王青松[中國科學技術大學教師]

王青松[中國科學技術大學教師]

王青松,1977年11月出生於河南,現為中國科學技術大學火災科學國家重點實驗室副研究員 。

基本信息

人物簡介

王青松,1977年出生於河南商丘,畢業於中國科學技術大學。現為中國科學技術大學火災科學國家重點實驗室副研究員。

個人履歷

2010.7-至今中國科學技術大學副研究員
2012入選教育部新世紀優秀人才計畫
2010.11-2011.4英國金斯頓大學訪問學者
2007.9-2009.9英國金斯頓大學歐盟瑪麗居里學者
2006.3-2010.6中國科學技術大學講師
2005.12中國科學技術大學安全技術及工程專業博士

學術任職

2014.8編輯International Journal of Thermal Energy and Applications
2013副主編Procedia Engineering 62 (2013) 1-1128, 9th Asia-Oceania Symposium on Fire Science and Technology.
2013.6理事中科院青促會第二屆理事會
2009會員國際火災安全科學學會(IAFSS)會員

研究方向

鋰離子電池火災動力學及消防對策
火災環境下玻璃的破裂及脫落機制
危險化學品泄漏災害擴展機理
熱自燃孕育發生髮展動力學
風力發電機組火災

科研項目

非均勻高倍率放電作用下鋰離子電池釋熱機理及熱失控預測:國家自然科學基金面上項目,主持,執行期:2012.1-2015.12。
森林-城鎮交界域火災安全的關鍵科學問題研究:國家自然科學基金重大國際(地區)合作研究項目,骨幹,執行期:2012.1-2016.12。
城市公共安全脆弱性分析和綜合風險評估關鍵技術研究與示範:科技部“十二五”科技支撐項目,骨幹,執行期:2011.1-2013.12。
鋰離子電池的熱危險性及爆炸突變動力學機理研究:國家自然科學基金青年基金項目,主持,執行期:2007.1-2007.12。
火災環境下玻璃熱回響特性研究:中國科學院院長獎啟動基金項目,執行期:2007.01-2009.12。
火災環境下玻璃熱回響行為:歐盟第六框架協定項目,承擔,執行期:2007.9-2010.11。
煤炭熱自燃熱力學和動力學機理研究:安徽省教育廳基金項目,主持,執行期:2007.01-2008.12。
災環境下玻璃起裂的隨機性和確定性規律及脫落預測:中央高校基本科研業務費專項資金項目,主持,執行期:2010.1-2011.12。
氧濃度、輻射強度等參數耦合作用下固體表面火蔓延機理研究:國家自然科學基金面上項目,骨幹,執行期:2010.1-2012.12。
建築性能化防火設計關鍵技術研究及套用示範:科技部“十一五”科技支撐項目,骨幹,執行期:2006.10-2008.12.

個人獲獎

入選中國科學院青年創新促進會(2012)
入選教育部新世紀優秀人才支持計畫(2012)
中國科學院院長優秀獎(2006)
寶鋼優秀獎(2005)

代表性論著

Journals

[1] Xiao HH, Wang QS, Shen XB, An WG, Duan QL, Sun JH. An experimental study of premixed hydrogen/air flame propagation in a partially open duct. International Journal of Hydrogen Energy 2014;39: 6233-6241.

[2] Wang Y, Wu Y, Wang QS, Liew KM, Chen HD, Sun JH, He LH. Numerical study on fire response of glass facades in different installation forms. Construction and Building Materials 2014;61: 172-180.

[3] Wang Y, Wang QS, Shao GZ, Chen HD, Sun JH, He LH, Liew KM. Experimental study on critical breaking stress of float glass under elevated temperature. Materials & Design 2014;60: 41-49.

[4] Wang Y, Wang QS, Shao GZ, Chen HD, Su YF, Sun JH, He LH, Liew K. Fracture behavior of a four-point fixed glass curtain wall under fire conditions. Fire Safety Journal 2014;67: 24-34.

[5] Wang QS, Wang Y, Zhang Y, Chen HD, Sun JH, He LH. A stochastic analysis of glass crack initiation under thermal loading. Applied Thermal Engineering 2014;67: 447-457.

