FIRST-ORDER SENSITIVITY AND UNCERTAINTY ANALYSIS FOR A REGIONAL-SCALE GAS-PHASE CHEMICAL MECHANISM

被引:63
作者
GAO, DF
STOCKWELL, WR
MILFORD, JB
机构
[1] UNIV CONNECTICUT, DEPT CIVIL ENGN, STORRS, CT 06269 USA
[2] FRAUNHOFER INST, IFU, D-82467 GARMISCH PARTENKIRCHEN, GERMANY
关键词
D O I
10.1029/95JD02704
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
First-order sensitivity and uncertainty analysis methods have been applied to the RADM2 mechanism, the second generation gas-phase chemical mechanism included in the Regional Acid Deposition Model. The direct decoupled method (DDM) was used to evaluate the local sensitivity of product concentrations of O-3, HCHO, H2O2, PAN, and HNO3 to values of 157 rate constants and 126 stoichiometric coefficients. The sensitivity analysis results were combined with estimates of the uncertainty in each parameter in the mechanism to produce a: local measure of its contribution to the uncertainty in the outputs. Several different sets of simulation conditions were used, representing summertime surface conditions for urban and nonurban areas. The analysis identified the most influential rate parameters to be those for PAN chemistry, formation of HNO3, and photolysis of HCHO, NO2, O-3, and the unknown product (DCB) of aromatics oxidation. Rate parameters for the conversion of NO to NO2, such as O-3 + NO, HO2 + NO and organic radical + NO, and the product yields of organic peroxy radical (XYLP) in the reaction of XYL + HO (XYL represents xylene and more reactive aromatics) and DCB in the reaction XYLP + NO are also relatively influential.
引用
收藏
页码:23153 / 23166
页数:14
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