2.2 Publikationer

2.2 Development of modern seismic and electromagnetic methods for preinvestigation for underground infrastructure facilities in urban environment

 

 

 

Publications

 

Peer-reviewed Journal Publications

 

2015

Dehgahnnejad, M., Lundberg, E., Malehmir, A., Döse, C., Svensson, M., and Möller, H., 2015. Planning of urban underground infrastructure using a broadband seismic landstreamer – Reflection seismic results from a case study in southwest of Sweden. In preparation.

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Maries, G., Ahokangas, E., Mäkinen, J., Pasanen, A., Malehmir, A., 2015. Delineating esker structures using a combination of high-resolution reflection imaging and refraction seismic tomography, Turku-Finland. In preparation.

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Malehmir, A., Andersson, M., Mehta, S., Maries, G., Munier, R., Brodic, B., Place, J., Smith, C., Kamm, J., Bastani, M., Lund, B., and Mikko, H., 2015. Geophysical characterization of the Bollnäs prospective post-glacial fault in central Sweden. In preparation.

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Wang, S., Bastani, M., Malehmir, A., 2015. Joint interpretation of radio-magnetotelluric (RMT) and high-Resolution reflection and refraction seismic data for quick-clay and landslide studies – a case study from southwest Sweden. In preparation.

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Mehta, S., Bastani, M., Malehmir, A., Wang, S., Pedersen, L., 2015. A detailed investigation of the application of boat-towed RMT method for urban underground infrastructure planning in the city of Stockholm. In preparation.

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Brodic, B., Malehmir, A., Juhlin, C., Dynesius, L., Bastani, M., and Palm, H., 2015. Multicomponent broadband digital-based seismic landstreamer for near surface applications. In revision in Journal of Applied Geophysics.

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Salas-Romero, S., Malehmir, A., Snowball, I., Lougheed B.C., Hellqvist, M., 2015. Identifying landslide preconditions in Swedish quick clays - insights from integration of surface geophysical, core sample- and downhole-property measurements. Accepted for Landslides.

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Malehmir, A., Zhang, F., Dehgahnnejad, M., Lundberg, E., Döse, C., Friberg, O., Brodic, B., Place, J., Svensson, M., and Möller, H., 2015. Planning of urban underground infrastructure using a broadband seismic landstreamer – Tomography results and uncertainty quantifications from a case study in southwest of Sweden. Accepted for Geophysics.

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Bastani, M., Persson, L., Mehta, S., and Malehmir, A., 2015. Boat-towed radio-magnetotellurics (RMT)—a new technique and case study from the city of Stockholm. Accepted for Geophysics.

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Shan, C., Bastani, M., Malehmir, A., Persson, L., and Lundberg, E., 2015. Combined interpretation of controlled-source and radio-magnetotellurics, electrical resistivity tomography and reflection seismics to delineate 3D structures of a quick-clay landslide site in southwest Sweden. Accepted for Geophysics.

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Abbaszadeh Shahri, A., Malehmir, A., and Juhlin, C., 2015. Soil classification analysis based on piezocone penetration test data — A case study from a quick-clay landslide site in southwestern of Sweden. Engineering Geology, 189, 32–47.

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Malehmir, A., Wang, S., Lamminen, J., Brodic, B., Bastani, M., Vaittinen, K., Juhlin, C., and Place, J., 2015. Delineating structures controlling sandstone-hosted base-metal deposits using high-resolution multicomponent seismic and radio-magnetotelluric methods: a case study from Northern Sweden. Geophysical Prospecting, 63, 774–797.

 

Peer-reviewed Conference Publications

2016

Malehmir, A., Brodic, B., Dehghannejad, M., Juhlin, C., and Lundberg, E., 2016. A state-of-the-art MEMs-based 3C Seismic Landstreamer for Various Near-surface Applications. Expanded abstract, 5 pages, EAGE 2016, Vienna, Austria.

 

2015

Malehmir, A., Lundberg, E., Dehgahnnejad, M., Zhang, F., Friberg, O., Brodic, B., Döse, C., Place, J., Svensson, M., and Möller, H., 2015. Varberg: Developing urban geophysical instruments and methods – Pushing the boundaries. Grundläggningsdag (Foundation Day), Stockholm, Sweden, 15 pages.

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Malehmir, A., Lundberg, E., Dehgahnnejad, M., Zhang, F., Friberg, O., Brodic, B., Döse, C., Place, J., Svensson, M., and Möller, H., 2015. Seismic landstreamer for planning of infrastructure projects – A case study from Varberg. Bergmekanikdagen (Rock Mechanic Day), Stockholm, Sweden, 15 pages.

