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Neutronic Performance Calculations by Using Suitable Molten Salt in Advanced Fusion Reactor to Produce Electric Energy

Yıl 2022, Cilt: 1 Sayı: 1, 16 - 21, 30.06.2022

Öz

In this study,ARIES-RS fussion type reactor has been designed by using (MCNPX) code. The ARIES-RS study is investigating the use of free flowing liquid surfaces to form the inner surface of the chamber around a fusion plasma. Liquid wall concept has these important advantages compared to the traditional solid wall concept; with its feature of renewable wall it provides possibility for high power density. MHD equations consist of macroscopic transport equations and magnetic induction equation. Turbulent models based on NSM equations are suitable for two types of liquids, working fluid, molten salts operations are required. In this study, MHD balance is discussed in terms of radiation heat transfer conditions, current driving and nuclear performance. ARIES-RS reactor is essentially designed as ferritic steel and V - 4Cr - 4Ti alloy, self-cooled mild steel as the building material.

Destekleyen Kurum

NO

Proje Numarası

NO

Kaynakça

  • [1]F.Najmabadi R, fusion engineering and design 65, 143-164(2003).
  • [2]Aries team,M.S. Tillack,X.R.Wang et al., fusion energ and design. 49–50, 689–695(2000).
  • [3] F. Najmabadi, Fusion Technol. 30 (3) (1996) 1286.
  • [4]Laila A. El-Guebaly ,The Aries team,fusion engineering anddesign 65 ,263-/284(2003).
  • [5]T.K.Mau,S.C.Jardin,C.E.Kessel,J.E.Menard,R.L.Miller.et al.,physics basis for the aries-st powerplant,www.ferp.ucsd.edu.
  • [6Bremister,j.,MCNP5X-4a general monte carlo code n-particle transport code,version 4a, la-12625.(1993)
  • [7]MCNP5X/a general monte carlo n-particle transport code,version 4B, los alamos national laboratory report la-12625,(1993). [8]A Hançerlioğullari,M. Cini,journal of fusion energy, doi:10.1007/s10894-013-9637-6, (2013).
  • [9]M.S.Tillack,X.R.Wang,J.Pulsifer,S.Malang, ,fusion energy and design. 65, 215–261 (2003).
  • [10] A.Hançerlioğullari,journal of kastamonu education14(2),545-556,(2006).
  • [11] K.Miyamoto,Controlled fusion and plasma physics,taylor&francis group,crc press29-111,(2007).
  • [12]W.Reiersen,F.Dahlgren, H.M.Fan ,C.Neumeyer,I.Zatz.,fusion engineering and design.,65,303-322(2003)
  • [13]K.Starke,L.Buhler, S.Horanyi, Fusion energ des 84,1794–1798 (2009).
  • [14]Tokamaks,plasma physics and controlled nuclear fusion,springer series on atomic ,38,269-317,(2005)
  • [15] O.Benes,R.J.M.Konings, ,ournal of fluorine chemistry,130:22-29(2009).
  • [16]T.G.Cowling,M.A.,D.Phil.,F.R.S.,magnetohydynamics,published by Adam hilger ltd(1976).
  • [17] M.A Abdou,,The APEX team., Fusion engineering and Design, 45 ,67-145( 1999).
  • [18] M.A Abdou ,A.Ying, et al., Fusion engineering and Design,54,181-247(2001)
  • [19]R.E.,Rognlien,T.D., Rensink,M.E.,Smolentsev, S.S, M.Z ,Youssef , Sawan,et al.Ar.,Fusion Engineering and Design ,72,181-221,(2004)
  • [20] Youssef,M.Z.,Morley,.N., El-Azabet,A., X-rays surface and volumetric heat deposition and tritium breeding issues in liquid-protected FW in high power density devices. 13. topical meeting Nashville, Tennessee, 7-11 ,(1998).
  • [21] M A.Abdou,.Preface,Fusion engineering and design 72,1-2 ,(2004)
  • [22] J.Bremister., MCNP5X-4A general monte carlo code n-particle transport code, version 4A, La-12625, (1993).
  • [23]R.W Moirns., Nuclear Fusion 37:557,(1997).
  • [24]M A.Abdou,.Fusion Eng.Des.,45,145-167,(1999).
  • [25]M A.Abdou ,A.Ying,N.,Morle.,Fusion Eng.Des.,54,181-247,(2001)
  • [26]S.Şahin, M.Übeyli.,Energy Convers,Manage,45,1497-1512,(2004).
  • [27] X.P Lio T.Y.,Tong .,FDS Group, Fusion Engineering and Design 75-79,1275-1279,(2005).
  • [28]B.Şarer,M.Günay.,M.E.Korkmaz.,A.Hançerlioğulları,Fusionsciencetechnology., 52(1),107-115,(2007).
  • [29] K.A.McCarty,D.A.Petti., R.L. Moore.B.J., Merrill.,Fusion Eng.Des.,51-52,549-554(2000)
  • [30] Sze D.K.,”Argonne National Laboraty,1-16,(2001).
  • [31] L. Waganer, F. Najmabadi, M.S. Tillack, What MustDemo Do Proc. IEEE 16th Symp. on Fusion Eng.,Champaign, IL, (1995).
  • [32] F. Najmabadi, et al., The Starlite Project—Assessment Phase Report, University of California, San Diego report UCSD-ENG-005, (1996) . [33] J. Kaslow, et al., Criteria for Practical Fusion PowerSystems—Report from the EPRI Fusion Panel, EPRI report BR-104469, (1994).
Yıl 2022, Cilt: 1 Sayı: 1, 16 - 21, 30.06.2022

