Estimating the model-specific uncertainty of aircraft noise calculations

被引:19
|
作者
Schaeffer, Beat [1 ]
Pluess, Stefan [1 ]
Thomann, Georg [1 ]
机构
[1] Empa, Swiss Fed Labs Mat Sci & Technol, Lab Acoust Noise Control, CH-8600 Dubendorf, Switzerland
关键词
Aircraft noise; Noise maps; Model uncertainty; Uncertainty maps; LEVEL;
D O I
10.1016/j.apacoust.2014.01.009
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Aircraft noise contours are estimated with model calculations. Due to their impact, e.g., on land use planning, calculations need to be highly accurate, but their uncertainty usually remains unaccounted for. The objective of this study was therefore to quantify the uncertainty of calculated average equivalent continuous sound levels (L-Aeq) of complex scenarios such as yearly air operations, and to establish uncertainty maps. The methodology was developed for the simulation program FLULA2. In a first step, the partial uncertainties of modelling the aircraft as a sound source and of modelling sound propagation were quantified as a function of aircraft type and distance between aircraft and receiver. Then, these uncertainties were combined for individual flights to obtain the uncertainty of the single event level (L-AE) at a specified receiver grid. The average L-Aeq of a scenario results from the combination of the L-AE of many single flights, each of which has its individual uncertainties. In a last step, the uncertainties of all L-AE were therefore combined to the uncertainty of the L-Aeq, accounting also for uncertainties of the number of movements and of prognoses. Uncertainty estimations of FLULA2 calculations for Zurich and Geneva airports revealed that the standard uncertainty of the L-Aeq ranges from 0.5 dB (day) to 1.0 dB (night) for past-time scenarios when using radar data as input, and from 1.0 dB (day) to 1.3 dB (night) for future scenarios, in areas where L-Aeq >= 53 dB (day) and LAeq >= 43 dB (night), respectively. Different uncertainty values may result for other models and/or airports, depending on the model sophistication, traffic input data, available sound source data, and airport peculiarities such as the specific aircraft fleet or prevailing departure and arrival procedures. The methodology, while established for FLULA2 on Zurich and Geneva airports, may be applied to other models and/or airports, but the partial uncertainties have to be specifically re-established to account for individual models and underlying sound source data. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:58 / 72
页数:15
相关论文
共 50 条
  • [31] System Noise Assessment and Uncertainty Analysis of a Conceptual Supersonic Aircraft
    Akatsuka, Junichi
    Ishii, Tatsuya
    AEROSPACE, 2022, 9 (04)
  • [32] A PATH MODEL OF AIRCRAFT NOISE ANNOYANCE
    TAYLOR, SM
    JOURNAL OF SOUND AND VIBRATION, 1984, 96 (02) : 243 - 260
  • [33] Aircraft community noise impact model
    Stusnick, E
    Thompson, RL
    Thompson, TR
    Evans, BA
    DiFelici, J
    ENVIRONMENTAL AND SOCIAL EFFECTS OF TRANSPORTATION, 1998, (1626): : 58 - 66
  • [34] Generating Deep Learning Model-Specific Explanations at the End User's Side
    Haffar, R.
    Jebreel, N.
    Sanchez, D.
    Domingo-Ferrer, J.
    INTERNATIONAL JOURNAL OF UNCERTAINTY FUZZINESS AND KNOWLEDGE-BASED SYSTEMS, 2022, 30 (SUPP02) : 255 - 278
  • [35] Task model-specific operator skill assessment in routine fetal ultrasound scanning
    Yipei Wang
    Qianye Yang
    Lior Drukker
    Aris Papageorghiou
    Yipeng Hu
    J. Alison Noble
    International Journal of Computer Assisted Radiology and Surgery, 2022, 17 : 1437 - 1444
  • [36] Spectrum of pathogen- and model-specific histopathologies in mouse models of acute pneumonia
    Dietert, Kristina
    Gutbier, Birgitt
    Wienhold, Sandra M.
    Reppe, Katrin
    Jiang, Xiaohui
    Yao, Ling
    Chaput, Catherine
    Naujoks, Jan
    Brack, Markus
    Kupke, Alexandra
    Peteranderl, Christin
    Becker, Stephan
    von Lachner, Carolin
    Baal, Nelli
    Slevogt, Hortense
    Hocke, Andreas C.
    Witzenrath, Martin
    Opitz, Bastian
    Herold, Susanne
    Hackstein, Holger
    Sander, Leif E.
    Suttorp, Norbert
    Gruber, Achim D.
    PLOS ONE, 2017, 12 (11): : e0188251
  • [37] Aircraft Noise Emission Model Accounting for Aircraft Flight Parameters
    Zellmann, C.
    Schaeffer, B.
    Wunderli, J. M.
    Isermann, U.
    Paschereit, C. O.
    JOURNAL OF AIRCRAFT, 2018, 55 (02): : 682 - 695
  • [38] Cost-estimating model for aircraft maintenance
    1600, AIAA International, 12700 Sunrise Valley Drive, Suite 200Reston, VA, Virginia, Virginia 20191-5807, United States (55):
  • [39] Cost-Estimating Model for Aircraft Maintenance
    Fioriti, Marco
    Vercella, Valeria
    Viola, Nicole
    JOURNAL OF AIRCRAFT, 2018, 55 (04): : 1564 - 1575
  • [40] Task model-specific operator skill assessment in routine fetal ultrasound scanning
    Wang, Yipei
    Yang, Qianye
    Drukker, Lior
    Papageorghiou, Aris
    Hu, Yipeng
    Noble, J. Alison
    INTERNATIONAL JOURNAL OF COMPUTER ASSISTED RADIOLOGY AND SURGERY, 2022, 17 (08) : 1437 - 1444