PRISTOVNIK, Andrej ;ČREPINŠEK LIPUŠ, Lucija ;KROPE, Jurij . The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device. Strojniški vestnik - Journal of Mechanical Engineering, [S.l.], v. 46, n.8, p. 517-524, july 2017. ISSN 0039-2480. Available at: <https://www.sv-jme.eu/article/the-preventation-of-surface-precipitation-on-heat-exchangers-using-a-magnetic-water-treatment-device/>. Date accessed: 21 dec. 2024. doi:http://dx.doi.org/.
Pristovnik, A., Črepinšek Lipuš, L., & Krope, J. (2000). The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device. Strojniški vestnik - Journal of Mechanical Engineering, 46(8), 517-524. doi:http://dx.doi.org/
@article{., author = {Andrej Pristovnik and Lucija Črepinšek Lipuš and Jurij Krope}, title = {The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device}, journal = {Strojniški vestnik - Journal of Mechanical Engineering}, volume = {46}, number = {8}, year = {2000}, keywords = {magnetohydrodynamic; magnetic water treatment; :heat exchangers; scale control; }, abstract = {Magnetic water treatment (MWT), a water-conditioning method for scale control in heat exchangers (HEs), is discussed. The theoretical possibilities of scale formation in industrial processes with the emphasis on the precipitation of CaCO3 and CaSO4 as the main scale components, are reviewed. Some preliminary calculations for a theoretical understanding of the scale problem in HEs and its prevention using MWTs are contributed}, issn = {0039-2480}, pages = {517-524}, doi = {}, url = {https://www.sv-jme.eu/article/the-preventation-of-surface-precipitation-on-heat-exchangers-using-a-magnetic-water-treatment-device/} }
Pristovnik, A.,Črepinšek Lipuš, L.,Krope, J. 2000 July 46. The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device. Strojniški vestnik - Journal of Mechanical Engineering. [Online] 46:8
%A Pristovnik, Andrej %A Črepinšek Lipuš, Lucija %A Krope, Jurij %D 2000 %T The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device %B 2000 %9 magnetohydrodynamic; magnetic water treatment; :heat exchangers; scale control; %! The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device %K magnetohydrodynamic; magnetic water treatment; :heat exchangers; scale control; %X Magnetic water treatment (MWT), a water-conditioning method for scale control in heat exchangers (HEs), is discussed. The theoretical possibilities of scale formation in industrial processes with the emphasis on the precipitation of CaCO3 and CaSO4 as the main scale components, are reviewed. Some preliminary calculations for a theoretical understanding of the scale problem in HEs and its prevention using MWTs are contributed %U https://www.sv-jme.eu/article/the-preventation-of-surface-precipitation-on-heat-exchangers-using-a-magnetic-water-treatment-device/ %0 Journal Article %R %& 517 %P 8 %J Strojniški vestnik - Journal of Mechanical Engineering %V 46 %N 8 %@ 0039-2480 %8 2017-07-07 %7 2017-07-07
Pristovnik, Andrej, Lucija Črepinšek Lipuš, & Jurij Krope. "The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device." Strojniški vestnik - Journal of Mechanical Engineering [Online], 46.8 (2000): 517-524. Web. 21 Dec. 2024
TY - JOUR AU - Pristovnik, Andrej AU - Črepinšek Lipuš, Lucija AU - Krope, Jurij PY - 2000 TI - The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device JF - Strojniški vestnik - Journal of Mechanical Engineering DO - KW - magnetohydrodynamic; magnetic water treatment; :heat exchangers; scale control; N2 - Magnetic water treatment (MWT), a water-conditioning method for scale control in heat exchangers (HEs), is discussed. The theoretical possibilities of scale formation in industrial processes with the emphasis on the precipitation of CaCO3 and CaSO4 as the main scale components, are reviewed. Some preliminary calculations for a theoretical understanding of the scale problem in HEs and its prevention using MWTs are contributed UR - https://www.sv-jme.eu/article/the-preventation-of-surface-precipitation-on-heat-exchangers-using-a-magnetic-water-treatment-device/
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TY - JOUR AU - Pristovnik, Andrej AU - Črepinšek Lipuš, Lucija AU - Krope, Jurij PY - 2017/07/07 TI - The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device JF - Strojniški vestnik - Journal of Mechanical Engineering; Vol 46, No 8 (2000): Strojniški vestnik - Journal of Mechanical Engineering DO - KW - magnetohydrodynamic, magnetic water treatment, :heat exchangers, scale control, N2 - Magnetic water treatment (MWT), a water-conditioning method for scale control in heat exchangers (HEs), is discussed. The theoretical possibilities of scale formation in industrial processes with the emphasis on the precipitation of CaCO3 and CaSO4 as the main scale components, are reviewed. Some preliminary calculations for a theoretical understanding of the scale problem in HEs and its prevention using MWTs are contributed UR - https://www.sv-jme.eu/article/the-preventation-of-surface-precipitation-on-heat-exchangers-using-a-magnetic-water-treatment-device/
Pristovnik, Andrej, Črepinšek Lipuš, Lucija, AND Krope, Jurij. "The Preventation of Surface Precipitation on Heat Exchangers Using a Magnetic Water-Treatment Device" Strojniški vestnik - Journal of Mechanical Engineering [Online], Volume 46 Number 8 (07 July 2017)
Strojniški vestnik - Journal of Mechanical Engineering 46(2000)8, 517-524
© The Authors, CC-BY 4.0 Int. Change in copyright policy from 2022, Jan 1st.
Magnetic water treatment (MWT), a water-conditioning method for scale control in heat exchangers (HEs), is discussed. The theoretical possibilities of scale formation in industrial processes with the emphasis on the precipitation of CaCO3 and CaSO4 as the main scale components, are reviewed. Some preliminary calculations for a theoretical understanding of the scale problem in HEs and its prevention using MWTs are contributed