[6] Wang QS, Chen HD, Wang Y, Wen JX, Dembele S, Sun JH, He LH. Development of a dynamic model for crack propagation in glazing system under thermal loading. Fire Safety Journal 2014;63: 113-124.

[7] Wang Q, Chen H, Wang Y, Wen JX, Dembele S, Sun J, He L. Development of a dynamic model for crack propagation in glazing system under thermal loading. Fire Safety Journal 2014;63: 113-124.

[8] Shao GZ, Wang QS, Zhao H, Wang Y, Chen HD, Su YF, Sun JH, He LH. Maximum temperature to withstand water film for tempered glass exposed to fire. Construction and Building Materials 2014;57: 15-23.

[9] Ping P, Wang Q, Huang P, Sun J, Chen C. Thermal behaviour analysis of lithium-ion battery at elevated temperature using deconvolution method. Applied Energy 2014;129: 261-273.

[10] Zhao XJ, Xiao HH, Wang QS, Ping P, Sun JH. Study on spontaneous combustion risk of cotton using a micro-calorimeter technique. Industrial Crops and Products 2013;50: 383-390.

[11] Zhao XJ, Wang QS, Xiao HH, Mao ZL, Chen P, Sun JH. Prediction of coal stockpile autoignition delay time using micro-calorimeter technique. Fuel Processing Technology 2013;110: 86-93.

[12] Xiao HH, Wang QS, Shen XB, Guo S, Sun JH. An experimental study of distorted tulip flame formation in a closed duct. Combustion and Flame 2013;160: 1725-1728.

[13] Xiao HH, He XC, Wang QS, Sun JH. Experimental and numerical study of premixed flame propagation in a closed duct with a 90 degrees curved section. International Journal of Heat and Mass Transfer 2013;66: 818-822.

[14] Wang QS, Wang Y, Chen HD, Xiao HH, Sun JH, He LH. Frame constraint effect on the window glass crack behavior exposed to a fire. Engineering Fracture Mechanics 2013;108: 109-119.

[15] Wang JH, Lo SM, Wang QS, Sun JH, Mu HL. Risk of Large-Scale Evacuation Based on the Effectiveness of Rescue Strategies Under Different Crowd Densities. Risk Analysis 2013;33: 1553-1563.

[16] Ping P, Xia X, Wang QS, Sun JH, Dahn JR. The Effect of Trimethoxyboroxine on Some Positive Electrodes for Li-Ion Batteries. Journal of the Electrochemical Society 2013;160: A426-A429.

[17] Li ZD, Zhang YC, Xiang HF, Ma XH, Yuan QF, Wang QS, Chen CH. Trimethyl phosphite as an electrolyte additive for high-voltage lithium-ion batteries using lithium-rich layered oxide cathode. Journal of Power Sources 2013;240: 471-475.

[18] Jiao LL, Xiao HH, Wang QS, Sun JH. Thermal degradation characteristics of rigid polyurethane foam and the volatile products analysis with TG-FTIR-MS. Polymer Degradation and Stability 2013;98: 2687-2696.

[19] Zhong GB, Wang YY, Zhao XJ, Wang QS, Yu Y, Chen CH. Structural, electrochemical and thermal stability investigations on LiNi0.5-xAl2xMn1.5-xO4 (0 <= 2x <= 1.0) as 5 V cathode materials. Journal of Power Sources 2012;216: 368-375.

[20] Zhang Y, Ji J, Wang QS, Huang XJ, Wang QH, Sun JH. Prediction of the critical condition for flame acceleration over wood surface with different sample orientations. Combustion and Flame 2012;159: 2999-3002.

[21] Zhang Y, Ji J, Li J, Sun JH, Wang QS, Huang XJ. Effects of altitude and sample width on the characteristics of horizontal flame spread over wood sheets. Fire Safety Journal 2012;51: 120-125.

[22] Wang QS, Zhang Y, Wang Y, Sun JH, He LH. Dynamic three-dimensional stress prediction of window glass under thermal loading. International Journal of Thermal Sciences 2012;59: 152-160.

[23] Wang QS, Ping P, Zhao XJ, Chu GQ, Sun JH, Chen CH. Thermal runaway caused fire and explosion of lithium ion battery. Journal of Power Sources 2012;208: 210-224.

