RLINE: A line source dispersion model for near-surface releases

被引:140
|
作者
Snyder, Michelle G. [1 ]
Venkatram, Akula [2 ]
Heist, David K. [1 ]
Perry, Steven G. [1 ]
Petersen, William B. [3 ]
Isakov, Vlad [1 ]
机构
[1] US EPA, Atmospher Modeling & Anal Div, Natl Exposure Res Lab, Off Res & Dev, Res Triangle Pk, NC 27711 USA
[2] Univ Calif Riverside, Riverside, CA 92521 USA
[3] William B Petersen Consulting, Res Triangle Pk, NC USA
基金
美国国家环境保护局;
关键词
Near-surface dispersion; Near-road concentrations; Surface releases; Similarity theory; Meteorological measurements; Urban dispersion; Idaho falls experiment; RLINE; AIR-QUALITY; BOUNDARY-LAYER; DIFFUSION; PROXIMITY; POLLUTION; ROADWAYS; EXPOSURE;
D O I
10.1016/j.atmosenv.2013.05.074
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This paper describes the formulation and evaluation of RUNE, a Research LINE source model for near-surface releases. The model is designed to simulate mobile source pollutant dispersion to support the assessment of human exposures in near-roadway environments where a significant portion of the population spends time. The model uses an efficient numerical integration scheme to integrate the contributions of point sources used to represent a line-source. Emphasis has been placed on estimates of concentrations very near to the source line. The near-surface dispersion algorithms are based on new formulations of horizontal and vertical dispersion within the atmospheric surface layer, details of which are described in a companion paper (Venkatram et al., 2013). This paper describes the general formulations of the RUNE model, the meteorological inputs for the model, the numerical integration techniques, the handling of receptors close to the line source, and the performance of the model against developmental data bases and near-road concentrations from independent field studies conducted along actual highway segments. Published by Elsevier Ltd.
引用
收藏
页码:748 / 756
页数:9
相关论文
共 50 条
  • [21] ACTION OF A SPHERICAL VIBRATION SOURCE NEAR-SURFACE IN AN ELASTIC MEDIUM
    NIKIFOROVSKII, VS
    SOVIET MINING SCIENCE USSR, 1977, 13 (03): : 254 - 262
  • [22] Eddy-Induced Particle Dispersion in the Near-Surface North Atlantic
    Rypina, Irina I.
    Kamenkovich, Igor
    Berloff, Pavel
    Pratt, Lawrence J.
    JOURNAL OF PHYSICAL OCEANOGRAPHY, 2012, 42 (12) : 2206 - 2228
  • [23] Automatic and adaptive picking of surface-wave dispersion curves for near-surface application
    Liu, Hui
    Li, Jing
    Hu, Rong
    JOURNAL OF APPLIED GEOPHYSICS, 2024, 221
  • [24] Operational evaluation of the RLINE dispersion model for studies of trafficrelated air pollutants
    Milando, Chad W.
    Batterman, Stuart A.
    ATMOSPHERIC ENVIRONMENT, 2018, 182 : 213 - 224
  • [25] NEAR-SOURCE DISPERSION OF CONTAMINANT FROM AN ELEVATED LINE-SOURCE
    SULLIVAN, PJ
    YIP, H
    ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND PHYSIK, 1989, 40 (02): : 297 - 299
  • [26] NEAR-SURFACE GEOCHEMISTRY
    MCIVER, RD
    OIL & GAS JOURNAL, 1983, 81 (41) : 29 - 30
  • [27] A model of thermochemical equilibrium in the near-surface atmosphere of Venus
    Zolotov, MY
    GEOKHIMIYA, 1995, (11): : 1551 - 1569
  • [28] NEAR-SURFACE SAMPLER
    MCCLEARY, JD
    PROGRESSIVE FISH-CULTURIST, 1974, 36 (04): : 233 - 233
  • [29] Model for hydrocarbon microseepage and related near-surface alterations
    Saunders, DF
    Burson, KR
    Thompson, CK
    AAPG BULLETIN-AMERICAN ASSOCIATION OF PETROLEUM GEOLOGISTS, 1999, 83 (01): : 170 - 185
  • [30] A theoretical model of the near-surface shear layer of the Sun
    Jha, Bibhuti Kumar
    Choudhuri, Arnab Rai
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2021, 506 (02) : 2189 - 2198