Impacts of typical atmospheric dispersion schemes on source inversion

2020 ◽  
Vol 232 ◽  
pp. 117572
Author(s):  
Shushuai Mao ◽  
Jianlei Lang ◽  
Tian Chen ◽  
Shuiyuan Cheng ◽  
Chuanda Wang ◽  
...  
Atmosphere ◽  
2021 ◽  
Vol 12 (10) ◽  
pp. 1305
Author(s):  
Spyros Andronopoulos ◽  
Ivan V. Kovalets

A computationally efficient source inversion algorithm was developed and applied with the Lagrangian atmospheric dispersion model DIPCOT. In the process of source location estimation by minimizing a correlation-based cost function, the algorithm uses only the values of the time-integrated concentrations at the monitoring stations instead of all of the individual measurements in the full concentration-time series, resulting in a significant reduction in the number of integrations of the backward transport equations. Following the source location estimation the release start time, duration and emission rate are assessed. The developed algorithm was verified for the conditions of the ETEX-I (European Tracer Experiment—1st release). Using time-integrated measurements from all available stations, the distance between the estimated and true source location was 108 km. The estimated start time of the release was only about 1 h different from the true value, within the possible accuracy of estimate of this parameter. The estimated release duration was 21 h (the true value was 12 h). The estimated release rate was 4.28 g/s (the true value was 7.95 g/s). The estimated released mass almost perfectly fitted the true released mass (323.6 vs. 343.4 kg). It thus could be concluded that the developed algorithm is suitable for further integration in real-time decision support systems.


1988 ◽  
Author(s):  
William N. Alexander ◽  
Raymond H. Kimmel ◽  
Lauren Malaspina

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