首页> 外文期刊>Universal Journal of Physics and Application >Evaluation of Radiation Consequences of Releases in Accidents with Spills of Liquid Radioactive Materials in Areas with Forced Ventilation
【24h】

Evaluation of Radiation Consequences of Releases in Accidents with Spills of Liquid Radioactive Materials in Areas with Forced Ventilation

机译:强制通风区域液体放射性物质泄漏事故中释放物的辐射后果评估

获取原文
           

摘要

This report focuses on assessment of radiation consequences of releases in accidents with spills of liquid radioactive materials in areas with forced ventilation. During the study, characteristic dependences between parameters of liquid radioactive materials and air exchange in areas with forced ventilation and associated radiation consequences were determined. The proposed approach is based on the theory of non-stationary heat and mass transfer in surface evaporation of liquid heated below the boiling temperature. The physical model includes: liquid radioactive material, steam-aerosol radioactive mixture, air of forced ventilation, airborne filters, and floor of the emergency area. The key aspects of the model are evaporation of liquid material, its removal with exhaust ventilation and partial trapping on airborne filters. It is considered that the steam-aerosol radioactive mixture is released to the environment after filters. The advantage of this model is the possibility to determine integral release of radionuclides to the environment and activity concentration of air in the emergency area at any moment after beginning of the accident, effective dose received by an adult during 14 days for a wide range of input thermodynamic and geometrical parameters, different operating modes of the ventilation system and different productivities of the filtering system. Results from assessment of radiation consequences for the selected accident are presented and the associated effect of filtering systems is analyzed.
机译:本报告的重点是评估在强制通风区域因液体放射性物质溢出而造成事故释放的辐射后果。在研究过程中,确定了强制通风区域内液体放射性物质参数与空气交换之间的特征相关性以及相关的辐射后果。所提出的方法基于加热至低于沸点温度的液体的表面蒸发中的非平稳传热和传质理论。物理模型包括:液体放射性物质,蒸汽-气溶胶放射性混合物,强制通风的空气,机载过滤器和紧急区域的地板。该模型的关键方面是液体材料的蒸发,通过排气通风将其去除以及在空气过滤器上的部分捕集。认为蒸汽-气溶胶放射性混合物经过滤后释放到环境中。该模型的优点是可以在事故开始后的任何时刻确定放射性核素向环境的整体释放以及紧急区域中空气的活动浓度,成年人在14天内可以接受多种输入的有效剂量热力学和几何参数,通风系统的不同运行模式以及过滤系统的不同生产率。给出了针对所选事故的辐射后果评估结果,并分析了过滤系统的相关影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号