A novel hybrid approach to the mapping and prediction of the terrestrial gamma dose rate distribution in the Central Anatolia Region of Turkey
Yükleniyor...
Dosyalar
Tarih
2019
Yazarlar
Dergi Başlığı
Dergi ISSN
Cilt Başlığı
Yayıncı
Elsevier
Erişim Hakkı
info:eu-repo/semantics/embargoedAccess
Özet
In this study, a new approach was suggested for the estimation and mapping of Terrestrial gamma dose rate (TGDR, in nGy h?1 ) in the Central Anatolia Region of Turkey by using the sequential Gaussian simulation (SGS) and Artificial neural network (ANN) methods together as a hybrid. In this hybrid approach (SGS-ANN), different from the classical spatial examinations, each spatial pixel (500 500 × m2 ) were calculated separately by evaluating the activity concentrations of terrestrial radionuclides that directly affects TGDR (226Ra, 232Th and 40K, in Bq kg?1 ) terrestrial coordination (X and Y, in meter). Therefore, the local changes of TGDR distributions that were estimated for the study area could be determined in appropriate precision without the smoothing effect. The performance evaluation of SGS-ANN approach was conducted by comparing the results for the same study area of Ordinary kriging (OK) method which is frequently used in the literature. According to the validation diagram that was created with the observed and estimated TGDR values, the Pearson's r correlation coefficient was obtained as 0.30 and 0.65, RMSE as 31.41 nGy h?1 and 25.79 nGy h?1 , MAE as 24.50 nGy h?1 and 21.29 nGy h?1 and mean error as 5.97 nGy h?1 and -1.32 nGy h?1 for the OK method and the SGS-ANN approach, respectively
Açıklama
Anahtar Kelimeler
Terrestrial gamma dose rate, Sequential Gaussian simulation, Artificial neural network, Central Anatolia region of Turkey, Radionuclides
Kaynak
Journal of Environmental Radioactivity
WoS Q Değeri
N/A
Scopus Q Değeri
Q2
Cilt
208
Sayı
Künye
Yeşilkanat, C. M. (2019). A novel hybrid approach to the mapping and prediction of the terrestrial gamma dose rate distribution in the Central Anatolia Region of Turkey. Journal of environmental radioactivity, 208, 106009.












