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Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept

Yıl 2024, ERKEN GÖRÜNÜM, 1 - 1
https://doi.org/10.2339/politeknik.1571850

Öz

In this study, the criticality and burnup analyses have been performed for Holos-Quad micro nuclear reactor as a thorium burner which has 15 ton reactor mass and 22 MWth full core geometry by using continuous-energy multi-purpose three-dimensional Serpent and OpenMC Monte Carlo particle transport code with ENDF/ B-VII data libraries. As nuclear fuel, reactor grade (RG) and weapon grade (WG) Pu mixed with ThO2 in different proportions have been used. Firstly, effective criticality for RG-Pu and WG-Pu for operation period have been determined. In addition, since each of the 4 subcritical power modules must be subcritical due to the structure of the Holos-Quad reactor, the criticality analysis of the power modules has been performed. The criticality, burnup and fissile fuel production of the Holos-Quad micro nuclear thorium-burner have been calculated with different fuel fraction depending on the fuel type. Finally, thorium mixed fuels with 35% WG-Pu or 75% RG-Pu would allow burn up levels of ~ 25 GWd/ton and ~15 GWd/ton with reactor operation periods ~3.5 years without fuel change, respectively.

Kaynakça

  • [1] Filippone, Claudio, and Kelly Jordan. "The holos reactor: A distributable power generator with transportable subcritical power modules." (2017).
  • [2] Firoozabadi, Mohammad Mahdi, et al. "The feasibility study of the Sub-criticalization of the Holos small modular reactor driven by an electron accelerator." Annals of Nuclear Energy 179: 109421, (2022).
  • [3] IAEA, “Potential of Thorium Based Fuel Cycles to Constrain Plutonium and Reduce Long Lived Waste Toxicity”, IAEA-TECDOC-1349, International Atomic Energy Agency, (2003).
  • [4] Ingersoll, Daniel T. "Deliberately small reactors and the second nuclear era." Progress in nuclear energy 51.4-5, 589-603, (2009).
  • [5] Iyer, Gokul, et al. "Implications of small modular reactors for climate change mitigation." Energy Economics 45, 144-154, (2014).
  • [6] Leppänen, Jaakko. "Serpent–a continuous-energy Monte Carlo reactor physics burnup calculation code." VTT Technical Research Centre of Finland 4.455, 2023-09, (2013).
  • [7] Michaelson, D., and J. Jiang. "Review of integration of small modular reactors in renewable energy microgrids." Renewable and Sustainable Energy Reviews 152: 111638, (2021).
  • [8] Moore M. “The economics of very small modular reactors in the North”. In: 4th international technical meeting on small reactors (ITMSR-4). Ottawa, ON; (2016).
  • [9] Paul K. Romano, Nicholas E. Horelik, Bryan R. Herman, Adam G. Nelson, Benoit Forget, and Kord Smith, “OpenMC: A State-of-the-Art Monte Carlo Code for Research and Development,” Ann. Nucl. Energy, 82, 90–97 (2015).
  • [10] Romano, P.K., et al.,. OpenMC, https://openmc.org/, (2022).
  • [11] Shamanin I.V., V.M. Grachev, Yu.B. Chertkov, S.V. Bedenko, O. Mendoza, V.V. Knyshev. “Neutronic properties of high-temperature gas-cooled reactors with thorium fuel.” Annals of Nuclear Energy, 113, 286–293. (2018).
  • [12] Shamanin, I.V., S.V. Bedenkoa, Yu.B. Chertkova, I.M. Gubaydulin (2015). “Gas-cooled thorium reactor with fuel block of the unified design.” Nuclear Energy and Technology 1, 184-190, (2015).
  • [13] Stauff N. E., C. H. Lee, P. Shriwise, A. Wells, C. Filippone, “Neutronic Benchmark on HOLOS-QUAD Micro-Reactor Concept.” EPJ Web of Conferences, PHYSOR 2020, EPJ Web of Conferences 247, 01006 (2021)
  • [14] Stauff, Nicolas E., et al. "Design optimization of the holos-quad micro-reactor concept." EPJ Web of Conferences. Vol. 247. EDP Sciences, (2021).
  • [15] Şahin, Sümer, et al. "Criticality investigations for the fixed bed nuclear reactor using thorium fuel mixed with plutonium or minor actinides." Annals of Nuclear Energy 36.8: 1032-1038, (2009).
  • [16] Şahin, Sümer, Hacı Mehmet Şahin, and Adem Acir. "Criticality and burn up evolutions of the fixed bed nuclear reactor with alternative fuels." Energy Conversion and Management 51.9: 1781-1787, (2010).
  • [17] Şahin, Sümer, et al. "Investigation of CANDU reactors as a thorium burner." Energy Conversion and Management 47.13-14: 1661-1675, (2006).
  • [18] Şahin, Sümer, Hacı Mehmet Şahin, and Adem Acır. "Utilization of TRISO fuel with reactor grade plutonium in CANDU reactors." Nuclear engineering and design 240.8: 2066-2074, (2010).
  • [19] Şahin, Sümer, Hacı Mehmet Şahin, and Adem Acır. "Commercial utilization of weapon grade plutonium as TRISO fuel in conventional CANDU reactors." Energy conversion and management 63 : 17-24, ( 2012).
  • [20] Vujić, Jasmina, et al. "Small modular reactors: Simpler, safer, cheaper?." Energy 45.1 (2012): 288-295,(2012).
  • [21] Çifci, A., & Acır, A. , “Neutronic Assessment of High-Temperature Gas-Cooled Thorium Burner using Monte Carlo Calculation Method with Full Core Model.” Gazi University Journal of Science Part C: Design and Technology, 11(4), 903-912, (2023).
  • [22] Çifci, A. ,“Bir mikro nükleer reaktörün nötronik analizi ve toryum yakıt kullanılabilirliğinin araştırılması.” (Yüksek lisans tezi). Yüksek Öğretim Kurulu Başkanlığı Ulusal Tez Merkezi. (814342) (2023).
  • [23] Tamer, E. M. R. E., Muhammed Mustafa İzgeç, and Adnan Sözen. "Enerji yoksulluğu konusundaki literatüre genel bakış." Politeknik Dergisi 26.3: 1255-1266, (2019).
  • [24] Avşar Ö., N., et al. "Enerji Üretim Yatırım Alternatiflerinin Değerlendirilmesinde Çok Kriterli Karar Verme Yöntemlerinin İstatistiksel ve Analitik Olarak Karşılaştırması: Türkiye Örneği." Journal of Polytechnic 25.2 (2022).
  • [25] Yağcı, B., E.,; Sözen, A., “Türkiye’nin enerji verimliliği etkinlik analizi.” Politeknik Dergisi, 1-1, (2023). https://doi.org/10.2339/politeknik.859790

