Title :
Comparison and Selection of the Method for Reconstructing Trititum Concentration Series in Precipitation
Author :
Guo, Hui ; Zhai, Yuanzheng ; Wang, Jinsheng ; Teng, Yanguo
Author_Institution :
Eng. Res. Center for Groundwater Pollution Control & Remediation, Beijing Normal Univ., Beijing, China
Abstract :
According to the monitoring record, human nuclear activities, especially intensive nuclear tests during the 1960s in the world, caused atmospheric tritium concentration increasing significantly, which provided convenient condition for global water cycle research, especially for tracer dating research of groundwater. However, due to the layout of monitoring sites and other reasons, most parts of the world are lack of monitoring data of tritium concentration in precipitation. The tritium time series in precipitation in Beijing during 1953~2002 was reconstructed in this paper using combined methods, including improved Guanbingjun Method, Trigonometric Interpolation Method and Correlation Method, aiming to find the best method for Beijing. Considering the real situation of Beijing, some improvement has been made about the Guanbingjun Method, (assigning the weights of adjacent latitudes for tritium concentration in precipitation reconstructed as 9:1, 5:5, 1:9 to get the final value). Compared with Trigonometric Interpolation Method, the result calculated by improved Guanbingjun Method has the lowest relative error, which is 5.07%, because it takes the different effects which the adjacent bonds of latitude contribute into account.
Keywords :
atmospheric composition; atmospheric precipitation; groundwater; tritium; T; adjacent latitude bonds; atmospheric tritium concentration; correlation method; global water cycle research; groundwater tracer dating research; human nuclear activities; improved Guanbingjun Method; intensive nuclear tests; method selection; monitoring data; monitoring record; monitoring site layout; precipitation; trigonometric interpolation method; trititum concentration series; tritium time series; Correlation; Educational institutions; Equations; Interpolation; Mathematical model; Monitoring; Time series analysis; Beijing; isotope; precipitation; tritium;
Conference_Titel :
Biomedical Engineering and Biotechnology (iCBEB), 2012 International Conference on
Conference_Location :
Macau, Macao
Print_ISBN :
978-1-4577-1987-5
DOI :
10.1109/iCBEB.2012.107