Maderich V, Bezhenar R, Tateda Y, Aoyama M, Tsumune D, Jung K T, de With G
Institute of Mathematical Machine and System Problems, Kiev, Ukraine.
Environmental Science Research Laboratory, Central Research Institute of Electric Power Industry, Chiba, Japan.
MethodsX. 2018 Oct 6;5:1251-1266. doi: 10.1016/j.mex.2018.10.002. eCollection 2018.
A detailed description of the advanced version of compartment model POSEIDON-R for the prediction of transport and fate of radionuclides in the marine environment is given. The equations of transfer of radionuclides in the water and bottom sediment compartments along with the dynamical food chain model are presented together with dose module to assess individual and collective doses to the population due to the regular and accidental releases of radionuclides. The method for the numerical solution of model equations is also presented. The modelling results for the northeast Atlantic shelf seas were compared with measurements of Cs. •The three-dimensional compartment model POSEIDON-R describes the transfer of radionuclides and their daughter products in marine environment as a results of regular or accidental releases. This includes any transfer through the water column and sediments.•The model is complemented by a dynamic food chain model for transfer of radioactivity in pelagic and benthic food webs.•The dose module in the model calculates internal and external doses for humans and non-human biota.
本文详细描述了用于预测海洋环境中放射性核素迁移和归宿的隔室模型POSEIDON-R的高级版本。给出了放射性核素在水和底部沉积物隔室中的迁移方程以及动态食物链模型,并结合剂量模块,以评估由于放射性核素的正常和意外释放而导致的人群个体和集体剂量。还介绍了模型方程的数值求解方法。将东北大西洋陆架海域的模拟结果与铯的测量结果进行了比较。•三维隔室模型POSEIDON-R描述了由于正常或意外释放导致的放射性核素及其子产物在海洋环境中的迁移。这包括通过水柱和沉积物的任何迁移。•该模型由一个用于在远洋和底栖食物网中转移放射性的动态食物链模型补充。•模型中的剂量模块计算人类和非人类生物群的内部和外部剂量。