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Bastani, M., Malehmir, A., Saavaidis, 2015. Combined use of controlled-source and radio-magnetotelluric methods for near surface studies. Expanded abstract, 4 pages, ASEG 2015. Perth, Australia.

 

2014

Wang, S., Bastani, M., Malehmir, A., 2014. Integrated use of Radio-Magnetotelluric and High-Resolution Reflection Seismic data to delineate near surface structures – two case studies from Sweden. 22nd EM Induction workshop, Weimar, Germany.

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Malehmir, A., Wang, S., Lamminen, J., Bastani, M., Juhlin, C., Vaittinen, K., Dynesius, L., and Palm, H., 2014. High-resolution multicomponent hardrock seismic imaging of mineral deposits and their host rock structures. Expanded abstract, 3 pages, EAGE 2014, Amsterdam, Netherlands.

 

Conference Publications

 

2015

Malehmir, A., Andersson, M ., Maries, G ., Mehta, S., Munier, R ., Place, J., Brodic, B., 2015. A multidisciplinary geophysical investigation of a prospective post-glacial fault in central Sweden. EGU General Assembly Conference, Vol. 17, EGU2015-2483, 2015.

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Maries, G., Ahokangas, E., Mäkinen, J., Pasanen, A., Malehmir, A., 2015. Seismic imaging of esker structures from a combination of high-resolution broadband multicomponent streamer and wireless sensors, Turku-Finland. EGU General Assembly Conference, Vol. 17, EGU2015-1604-1, 2015.

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Malehmir, A., 2015. Developing Urban and Mining Geophysical Instruments and Methods: Pushing the Boundaries. ASEG Extended Abstracts 2015 (1), 1-1.

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Malehmir, A., Zhang, F., Lundberg, E., Dehgahnnejad, M., Friberg, O., Brodic, B., Döse, C., Place, J., Svensson, M., and Möller, H., 2015. A broadband multicomponent seismic landstreamer for underground infrastructure planning projects-An example from the Varberg tunnel, southwest Sweden. EGU General Assembly Conference, Vol. 17, EGU2015-2074-3, 2015.

 

Malehmir, A., Lundberg, E., Dehgahnnejad, M., Zhang, F., Friberg, O., Brodic, B., Döse, C., Place, J., Svensson, M., and Möller, H., 2015. Varberg: Developing urban geophysical instruments and methods – Pushing the boundaries. Grundläggningsdag (Foundation Day), Stockholm, Sweden, 15 pages.

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Malehmir, A., Lundberg, E., Dehgahnnejad, M., Zhang, F., Friberg, O., Brodic, B., Döse, C., Place, J., Svensson, M., and Möller, H., 2015. Seismic landstreamer for planning of infrastructure projects – A case study from Varberg. Bergmekanikdagen (Rock Mechanic Day), Stockholm, Sweden, 15 pages.

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Bastani, M., Malehmir, A., Saavaidis, 2015. Combined use of controlled-source and radio-magnetotelluric methods for near surface studies. Expanded abstract, 4 pages, ASEG 2015. Perth, Australia.

 

 

2014

Mehta, S., Bastani, M., Malehmir, A., Wang, S., Pedersen, L., 2014. Shallow water radio-magnetotelluric (RMT) measurements in urban environment: A case study from Stockholm city. EGU General Assembly Conference Abstracts 16, 4196.

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Malehmir, A., Brodic, B., Place, J., Juhlin, C., Bastani, M., 2014. Development of near surface seismic methods for urban and mining applications. EGU General Assembly Conference Abstracts 16, 1375.

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Wang, S., Bastani, M., Malehmir, A., 2014. Integrated use of Radio-Magnetotelluric and High-Resolution Reflection Seismic data to delineate near surface structures – two case studies from Sweden. 22nd EM Induction workshop, Weimar, Germany.

-

Malehmir, A., Wang, S., Lamminen, J., Bastani, M., Juhlin, C., Vaittinen, K., Dynesius, L., and Palm, H., 2014. High-resolution multicomponent hardrock seismic imaging of mineral deposits and their host rock structures. Expanded abstract, 3 pages, EAGE 2014, Amsterdam, Netherlands.

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European Geosciences Union General Assembly - Vienna:

Shallow water radio-magnetotelluric (RMT) measurements in urban environment: A case study from Stockholm city Development of near surface seismic methods for urban and mining applications.

