Meteorological Mechanism of a High Dose Rate Event Caused by the Eastward Advance of a Low Pressure System during Rainy Season

Author:

TSUCHIDA Daisuke1,YAGUCHI Reona2,YAMAZAWA Hiromi2,NARAZAKI Yukinori1

Affiliation:

1. Fukuoka Institute of Health and Environmental Sciences

2. Graduate School of Engineering, Nagoya University

Publisher

Japan Health Physics Society

Subject

Health, Toxicology and Mutagenesis,Radiology, Nuclear Medicine and imaging,Epidemiology

Reference24 articles.

1. 1) N. TAKEUCHI and A. KATASE; Rainout-washout model for variation of environmental gamma-ray intensity by precipitation, J. Nucl. Sci. Technol., 19. 393–409 (1982).

2. 2) N. FUJINAMI; Study of radon progeny distribution and radiation dose rate in the atmosphere, Jpn. J. Health Phys., 44, 89–94 (2009).

3. 3) A. KIMURA, A. ISHIHATA, Y. ISHIKAWA, K. SATOU and M. KAYANO; Abnormally high gamma-ray dose rate observed on Dec. 4, 2015, Annu. Rep. Environ. Radioact. Res. Inst. Miyagi, 1, 26–32 (2015) (in Japanese).

4. 4) N. OGAWA, T. KATAOKA and K. MICHIHIRO; Increase of γ-ray dose rate in continuous monitoring, Annu. Rep. Okayama Prefect. Inst. Environ. Sci. Public Health, 29, 1–8 (2005) (in Japanese).

5. 5) H. YAMAZAWA, M. MATSUDA, J. MORIIZUMI and T. IIDA; Wet deposition of radon decay products and its relation with long-range transported radon, proceedings of 8th international symposium on the natural radiation environment, AIP Conf. Proc., 1034, 149–152 (2008).

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