SRCosmos - header - coolmenus
Scientific References COSMOS
Search: Publications
Cited References
List: Authors Conferences
Journals Gray Literature
Most
Cited:
Authors
References
Database
Statistics:
Top Viewed Articles
Connected As:
<Anonymous>


Contact:
 srcosmos@aegean.gr

Article summary:

Abstract Melnikov NN, Amosov PV, Novozhilova NV:
"The influence of radiation hazardous materials module orientation and dimensions on the level of underground water contamination",
In HazWasManagement2010: A7.1, (Oct 2010)


Keywords    
Abstract   Methodological approaches and results of numerical modeling of underground water current and its contamination from a facility of radiation-hazardous materials isolation are presented. The authors have considered the influence of orientation and dimensions on the level contamination of underground water on the modeling site.
Full text   Full Text in PDF (391 KB)
Source link    
Included Refrences   8 References (List...)
Cited by other Articles   0 Citations (List...)

Authors:

 3 records found.
Name Affiliation Home page e-mail Total pubs 
Amosov PVMining Institute of the Kola Science Centre of the Russian Academy of Sciences, Apatity, Murmansk region, Fersman Street, 24, 184209 Russia  9
Melnikov NNInstitution of RAS Mining Institute of the Kola Science Centre of the Russian Academy of Sciences, Apatity, Murmansk region, Fersman Street, 24, 184209 Russia  1
Novozhilova NVMining Institute of the Kola Science Centre of the Russian Academy of Sciences, Apatity, Murmansk region, Fersman Street, 24, 184209 Russia  6

Article is cited by:

 No records found.

References included in article:

 8 records found.
Order of appearence Full citation SRCosmos Link 
1Amosov PV, Naumov AV, Novozhilova NV,
(2007) Radiogeoecology: digital hydro geological model of ecologically safe site location for underground radiation-hazardous object. Engineering ecology, 3, pp. 3-13.
 
2Amosov PV, Novozhilova NV,
(2009) Variation in assessment of underground water contamination in the site of radiation-hazardous object location. Proceedings of XXII International scientific conference “Mathematical methods in engineering and technologies–????-22”, V.S. Balakirev (Eds), Pskov State Polytechnical Institute publishing, Pskov, 4, pp. 100-102.
 
3AQUA3D (1998) Groundwater flow- and contaminant transport model. Vatnaslkil Consulting Engineers, 86 ?. 
4Melnikov NN,
et.al., (2003a) Spent nuclear fuel from ship power units in the European North of Russia. Part I. Publishing house of the KSC of RAS, Apatity, 166 p.
 
5Melnikov NN,
et.al., (2003b) Spent nuclear fuel from ship power units in the European North of Russia. Part II. Publishing house of the KSC of RAS, Apatity, 209 p.
 
6Melnikov NN,
et.al., (2005) Innovation projects of underground facilities of long-term storage and disposal of nuclear and radiation-hazardous materials in geological formations of the European North of Russia. Publishing house of the KSC of RAS, Apatity, 111 p
 
7Runchal A,
(1997) PORFLOW a software tool for multiphase fluid flow, heat and mass transport in fractured porous media. User’s manual (version 3.07). ACRi, 326 p.
 
8Safety Assessment Methodologies for Near Surface Disposal Facilities (2004). Volume 1. Review and enhancement of safety assessment approaches and tools. IAEA, 407 p.