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Paper Publications
[1] 曹乐.基于多相质点网格法的大气污染仿真模拟.科学技术与工程,20(14)
[2] 曹乐.Influence of the Background Nitrogen Oxides on the Tropospheric Ozone Depletion Events in the Arctic during Springtime .Atmosphere,11(344)
[3] 曹乐.On the contribution of chemical oscillations to ozone depletion events in the polar spring.Atmospheric Chemistry and Physics(19)
[4] 曹乐.Sensitivity analysis of the dependence of the Carbon Bond Mechanism IV (CBM-IV) on the initial air composition under an urban condition.Atmospheric Environment,215(116860):10p
[5] 曹乐.Simplification of Carbon Bond Mechanism IV (CBM-IV) under Different Initial Conditions by Using Concentration Sensitivity Analysis.MOLECULES,24(13):18p
[6] 曹乐.运动激波和气水界面相互作用的数值模拟.水电能源科学,27(3)
[7] 曹乐.Numerical analysis of the chemical kinetic mechanisms of ozone depletion and halogen release in the polar troposphere.Atmospheric Chemistry and Physics,14(7):3771-3787
[8] 曹乐.Modeling of Auto-Catalytic Halogen Release and Ozone Depletion in Polar Regions.Journal of Physics: Conference Series,318(-)
[9] 曹乐.Numerical simulation of tropospheric ozone depletion in the polar spring.AIR QUALITY ATMOSPHERE AND HEALTH,6(4):673-686
[10] 曹乐.Sensitivity of the Reaction Mechanism for the Ozone Depletion Events during the Arctic Spring on the Initial Atmospheric Composition of the Troposphere.The 1st Int. Electron. Conf. Atmos. Sci. 会议论文集
[11] 曹乐.Derivation of the reduced reaction mechanisms of ozone depletion events in the Arctic spring by using concentration sensitivity analysis and principal component analysis.Atmospheric Chemistry and Physics,16(23):14853-14873
[12] 曹乐.Sensitivity of the Reaction Mechanism of the Ozone Depletion Events during the Arctic Spring on the Initial Atmospheric Composition of the Troposphere.Atmosphere,7(10)
[13] 曹乐.Sensitivity of VOF simulations of the liquid jet breakup to physical and numerical parameters.COMPUTERS & FLUIDS,136(-):312-323
[14] 曹乐.Impacts of Organic Sources on the Ozone Depletion Events in Arctic Spring.the 1st Int. Electron. Conf. Atmos. Sci.
[15] 曹乐.Role of the boundary layer in the occurrence and termination of the tropospheric ozone depletion events in polar spring.Atmospheric Environment,132(-):98-110
Total 16 1/2
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