 

Read more here

 

Licentiates

Bojan Brodic. December 1st, 2015. Title: Multicomponent digital-based seismic landstreamer for urban underground infrastructure planning.

 

Suman Mehta. December 2nd, 2015. Title: Boat-towed RMT for urban underground infrastructure planning, Stockholm Bypass (Förbifart) case study.

 

Vetenskapliga artiklar

 

Abbas Abbaszadeh Shahri, Alireza Malehmir, Christopher Juhlin. Soil classification analysis based on piezocone penetration test data — A case study from a quick-clay landslide site in southwestern Sweden. Engineering Geology

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Alireza Malehmir, Shunguo Wang, Jarkko Lamminen, Bojan Brodic, Mehrdad Bastani, Katri Vaittinen, Christopher Juhlin and Joachim Place, 2015. Delineating structures controlling sandstone-hosted base-metal deposits using high-resolution multicomponent seismic and radio-magnetotelluric methods: a case study from Northern Sweden. Geophysical Prospecting, 63, 774–797

-

Dehgahnnejad, M., Lundberg, E., Malehmir, A., Döse, C., Svensson, M., and Möller, H., 2015. Planning of urban underground infrastructure using a broadband seismic landstreamer – Reflection seismic results from a case study in southwest of Sweden. In preparation.

-

Maries, G., Ahokangas, E., Mäkinen, J., Pasanen, A., Malehmir, A., 2015. Delineating esker structures using a combination of high-resolution reflection imaging and refraction seismic tomography, Turku-Finland. In preparation.

-

Malehmir, A., Andersson, M., Mehta, S., Maries, G., Munier, R., Brodic, B., Place, J., Smith, C., Kamm, J., Bastani, M., Lund, B., and Mikko, H., 2015. Geophysical characterization of the Bollnäs prospective post-glacial fault in central Sweden. In preparation.

-

Wang, S., Bastani, M., Malehmir, A., 2015. Joint interpretation of radio-magnetotelluric (RMT) and high-Resolution reflection and refraction seismic data for quick-clay and landslide studies – a case study from southwest Sweden. In preparation.

-

Mehta, S., Bastani, M., Malehmir, A., Wang, S., Pedersen, L., 2015. A detailed investigation of the application of boat-towed RMT method for urban underground infrastructure planning in the city of Stockholm. In preparation.

-

Brodic, B., Malehmir, A., Juhlin, C., Dynesius, L., Bastani, M., and Palm, H., 2015. Multicomponent broadband digital-based seismic landstreamer for near surface applications. In revision in Journal of Applied Geophysics.

-

Salas-Romero, S., Malehmir, A., Snowball, I., Lougheed B.C., Hellqvist, M., 2015. Identifying landslide preconditions in Swedish quick clays - insights from integration of surface geophysical, core sample- and downhole-property measurements. Accepted for Landslides.

-

Malehmir, A., Zhang, F., Dehgahnnejad, M., Lundberg, E., Döse, C., Friberg, O., Brodic, B., Place, J., Svensson, M., and Möller, H., 2015. Planning of urban underground infrastructure using a broadband seismic landstreamer – Tomography results and uncertainty quantifications from a case study in southwest of Sweden. Accepted for Geophysics.

-

Bastani, M., Persson, L., Mehta, S., and Malehmir, A., 2015. Boat-towed radio-magnetotellurics (RMT)—a new technique and case study from the city of Stockholm. Accepted for Geophysics.

-

Shan, C., Bastani, M., Malehmir, A., Persson, L., and Lundberg, E., 2015. Combined interpretation of controlled-source and radio-magnetotellurics, electrical resistivity tomography and reflection seismics to delineate 3D structures of a quick-clay landslide site in southwest Sweden. Accepted for Geophysics.

-

Abbaszadeh Shahri, A., Malehmir, A., and Juhlin, C., 2015. Soil classification analysis based on piezocone penetration test data — A case study from a quick-clay landslide site in southwestern of Sweden. Engineering Geology, 189, 32–47.

-

Malehmir, A., Wang, S., Lamminen, J., Brodic, B., Bastani, M., Vaittinen, K., Juhlin, C., and Place, J., 2015. Delineating structures controlling sandstone-hosted base-metal deposits using high-resolution multicomponent seismic and radio-magnetotelluric methods: a case study from Northern Sweden. Geophysical Prospecting, 63, 774–797.

 

Master Thesis Projects

 

Lasheras Maas, Nayeli., Site characterisation at the Äspö Hard Rock Laboratory through seismic refraction

 

 

 

 

 

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