[24] Wang QH, Wen H, Wang QS, Sun JH. Inhibiting effect of Al(OH)(3) and Mg(OH)(2) dust on the explosions of methane-air mixtures in closed vessel. Science China-Technological Sciences 2012;55: 1371-1375.

[25] Wang JH, Lo SM, Sun JH, Wang QS, Mu HL. Qualitative simulation of the panic spread in large-scale evacuation. Simulation-Transactions of the Society for Modeling and Simulation International 2012;88: 1465-1474.

[26] Shen XB, Wang QS, Xiao HH, Sun JH. Experimental study on the characteristic stages of premixed hydrogen-air flame propagation in a horizontal rectangular closed duct. International Journal of Hydrogen Energy 2012;37: 12028-12038.

[27] Ping P, Wang QS, Sun JH, Xia X, Dahn JR. Studies of the Effect of Triphenyl Phosphate on Positive Electrode Symmetric Li-Ion Cells. Journal of the Electrochemical Society 2012;159: A1467-A1473.

[28] Jiao LL, Xu GD, Wang QS, Xu Q, Sun JH. Kinetics and volatile products of thermal degradation of building insulation materials. Thermochimica Acta 2012;547: 120-125.

[29] Huang XJ, Wang QS, Zhang Y, Yin Y, Sun JH. Thickness effect on flame spread characteristics of expanded polystyrene in different environments. Journal of Thermoplastic Composite Materials 2012;25: 427-438.

[30] Chu GQ, Wang JH, Wang QS. Time-dependent fire risk assessment for occupant evacuation in public assembly buildings. Structural Safety 2012;38: 22-31.

[31] ZHANG Y, WANG QS, ZHU XB, Huang XJ, Sun JH. Experimental Study on Crack of Float Glass with Different Thicknesses Exposed to Radiant Heating. Procedia Engineering 2011;11: 704-712.

[32] Zhang Y, Huang XJ, Wang QS, Ji J, Sun JH, Yin Y. Experimental study on the characteristics of horizontal flame spread over XPS surface on plateau. Journal of Hazardous Materials 2011;189: 34-39.

[33] Xiao HH, Wang QS, He XC, Sun JH, Shen XB. Experimental study on the behaviors and shape changes of premixed hydrogen-air flames propagating in horizontal duct. International Journal of Hydrogen Energy 2011;36: 6325-6336.

[34] Wang QS, ZHANG Y, Sun JH, Wen JX, Dembele S. Temperature and Thermal Stress Simulation of Window Glass Exposed to Fire. Procedia Engineering 2011;11: 446-454.

[35] Wang QS, Ping P, Sun JH, Chen CH. The effect of mass ratio of electrolyte and electrodes on the thermal stabilities of electrodes used in lithium ion battery. Thermochimica Acta 2011;517: 16-23.

[36] Wang QS, Ping P, Sun JH, Chen CH. Cresyl diphenyl phosphate effect on the thermal stabilities and electrochemical performances of electrodes in lithium ion battery. Journal of Power Sources 2011;196: 5960-5965.

[37] Ping P, Wang QS, Sun JH, Feng XY, Chen CH. Effect of sulfites on the performance of LiBOB/gamma-butyrolactone electrolytes. Journal of Power Sources 2011;196: 776-783.

[38] Huang XJ, Sun JH, Ji J, Zhang Y, Wang QS, Zhang Y. Flame spread over the surface of thermal insulation materials in different environments. Chinese Science Bulletin 2011;56: 1617-1622.

[39] Xiao HH, Wang QS, He XC, Sun JH, Yao LY. Experimental and numerical study on premixed hydrogen/air flame propagation in a horizontal rectangular closed duct. International Journal of Hydrogen Energy 2010;35: 1367-1376.

[40] Wang QS, Ping P, Sun JH, Chen CH. Improved thermal stability of lithium ion battery by using cresyl diphenyl phosphate as an electrolyte additive. Journal of Power Sources 2010;195: 7457-7461.

[41] Wang QS, Ping P, Sun JH. Catastrophe analysis of cylindrical lithium ion battery. Nonlinear Dynamics 2010;61: 763-772.

