials Research, 2012, 508: 180-183.
61. Yin Z., Lou M., Experimental study on nanoparticle deposition in straight pipe flow. Thermal Science, 2012, 16(5): 1410-1413.
60. Tu C., Zhang J., Characteristic distribution of submicron and nano-particles laden flow around circular cylinder. Thermal Science, 2012, 16(5): 1386-1390.
59. Tu C., Liu S., Nanoparticle coagulation and dispersion in a turbulent planar jet with constraints. Thermal Science, 2012, 16(5): 1497-1501.
58. Liu Z., Xiong Y., Tu C., Method to control unsteady force of submarine propeller based on the control of horseshoe vortex. Journal of Ship Research, 2012, 56(01): 12-22.
57. Liang X., Wu H., Tu C., Zhang K., Experimental study on fiber suspensions in a curved expansion duct with particle image velocimetry. Thermal Science, 2012, 16(5): 1414-1418.
56. Li G., Luo Y., Chen Q., Liao L., Zhao J., A "place n play" modular pump for portable microfluidic applications. Biomicrofluidics, 2012, 6(1): 14118-1411816.
55. Chen M., Yu S., Jiao Z., Yu M., Bao F., Deposition-rate dependence of granular size distribution in Cu aggregate on liquid substrate studied by atomic force microscopy. Philosophical Magazine Letters, 2012, 92(3): 122-127.
54. Bao F., Zhu Z., Lin J., Linearized stability analysis of two-dimension Burnett equations. Applied Mathematical Modelling, 2012, 36(5): 1902-1909.
53. Bao F., Yu X., Lin J., Simulation of gas flows in micro/nano systems using the Burnett equations. //Journal of Physics Conference Series, 2012.
52. Bao F., Yu X., Lin J., Numerical simulation of micro/nano-scale liquid flow. //10th International Conference on Hydrodynamics, 2012.
51. Bao F., Wang J., Lin J., Burnett simulation of gaseous flow in micro/nano-filter. Current Nanoscience, 2012, 8(1): 12-16.
50. 余霞, 包福兵, 毛志红, 二元混合物气液相变特性的分子动力学研究. 中国计量学院学报, 2012, 23(3): 289-294.
49. 魏淑惠,包福兵,朱赠好, 二维Woods-Burnett方程的稳定性分析. 空气动力学学报, 2012, 30(1): 90-94.
48. 罗娅慧, 李刚, 陈强, 赵建龙, 基于渗透脱水的自动化蛋白质结晶高通量筛选芯片. 高等学校化学学报, 2012, 33(10): 2178-2183.
47. Zhu Z.H., Bao F.B., Lin J.Z., Wang J.X., Stability analysis of two-dimension Burnett Equations. //Sixth International Conference on Fluid Mechanics, 2011.
46. Wang J., Bao F., Lin J., Burnett simulations of gaseous flows in transition regime. //Sixth International Conference on Fluid Mechanics, 2011.
45. Tu C., Lin J., Bao F., Experimental study on flows around two rotating circular cylinders in side‐by㏒ide arrangement at moderate reynolds number. //Sixth International Conference on Fluid Mechanics, 2011.
44. Liu Z., Xiong Y., Tu C., Numerical simulation and control of horseshoe vortex around an appendage–body junction. Journal of Fluids and Structures, 2011, 27(1): 23-42.
43. Chen Q., Li G., Zhao J., Curved SU-8 structure fabrication based on the acid-diffusion effect. //MEMS 2011, 2011.
42. Bao F., Wang J., Lin J., Flow characteristics of microfilter in slip/transition regime. //Materials Science Forum, 2011.
41. Bao F., Lin J., Continuum simulation of the microscale backward-facing step flow in a transition regime. Numerical Heat Transfer Part a-Applications, 2011, 59(8): 616-632.
40. 朱赠好, 包福兵, 林建忠, 王晶鑫, 常规Burnett方程的二维稳定性分析. //中国力学大会2011暨钱学森诞辰100周年纪念大会, 2011.
39. 周毅, 李炳熙, 高晓燕, 付忠斌, 翅片管式硅胶-水吸附床优化设计. //走中国创造之路——2011中国制冷学会学术年会, 2011.
38. 王晶鑫, 包福兵, 林建忠, 余霞, 滑移过渡区微喷管流动的Burnett方程研究. //中国力学大会2011暨钱学森诞辰100周年纪念大会, 2011.
37. 包福兵, 王晶鑫, 余霞, 直角坐标系中任意壁面上的速度滑移表达式. //中国力学大会2011暨钱学森诞辰100周年纪念大会, 2011.
36. Yin Z., Lin J., Yu M., FMPS measurement of nanoparticle pollutant in office air. //Proc.SPIE, 2010.
35. Tu C., Hot-wire probe used for measurement of one dimensional flow with bi-direction. //Sixth International Symposium on Precision Engineering Measurements and Instrumentation, 2010.
34. Li G., Chen Q., Li J., Hu X., Zhao J., A compact disk-like centrifugal microfluidic system for high-throughput nanoliter-scale protein crystallization screening. Analytical Chemistry, 2010, 82(11): 4362-9.
33. Chen Q., Li G., Zhao J., A CD-like microreactor array and its application in protein crystallization. //14th International Conference on Miniaturized Systems for Chemistry and Life Sciences, 2010.
32. 林建忠,包福兵,张凯,王瑞金, 微纳尺度通道流动理论及应用. 2010: 科学出版社.
31. Bao F., Lin J., Burnett simulations of gas flow and heat transfer in microchannels. Frontiers of Mechanical Engineering in China, 2009, 4(3): 252-263.
