Uncertainty Quantification for Infrasound Propagation in the Atmospheric Environment

The propagation of infrasound in the atmosphere is influenced by atmospheric environmental parameters, which affect the precise localization of the infrasound source. Therefore, it has become crucial to quantify the influence of atmospheric environmental parameters on infrasound propagation. First,...

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Main Authors: Liang Yu, Xiaoquan Yi, Ran Wang, Chenyu Zhang, Tongdong Wang, Xiaopeng Zhang
Format: Article
Language:English
Published: MDPI AG 2022-09-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/12/17/8850
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author Liang Yu
Xiaoquan Yi
Ran Wang
Chenyu Zhang
Tongdong Wang
Xiaopeng Zhang
author_facet Liang Yu
Xiaoquan Yi
Ran Wang
Chenyu Zhang
Tongdong Wang
Xiaopeng Zhang
author_sort Liang Yu
collection DOAJ
description The propagation of infrasound in the atmosphere is influenced by atmospheric environmental parameters, which affect the precise localization of the infrasound source. Therefore, it has become crucial to quantify the influence of atmospheric environmental parameters on infrasound propagation. First, in this paper, the tau-p model is chosen as the physical model of infrasound propagation in a non-uniform moving medium. The atmospheric environmental parameters affecting infrasound propagation are determined. Secondly, the atmospheric environmental parameter distribution data are generated using the Sobol sampling method. Third, the generated atmospheric data are incorporated into the physical model of infrasound propagation to solve the output. Finally, Sobol sensitivity analysis is performed for each parameter, and the atmospheric parameter with the largest Sobol index is identified as the one with the most significant influence on infrasound propagation.
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spelling doaj.art-0b8bc8ffbf6e43b7addbed51cf6f6e2a2023-11-23T12:47:58ZengMDPI AGApplied Sciences2076-34172022-09-011217885010.3390/app12178850Uncertainty Quantification for Infrasound Propagation in the Atmospheric EnvironmentLiang Yu0Xiaoquan Yi1Ran Wang2Chenyu Zhang3Tongdong Wang4Xiaopeng Zhang5The State Key Laboratory of Mechanical Transmissions, Chongqing University, Chongqing 400044, ChinaCollege of Logistics Engineering, Shanghai Maritime University, Shanghai 201306, ChinaCollege of Logistics Engineering, Shanghai Maritime University, Shanghai 201306, ChinaCollege of Logistics Engineering, Shanghai Maritime University, Shanghai 201306, ChinaNorthwest Institute of Nuclear Technology, Xi’an 710024, ChinaNorthwest Institute of Nuclear Technology, Xi’an 710024, ChinaThe propagation of infrasound in the atmosphere is influenced by atmospheric environmental parameters, which affect the precise localization of the infrasound source. Therefore, it has become crucial to quantify the influence of atmospheric environmental parameters on infrasound propagation. First, in this paper, the tau-p model is chosen as the physical model of infrasound propagation in a non-uniform moving medium. The atmospheric environmental parameters affecting infrasound propagation are determined. Secondly, the atmospheric environmental parameter distribution data are generated using the Sobol sampling method. Third, the generated atmospheric data are incorporated into the physical model of infrasound propagation to solve the output. Finally, Sobol sensitivity analysis is performed for each parameter, and the atmospheric parameter with the largest Sobol index is identified as the one with the most significant influence on infrasound propagation.https://www.mdpi.com/2076-3417/12/17/8850uncertainty quantificationsensitivity analysisSobol indexinfrasound propagation model
spellingShingle Liang Yu
Xiaoquan Yi
Ran Wang
Chenyu Zhang
Tongdong Wang
Xiaopeng Zhang
Uncertainty Quantification for Infrasound Propagation in the Atmospheric Environment
Applied Sciences
uncertainty quantification
sensitivity analysis
Sobol index
infrasound propagation model
title Uncertainty Quantification for Infrasound Propagation in the Atmospheric Environment
title_full Uncertainty Quantification for Infrasound Propagation in the Atmospheric Environment
title_fullStr Uncertainty Quantification for Infrasound Propagation in the Atmospheric Environment
title_full_unstemmed Uncertainty Quantification for Infrasound Propagation in the Atmospheric Environment
title_short Uncertainty Quantification for Infrasound Propagation in the Atmospheric Environment
title_sort uncertainty quantification for infrasound propagation in the atmospheric environment
topic uncertainty quantification
sensitivity analysis
Sobol index
infrasound propagation model
url https://www.mdpi.com/2076-3417/12/17/8850
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AT chenyuzhang uncertaintyquantificationforinfrasoundpropagationintheatmosphericenvironment
AT tongdongwang uncertaintyquantificationforinfrasoundpropagationintheatmosphericenvironment
AT xiaopengzhang uncertaintyquantificationforinfrasoundpropagationintheatmosphericenvironment