[42] Ping P, Wang QS, Sun JH, Xiang HF, Chen CH. Thermal Stabilities of Some Lithium Salts and Their Electrolyte Solutions With and Without Contact to a LiFePO(4) Electrode. Journal of the Electrochemical Society 2010;157: A1170-A1176.

[43] Ding YB, Sun JH, He XC, Wang QH, Yin Y, Xu Y, Chen XF. Flame propagation characteristics and flame structures of zirconium particle cloud in a small-scale chamber. Chinese Science Bulletin 2010;55: 3954-3959.

[44] Dembele S, Rosario RAF, Wang QS, Warren PD, Wen JX. Thermal and Stress Analysis of Glazing in Fires and Glass Fracture Modeling with a Probabilistic Approach. Numerical Heat Transfer Part B-Fundamentals 2010;58: 419-439.

[45] Xiang HF, Wang H, Chen CH, Ge XW, Guo S, Sun JH, Hu WQ. Thermal stability of LiPF6-based electrolyte and effect of contact with various delithiated cathodes of Li-ion batteries. Journal of Power Sources 2009;191: 575-581.

[46] Wang QS, Sun JH, Chen XF, Chu GQ, Chen CH. Effects of solvents and salt on the thermal stability of charged LiCoO2. Materials Research Bulletin 2009;44: 543-548.

[47] Wang QS, Sun JH, Chen DL, Chen CH. Comparison of the thermal decomposition kinetics for charged LiMn2O4 by TG and C80 methods. Journal of Alloys and Compounds 2009;468: 477-481.

[48] Wang QS, Sun JH, Chen CH. Improved thermal stability of graphite electrodes in lithium-ion batteries using 4-isopropyl phenyl diphenyl phosphate as an additive. Journal of Applied Electrochemistry 2009;39: 1105-1110.

[49] Wang QS, Sun JH, Chen CH. Effects of solvents and salt on the thermal stability of lithiated graphite used in lithium ion battery. Journal of Hazardous Materials 2009;167: 1209-1214.

[50] Wang QS, Guo S, Sun JH. Spontaneous Combustion Prediction of Coal by C80 and ARC Techniques. Energy & Fuels 2009;23: 4871-4876.

[51] Guo S, Wang QS, Sun JH, Liao X, Wang ZS. Study on the influence of moisture content on thermal stability of propellant. Journal of Hazardous Materials 2009;168: 536-541.

[52] Wang QS, Sun JH, Guo S. Spontaneous combustion identification of stored wet cotton using a C80 calorimeter. Industrial Crops and Products 2008;28: 268-272.

[53] Wang QS, Sun JH, Chen CH, Zhou XM. Thermal properties and kinetics study of charged LiCoO2 by TG and C80 methods. Journal of Thermal Analysis and Calorimetry 2008;92: 563-566.

[54] Chen DL, Sun JH, Wang QS, Liu Y. Combustion behaviors and flame structure of methane/coal dust hybrid in a vertical rectangle chamber. Combustion Science and Technology 2008;180: 1518-1528.

[55] Xiang HF, Jin QY, Chen CH, Ge XW, Guo S, Sun JH. Dimethyl methylphosphonate-based nonflammable electrolyte and high safety lithium-ion batteries. Journal of Power Sources 2007;174: 335-341.

[56] Wang QS, Sun JH, Chu GQ, Yao XL, Chen CH. Effect of LiPF6 on the thermal behaviors of four organic solvents for lithium ion batteries. Journal of Thermal Analysis and Calorimetry 2007;89: 245-250.

[57] Wang QS, Sun JH, Chen CH. Thermal stability of delithiated LiMn2O4 with electrolyte for lithium-ion batteries. Journal of the Electrochemical Society 2007;154: A263-A267.

[58] Wang QS, Sun JH. Enhancing the safety of lithium ion batteries by 4-isopropyl phenyl diphenyl phosphate. Materials Letters 2007;61: 3338-3340.

[59] Xu HY, Xie S, Wang QY, Yao XL, Wang QS, Chen CH. Electrolyte additive trimethyl phosphite for improving electrochemical performance and thermal stability of LiCoO2 cathode. Electrochimica Acta 2006;52: 636-642.

