Infrared and Laser Engineering, Volume. 52, Issue 10, 20230009(2023)
Calculation model of surface temperature of ground target under the coupling effect of wind-driven rain and moisture and heat
[3] [3] Lin Qunqing. Research on the effects of lets particles on thermal radiative acteristics of vehicles credibility evaluation method f thermal radiation model[D]. Nanjing: Nanjing University of Science Technology, 2018. (in Chinese)
[4] F Souri, H Ge, T Stathopoulos. Wind-driven rain on buildings: Accuracy of the ISO semi-empirical model. Journal of Wind Engineering and Industrial Aerodynamics, 212, 104606(2021).
[6] Chao Chen, Huibo Zhang, Tianda Qian. Semi-empirical model method analysis of wind-driven rain intensity on building walls. Building Energy Efficiency, 49, 95-102(2021).
[7] B Blocken, J Carmeliet. Overview of three state-of-the-art wind-driven rain assessment models and comparison based on model theory. Building & Environment, 45, 691-703(2010).
[9] An Yuan. Numerical calculation and analysis of wind driving rain based on euler multiphase flow model. Scientific and Technological Innovation, 70-73(2022).
[13] A Kubilay, D Derome, J Carmeliet. Coupling of physical phenomena in urban microclimate: A model integrating air flow, wind-driven rain, radiation and transport in building materials. Urban Climate, 24, 398-418(2018).
[14] A Kubilay, D Derome, B Blocken, et al. CFD simulation and validation of wind-driven rain on a building facade with an Eulerian multiphase model. Building & Environment, 61, 69-81(2013).
[15] T Defraeye, B Blocken, J Carmeliet. An adjusted temperature wall function for turbulent forced convective heat transfer for bluff bodies in the atmospheric boundary layer. Building & Environment, 46, 2130-2141(2011).
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Xindi Su, Yuge Han, Dengfeng Ren. Calculation model of surface temperature of ground target under the coupling effect of wind-driven rain and moisture and heat[J]. Infrared and Laser Engineering, 2023, 52(10): 20230009
Category: Infrared technology and application
Received: Jan. 6, 2023
Accepted: --
Published Online: Nov. 21, 2023
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