30. Bao F., Lin J., Effect of molecular interactions between the solid wall and liquid on the flow properties in microtubes. Chinese Physics Letters, 2009, 26(5): 056802.
29. 李俊君, 陈强, 李刚, 朱自强, 赵建龙, 键合方法对聚二甲基硅氧烷液滴型微流控芯片的影响. 化学学报, 2009, 67(13): 1503-1508.
28. 李俊君, 陈强, 李刚, 赵建龙, 朱自强, 微流控技术应用于蛋白质结晶的研究. 化学进展, 2009, 21(05): 1034-1039.
27. Yin Z., Lin J., Zhou K., Research on nucleation and coagulation of nanoparticles in parallel twin jets. Applied Mathematics and Mechanics, 2008, 29(2): 153-162.
26. Chan T., Bao F., Lin J., Zhou Y., Chan C., Temporal stability of a particle-laden jet. International Journal of Multiphase Flow, 2008, 34(2): 176-187.
25. Bao F.B., Lin J.Z., Shi X., Simulation of gas flow and heat transfer in micro Poiseuille flow. //IEEE International Conference on Nano/micro Engineered and Molecular Systems, 2008.
24. Bao F., Lin J., Burnett simulations of gas flow in microchannels. Fluid Dynamics Research, 2008, 40(9): 679-694.
23. Bao F., Lin J., Burnett simulation of gas flow and heat transfer in micro Poiseuille flow. International Journal of Heat and Mass Transfer, 2008, 51(15-16): 4139-4144.
22. 尹招琴, 林建忠, 周锟, 平行双射流场纳米颗粒的形成与凝聚的研究. 应用数学和力学, 2008(02): 140-148.
21. 杨才表, 陈强, 邵建波, 吴蕾, 赵建龙, 基于玻璃基底的细胞培养芯片研究. 生物技术通讯, 2008(01): 76-79.
20. 涂程旭, 王昊利, 林建忠, 圆柱绕流的流场特性及涡脱落规律研究. 中国计量学院学报, 2008(02): 98-102+136.
19. 林建忠, 包福兵, 微纳米尺度流场滑移-过渡流区流动和传热特性的研究. //第八届全国水动力学学术会议暨两岸船舶与海洋工程水动力学研讨会, 2008.
18. Yin Z., Zhang H., Lin J., Experimental study on the flow field characteristics in the mixing region of twin jets. Journal of Hydrodynamics, 2007, 19(3): 309-313.
17. Yin Z., Lin J., Zhou K., Chan T., Numerical simulation of the formation of pollutant nanoparticles in the exhaust twin-jet plume of a moving car. International Journal of Nonlinear Sciences and Numerical Simulation, 2007, 8(4): 535-543.
16. Yin Z., Lin J., Numerical simulation of the formation of nanoparticles in an impinging twin-jet. Journal of Hydrodynamics, 2007, 19(5): 533-541.
15. Qiang C., Gang L., Qing-Hui J., Jian-Long Z., Qiu-Shi R., Yuan-Sen X., A rapid and low-cost procedure for fabrication of glass microfluidic devices. Journal of Microelectromechanical Systems, 2007, 16(5): 1193-1200.
14. Bao F., Lin J., Shi X., Burnett simulations of flow and heat transfer in micro Couette flow. Heat and Mass Transfer, 2007, 43(6): 559-566.
13. 尹招琴, 田瑞, 单伟忠, 空气隙膜蒸馏过程传质的强化. 膜科学与技术, 2007(05): 27-30.
12. 陈强, 李刚, 潘爱平, 金庆辉, 赵建龙, 程建功, 徐元森, 玻璃微流控芯片廉价快速制作方法的研究. 化学学报, 2007(17): 1863-1868.
11. Sun L., Lin J., Bao F., Numerical simulation on the deposition of nanoparticles under laminar conditions. Journal of Hydrodynamics, 2006, 18(6): 676-680.
10. Bao F., Lin J., Shi X., Simulation of flow and heat transfer in micro couette flow. //Nano/Micro Engineered and Molecular Systems, NEMS '06. 1st IEEE International Conference, 2006.
9. Bao F., Lin J., Liu Y., Research on the flow property in three dimensional cavity of micro-channel. Journal of Hydrodynamics, 2006, 18(1): 20-25.
8. 李刚, 陈强, 赵建龙, 离子迁移谱技术及其在生命分析化学中应用. 现代仪器, 2006(02): 31-34.
7. Liu Y., Lin J., Bao F., Numerical simulation of the scalar mixing characteristics in three-dimensional microchannels. Chinese Jounal of Chemical Engineering, 2005, 13(3): 297-302.
6. Bao F., Lin J., Shi X., Equivalent thickness of materials of fused silica and stainless steel in the flow of microtubes. Journal of Zhejiang University: Science, 2005, 6A(9): 1004-1006.
5. Bao F., Lin J., Linear stability analysis for various forms of one-dimensional Burnett equation. International Journal of Nonlinear Sciences and Numerical Simulation, 2005, 6(3): 295-303.
4. 包福兵, 林建忠, 吴法理, 林江, 粉煤灰管道气力输送特性的研究. 流体机械, 2005, 33(7): 15-19.
3. 包福兵, 林建忠, 分子间作用力对微管道流动的影响. //全国水动力学研讨会, 2005.
2. 包福兵, 陈丽华, 林建忠, 吴法理, 气力输送系统T形盲管长度的优化. 起重运输机械, 2004, 5: 46-50.
1. Lin J., Bao F., Zhang Z., Numerical simulation on velocities of two interacting fibers in fiber suspension. Journal of Hydrodynamics, 2003, 15(3): 10-16.