[60] Wang QS, Sun JH, Yao XL, Chen CH. Thermal behavior of lithiated graphite with electrolyte in lithium-ion batteries. Journal of the Electrochemical Society 2006;153: A329-A333.

[61] Wang QS, Sun JH, Yao XL, Chen CH. C80 calorimeter studies of the thermal behavior of LiPF6 solutions. Journal of Solution Chemistry 2006;35: 179-189.

[62] Wang QS, Sun JH, Yao XL, Chen CH. Micro calorimeter study on the thermal stability of lithium-ion battery electrolytes. Journal of Loss Prevention in the Process Industries 2006;19: 561-569.

[63] Wang QS, Sun JH, Lu SX, Yao XL, Chen CH. Study on the kinetics properties of lithium hexafluorophosphate thermal decomposition reaction. Solid State Ionics 2006;177: 137-140.

[64] Wang QS, Sun JH, Chen CH. Thermal stability of LiPF6/EC+DMC+EMC electrolyte for lithium ion batteries. Rare Metals 2006;25: 94-99.

[65] Wang QS, Sun JH, Chen CH. Enhancing the thermal stability of LiCoO2 electrode by 4-isopropyl phenyl diphenyl phosphate in lithium ion batteries. Journal of Power Sources 2006;162: 1363-1366.

[66] Chu GQ, Sun JH, Wang QS, Chen SN. Simulation study on the effect of pre-evacuation time and exit width on evacuation. Chinese Science Bulletin 2006;51: 1381-1388.

[67] Yao XL, Xie S, Chen CH, Wang QS, Sun JH, Li YL, Lu SX. Comparative study of trimethyl phosphite and trimethyl phosphate as electrolyte additives in lithium ion batteries. Journal of Power Sources 2005;144: 170-175.

[68] Yao XL, Xie S, Chen CH, Wang QS, Sun JH, Li YL, Lu SX. Comparisons of graphite and spinel Li1.33Ti1.67O4 as anode materials for rechargeable lithium-ion batteries. Electrochimica Acta 2005;50: 4076-4081.

[69] Wang QS, Sun JH, Yao XL, Chen CH. 4-Isopropyl phenyl diphenyl phosphate as flame-retardant additive for lithium-ion battery electrolyte. Electrochemical and Solid State Letters 2005;8: A467-A470.

[70] Wang QS, Sun JH, Yao XL, Chen CH. Thermal stability of LiPF6/EC+DEC electrolyte with charged electrodes for lithium ion batteries. Thermochimica Acta 2005;437: 12-16.

[71] Sun JH, Sun ZH, Wang QS, Ding H, Wang T, Jiang CS. Catalytic effects of inorganic acids on the decomposition of ammonium nitrate. Journal of Hazardous Materials 2005;127: 204-210.

[72] Sun JH, Liu Y, Wang QS, Chen P. Experimental study on interference effect of rarefaction wave on laminar propapating flame. Chinese Science Bulletin 2005;50: 919-922.

Books

[1] 孫金華、王青松、紀傑,《火焰精細結構及其傳播動力學》,科學出版社,2011

[2] Sun Jinhua, Wang Qingsong, Sun Zhanhui, 《New Research on Hazardous Materials》第4章,Nova Science Publishers, New York, 2007

[3] 5/18,安全評價實用指南,中國礦業大學出版社,2007.3

Symposium Proceedings

[1] Wang, Q.S., Sun, J.H., Chen, S.N., Liu, Y., Wang, Z., 2005. Thermal stability evaluation of black powder, RDX, PETN and TNT. Theory and Practice of Energetic Materials, Vol 6: 235-240.

[2] Chen, S.N., Sun, J.H., Wang, Q.S., 2004. Mechanism research of boiling liquid expanding vapor explosion. PROGRESS IN SAFETY SCIENCE AND TECHNOLOGY, VOL 4, PTS A and B 4: 2154-2158.

[3] Wang, Q.S., Sun, J.H., Chen, S.N., 2004. Fault tree analysis and countermeasures for lithium-ion battery explosion. PROGRESS IN SAFETY SCIENCE AND TECHNOLOGY, VOL 4, PTS A and B 4: 2014-2018

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