Dilution factor and atmospheric dispersion pattern for Kalpakkam site

T. Jesan, C. Manonmani, S. Ramkumar, I. Saradhi, A. Kumar
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Abstract

Assessment of radiological impact and for planning and preparedness programs, monthly atmospheric dispersion patterns at Kalpakkam have been studied using observed surface meteorological data during 2015–2020. The influence of meteorological factors such as wind speed, wind directions, percent of calm, atmospheric stability, and rainfall on dispersion patterns has been evaluated. The higher wind speed range (>4 m/s) is observed from 11:00 h to 19:00 h with an average wind speed of 4.17 m/s and the highest value observed in the month of May. Extremely stable F category and percent of calm observed to be lowest in the month of June. This study reveals that the high concentration area is toward seaside sectors during the southwest monsoon season from June to September and the remaining months, January to May and October to December, the most probable dispersion toward southwest, South, and North covering land sectors. Wet deposition due to maximum rainfall and more rainy days in the month of November during the northeast monsoon. The study provides site-specific information on dispersion patterns, an essential tool and crucial support for risk management with respect to radiological impact, monitoring and assessment in normal and emergency scenarios of a nuclear facility, and guiding resources for siting and design of the new facility in and around Kalpakkam.
Kalpakkam场地的稀释因子和大气扩散模式
利用2015-2020年观测到的地面气象数据,对Kalpakkam的每月大气弥散模式进行了辐射影响评估以及规划和准备方案研究。评估了风速、风向、风平浪静百分比、大气稳定性和降雨等气象因素对弥散模式的影响。11 ~ 19时风速范围较大(0 ~ 4 m/s),平均风速为4.17 m/s, 5月份风速最高。极其稳定的F级和平静的百分比在6月份被观察到最低。研究发现,西南季风季节6 - 9月的高集中区向海边分布,其余月份1 - 5月和10 - 12月的高集中区最可能向西南、南、北分布,覆盖陆地部门。在东北季候风期间,由于11月的最大降雨量和更多的雨天而导致的湿沉积。该研究提供了关于扩散模式的具体场址信息,是在核设施正常和紧急情况下进行辐射影响风险管理、监测和评估的重要工具和关键支持,并为Kalpakkam及其周围的新设施选址和设计提供指导资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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