Öz

Proje Numarası

NO

Kaynakça

  • [1]F.Najmabadi R, fusion engineering and design 65, 143-164(2003).
  • [2]Aries team,M.S. Tillack,X.R.Wang et al., fusion energ and design. 49–50, 689–695(2000).
  • [3] F. Najmabadi, Fusion Technol. 30 (3) (1996) 1286.
  • [4]Laila A. El-Guebaly ,The Aries team,fusion engineering anddesign 65 ,263-/284(2003).
  • [5]T.K.Mau,S.C.Jardin,C.E.Kessel,J.E.Menard,R.L.Miller.et al.,physics basis for the aries-st powerplant,www.ferp.ucsd.edu.
  • [6Bremister,j.,MCNP5X-4a general monte carlo code n-particle transport code,version 4a, la-12625.(1993)
  • [7]MCNP5X/a general monte carlo n-particle transport code,version 4B, los alamos national laboratory report la-12625,(1993). [8]A Hançerlioğullari,M. Cini,journal of fusion energy, doi:10.1007/s10894-013-9637-6, (2013).
  • [9]M.S.Tillack,X.R.Wang,J.Pulsifer,S.Malang, ,fusion energy and design. 65, 215–261 (2003).
  • [10] A.Hançerlioğullari,journal of kastamonu education14(2),545-556,(2006).
  • [11] K.Miyamoto,Controlled fusion and plasma physics,taylor&francis group,crc press29-111,(2007).
  • [12]W.Reiersen,F.Dahlgren, H.M.Fan ,C.Neumeyer,I.Zatz.,fusion engineering and design.,65,303-322(2003)
  • [13]K.Starke,L.Buhler, S.Horanyi, Fusion energ des 84,1794–1798 (2009).
  • [14]Tokamaks,plasma physics and controlled nuclear fusion,springer series on atomic ,38,269-317,(2005)
  • [15] O.Benes,R.J.M.Konings, ,ournal of fluorine chemistry,130:22-29(2009).
  • [16]T.G.Cowling,M.A.,D.Phil.,F.R.S.,magnetohydynamics,published by Adam hilger ltd(1976).
  • [17] M.A Abdou,,The APEX team., Fusion engineering and Design, 45 ,67-145( 1999).
  • [18] M.A Abdou ,A.Ying, et al., Fusion engineering and Design,54,181-247(2001)
  • [19]R.E.,Rognlien,T.D., Rensink,M.E.,Smolentsev, S.S, M.Z ,Youssef , Sawan,et al.Ar.,Fusion Engineering and Design ,72,181-221,(2004)
  • [20] Youssef,M.Z.,Morley,.N., El-Azabet,A., X-rays surface and volumetric heat deposition and tritium breeding issues in liquid-protected FW in high power density devices. 13. topical meeting Nashville, Tennessee, 7-11 ,(1998).
  • [21] M A.Abdou,.Preface,Fusion engineering and design 72,1-2 ,(2004)
  • [22] J.Bremister., MCNP5X-4A general monte carlo code n-particle transport code, version 4A, La-12625, (1993).
  • [23]R.W Moirns., Nuclear Fusion 37:557,(1997).
  • [24]M A.Abdou,.Fusion Eng.Des.,45,145-167,(1999).
  • [25]M A.Abdou ,A.Ying,N.,Morle.,Fusion Eng.Des.,54,181-247,(2001)
  • [26]S.Şahin, M.Übeyli.,Energy Convers,Manage,45,1497-1512,(2004).
  • [27] X.P Lio T.Y.,Tong .,FDS Group, Fusion Engineering and Design 75-79,1275-1279,(2005).
  • [28]B.Şarer,M.Günay.,M.E.Korkmaz.,A.Hançerlioğulları,Fusionsciencetechnology., 52(1),107-115,(2007).
  • [29] K.A.McCarty,D.A.Petti., R.L. Moore.B.J., Merrill.,Fusion Eng.Des.,51-52,549-554(2000)
  • [30] Sze D.K.,”Argonne National Laboraty,1-16,(2001).
  • [31] L. Waganer, F. Najmabadi, M.S. Tillack, What MustDemo Do Proc. IEEE 16th Symp. on Fusion Eng.,Champaign, IL, (1995).
  • [32] F. Najmabadi, et al., The Starlite Project—Assessment Phase Report, University of California, San Diego report UCSD-ENG-005, (1996) . [33] J. Kaslow, et al., Criteria for Practical Fusion PowerSystems—Report from the EPRI Fusion Panel, EPRI report BR-104469, (1994).
Toplam 31 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Research Articles
Yazarlar

Rezvan Rezaeizadeh

Yosef G. Ali Madee 0000-0003-4652-2990

Aybaba Hançerlioğulları

Proje Numarası NO
Erken Görünüm Tarihi 30 Haziran 2022
Yayımlanma Tarihi 30 Haziran 2022
Gönderilme Tarihi 25 Nisan 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 1 Sayı: 1

Kaynak Göster

APA Rezaeizadeh, R., Madee, Y. G. A., & Hançerlioğulları, A. (2022). Neutronic Performance Calculations by Using Suitable Molten Salt in Advanced Fusion Reactor to Produce Electric Energy. Inspiring Technologies and Innovations, 1(1), 16-21.

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