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Journal Articles

Present status and future perspective of R&D for 3D-ADRES (3-Dimensional Air Dose Rate Evaluation System); Evaluation scheme for air dose rate distributions in city and forest areas towards Fukushima's revitalization

Kim, M.; Malins, A.; Machida, Masahiko; Yoshimura, Kazuya; Saito, Kimiaki; Yoshida, Hiroko*; Yanagi, Hideaki*; Yoshida, Toru*; Hasegawa, Yukihiro*

RIST News, (67), p.3 - 15, 2021/09

no abstracts in English

Oral presentation

Characteristics of air dose rate distribution around houses in Iitate Village, Fukushima Prefecture

Kim, M.; Malins, A.; Machida, Masahiko; Yoshimura, Kazuya; Yoshida, Hiroko*; Saito, Kimiaki

no journal, , 

no abstracts in English

Oral presentation

Characteristics of air dose rate distribution inside and outside wooden houses after the Fukushima Daiichi Nuclear Power Plant accident

Kim, M.; Malins, A.; Machida, Masahiko; Yoshimura, Kazuya; Yoshida, Hiroko*; Saito, Kimiaki

no journal, , 

no abstracts in English

Oral presentation

Oral presentation

Changes in dose reduction effect due to decontamination of Japanese wooden house; Comparison of simulation and measurement results

Kim, M.; Malins, A.; Yoshimura, Kazuya; Machida, Masahiko; Saito, Kimiaki; Yoshida, Toru*; Yanagi, Hideaki*; Hasegawa, Yukihiro*; Yoshida, Hiroko*

no journal, , 

no abstracts in English

Oral presentation

Simulation analysis using 3D-ADRES; Modelling the effects of decontamination activities and farming

Kim, M.; Yoshimura, Kazuya; Sakuma, Kazuyuki; Malins, A.*; Abe, Tomohisa; Nakama, Shigeo; Machida, Masahiko; Saito, Kimiaki; Hasegawa, Yukihiro*; Yanagi, Hideaki*

no journal, , 

In order to predict and evaluate the effect of decontamination activities and farming on air dose rates, a detailed environmental model was created and Monte Carlo simulations were conducted. As a result, it was confirmed that a large reduction in air dose rates can be expected from decontamination activities in which 5 cm of topsoil is removed.

Oral presentation

Anthropogenic impacts on temporal decrease in air dose rate in urban areas, 2; Simulation analysis using detailed environmental model by 3D-ADRES

Kim, M.; Yoshimura, Kazuya; Sakuma, Kazuyuki; Malins, A.*; Abe, Tomohisa; Nakama, Shigeo; Machida, Masahiko; Saito, Kimiaki

no journal, , 

The dynamics of radiocesium differs depending on the ground surface coverage, and a detailed environmental model was created and Monte Carlo simulation analysis was conducted to quantitatively evaluate the effects of these differences on the reduction of air dose rates in urban areas. As a result, it was confirmed that the presence of human activities in urban areas promotes the decay of air dose rates.

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