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Ø  Qiongxiang Kong, et al. Fast simulation of dynamic heat transfer through building envelopes via parareal.  Science and Technology for the Built Environment, 2022, 28(8): 1069-1081.(SCI: 4G0GS)

Ø Qiongxiang Kong, et al. Dynamic heat transfer simulation method of building envelope based on Laguerre polynomials model order reduction. Journal of Building Performance Simulation,2021, 14(6): 646-665.(SCI: WV5EU) 

Ø Zhendi Ma, Qiongxiang Kong, et al. Numerical simulation on heat transfer inside and outside of vertical buried pipes based on two model order reduction methods. Numerical Heat Transfer, Part A: Applications: 2021,79(9): 631-655. (SCI: RJ9UL)

Ø Qiongxiang Kong, et al. Fast simulation of dynamic heat transfer through building envelope via model-order-reduction, Building Simulation, 2017,10(3):419-429SCI:EN7SD

Ø  Qiongxiang Kong, et al. Numerical Analysis of the Dynamic Heat Transfer through an External Wall under Different Outside Temperatures. Energy Procedia 105 (2017): 2818-24. EI: 20172503791848)

Ø  Qiongxiang Kong, et al. Numerical Simulation of a Radiant Floor Cooling Office Based on CFD-BES Coupling and FEM. Energy Procedia 105 (2017): 3577 – 3583. EI: 20172503791957

Ø  Qiongxiang Kong, et al. A new two grid variational multiscale method for steady-state natural convection problem, Mathematical Methods in the Applied Sciences, 2016, 39(14): 4007- 4024. SCI: DX0UA

Ø  Qiongxiang Kong, et al. A structure-preserving algorithm for linear systems with circulant pentadiagonal coefficient matrices. Journal of Mathematical Chemistry, 2015.SCICL9HU

Ø  Xiao He, Qiongxiang Kong, et al. Fast simulation methods for Dynamic heat transfer through Building envelope based on Model-order-reduction. HVAC 2015, Tianjin. Procedia Engineering 2015121:1764-1771.EI 20160701939654 .

Ø  Weirong Zheng, Bo Song, and Qiongxiang Kong. Numerical simulation of indoor airflow by parallel method. APEC Conference on Low Carbon Town and Physical Energy Storage, Changsha, 2013:531-536.

Ø  Qiongxiang Kong, et al. A new fractional integral inequality with singularity and its Application. Abstract and Applied Analysis, 2012, Article Number: 937908. (SCI: 989PX )

Ø  孔琼香, 俞炳丰, 杨青, 杨海龙. 供冷工况地板送风静压层热力衰减的实验研究. 学报, 2008,42(9):1174-1178. EI:084211646891)

Ø  Qiongxiang Kong, et al. Numerical study on temperature stratification in a room with underfloor air distribution system. Energy and buildings, 2008, 40(4): 495-502. (SCI: 257HEEI:075211000935) 

Ø  Qiongxiang Kong, et al. Modeling Analysis on Evolution Equations of Harmful Gas Concentration Variance in Building. The Fourth International Conference on Impulsive and Hybrid Dynamical Systems, Nanning, 2007: 2415-2418. Published as a supplementary volume to Dynamics of Continuous, Discrete and Impulsive Systems, Series A: Mathematical Analysis. (ISSN 1201-3390)

Ø  Qiongxiang Kong, et al, Experimental investigation of thermal decay in an underfloor plenum in summer, The 5th International Symposium on Heating, Ventilating and Air Conditioning, Beijing, 2007.ISTP: BHD24)

Ø  Qiongxiang Kong, et al. Experimental investigation of room air stratification in underfloor air distribution systems.The 22nd International Congress of Refrigeration, Beijing, 2007.

Ø  Bingfeng Yu, Zhangbao Hu, Min Liu, Hailong Yang, Qiongxiang Kong, et al. Review of research on air conditioning system and indoor air quality control for human health. International Journal of Refrigeration, 2009, 32(1): 3-20. (SCI:429JU )

Ø  孔琼香, 俞炳丰, 潘振杨青. 地板送风室内温度不均匀分布特性的实验研究. 学报, 2006, 40(9):1074-1078. EI: 064610239852

Ø  孔琼香, 俞炳丰. 办公楼地板送风系统应用与研究现状. 暖通空调, 2004, 34(4): 26-31.