2012OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information)Requires access

Study on evaluation methodology for groundwater flow based on geochemical data. Case study for Horonobe area (Contract research)

Ryutaro SAKAI, Hideo Kimura, Masahiro Munakata

Open publisher page 0 citations

Abstract

In the safety assessment for a geological disposal of radioactive waste, it is important to establish validation methods for deep groundwater flow system to estimate radionuclide migration to human environment through groundwater flow. It is necessary to validate the groundwater flow property and flow boundary, as multi-groundwater systems including the different groundwater origins are possible to exist at deep underground. This study discussed the method which estimates groundwater mixing condition and groundwater flow process using three principal component analysis(three-dimensional PCA) to groundwater chemistry and isotopic compositions, together with data of groundwater age and trace element in case of Horonobe area where a lot of water chemistry were measured. The results of three-dimensional PCA show that hydrological system can be divided into two areas: three deep groundwater mixing area at depths greater than 200 to 400m, mixing area of deep groundwater and surface water at depths less than 200 to 400m. The residence time of deep groundwater estimated by chlorine isotopic method shows over several hundred thousand years to 1 million years ago. Deep groundwater is suggested to be discharged at surface through Omagari Fault based on the concentrations of trace dissolved constituents. (author)

About this research paper

What this paper is about

In the safety assessment for a geological disposal of radioactive waste, it is important to establish validation methods for deep groundwater flow system to estimate radionuclide migration to human environment through groundwater flow. It is necessary to validate the groundwater flow property and flow boundary, as multi-groundwater systems including the different groundwater origins are possible to exist at deep underground. This study discussed the method which estimates groundwater mixing condition and groundwater flow process using three principal component analysis(three-dimensional PCA) to groundwater chemistry and isotopic compositions, together with data of groundwater age and trace element in case of Horonobe area where a lot of water chemistry were measured. The results of three-dimensional PCA show that hydrological system can be divided into two areas: three deep groundwater mixing area at depths greater than 200 to 400m, mixing area of deep groundwater and surface water at depths less than 200 to 400m. The residence time of deep groundwater estimated by chlorine isotopic method shows over several hundred thousand years to 1 million years ago. Deep groundwater is suggested to be discharged at surface through Omagari Fault based on the concentrations of trace dissolved constituents. (author)

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In the safety assessment for a geological disposal of radioactive waste, it is important to establish validation methods for deep groundwater flow system to estimate radionuclide migration to human environment through groundwater flow. It is necessary to validate the groundwater flow property and flow boundary, as multi-groundwater systems including the different groundwater origins are possible to exist at deep underground. This study discussed the method which estimates groundwater mixing condition and groundwater flow process using three principal component analysis(three-dimensional PCA) to groundwater chemistry and isotopic compositions, together with data of groundwater age and trace element in case of Horonobe area where a lot of water chemistry were measured. The results of three-dimensional PCA show that hydrological system can be divided into two areas: three deep groundwater mixing area at depths greater than 200 to 400m, mixing area of deep groundwater and surface water at depths less than 200 to 400m. The residence time of deep groundwater estimated by chlorine isotopic method shows over several hundred thousand years to 1 million years ago. Deep groundwater is suggested to be discharged at surface through Omagari Fault based on the concentrations of trace dissolved constituents. (author)

Key concepts: Groundwater, Groundwater flow, Hydrology (agriculture), Surface water, Geology, Groundwater model, Environmental science, Aquifer

Related papers

Back to paper searchBrowse research topicsOriginal source
Study on evaluation methodology for groundwater flow based on geochemical data. Case study for Horonobe area (Contract research) — Research Paper | ScholarLens