Holos-Quad Mikro-Reaktör Konseptinde Toryumun Kullanımı

Yıl 2024, ERKEN GÖRÜNÜM, 1 - 1
https://doi.org/10.2339/politeknik.1571850

Öz

Bu çalışmada, 15 ton reaktör kütlesi ve 22 MWth tüm çekirdek geometrisine sahip Holos-Quad mikro nükleer reaktör için toryum brülörü olarak kritiklik ve yanma analizleri, sürekli enerjili çok amaçlı üç boyutlu Serpent ve OpenMC Monte Carlo parçacık taşıma kodu ve ENDF/B-VII veri kütüphaneleri kullanılarak gerçekleştirilmiştir. Nükleer yakıt olarak, reaktör sınıfı (RG) ve silah sınıfı (WG) Pu ile farklı oranlarda ThO2 karışımı kullanılmıştır. Öncelikle, RG-Pu ve WG-Pu için işletme periyodu için etkin kritiklik belirlenmiştir. Ayrıca, Holos-Quad reaktörünün yapısı gereği 4 alt kritik güç modülünün her biri kritik altı olması gerektiğinden, güç modüllerinin kritiklik analizi gerçekleştirilmiştir. Holos-Quad mikro nükleer toryum brülörünün kritikliği, yanma ve fisil yakıt üretimi, yakıt türüne bağlı olarak farklı yakıt oranlarıyla hesaplanmıştır. Son olarak, %35 WG-Pu ve %75 RG-Pu içeren toryum karışımlı yakıtlar, yakıt değişimi yapılmadan reaktör işletme süreleri ~3,5 yıl olacak şekilde sırasıyla ~25 GWd/ton ve ~15 GWd/ton yanma seviyelerine olanak sağlamıştır.

Kaynakça

  • [1] Filippone, Claudio, and Kelly Jordan. "The holos reactor: A distributable power generator with transportable subcritical power modules." (2017).
  • [2] Firoozabadi, Mohammad Mahdi, et al. "The feasibility study of the Sub-criticalization of the Holos small modular reactor driven by an electron accelerator." Annals of Nuclear Energy 179: 109421, (2022).
  • [3] IAEA, “Potential of Thorium Based Fuel Cycles to Constrain Plutonium and Reduce Long Lived Waste Toxicity”, IAEA-TECDOC-1349, International Atomic Energy Agency, (2003).
  • [4] Ingersoll, Daniel T. "Deliberately small reactors and the second nuclear era." Progress in nuclear energy 51.4-5, 589-603, (2009).
  • [5] Iyer, Gokul, et al. "Implications of small modular reactors for climate change mitigation." Energy Economics 45, 144-154, (2014).
  • [6] Leppänen, Jaakko. "Serpent–a continuous-energy Monte Carlo reactor physics burnup calculation code." VTT Technical Research Centre of Finland 4.455, 2023-09, (2013).
  • [7] Michaelson, D., and J. Jiang. "Review of integration of small modular reactors in renewable energy microgrids." Renewable and Sustainable Energy Reviews 152: 111638, (2021).
  • [8] Moore M. “The economics of very small modular reactors in the North”. In: 4th international technical meeting on small reactors (ITMSR-4). Ottawa, ON; (2016).
  • [9] Paul K. Romano, Nicholas E. Horelik, Bryan R. Herman, Adam G. Nelson, Benoit Forget, and Kord Smith, “OpenMC: A State-of-the-Art Monte Carlo Code for Research and Development,” Ann. Nucl. Energy, 82, 90–97 (2015).
  • [10] Romano, P.K., et al.,. OpenMC, https://openmc.org/, (2022).
  • [11] Shamanin I.V., V.M. Grachev, Yu.B. Chertkov, S.V. Bedenko, O. Mendoza, V.V. Knyshev. “Neutronic properties of high-temperature gas-cooled reactors with thorium fuel.” Annals of Nuclear Energy, 113, 286–293. (2018).
  • [12] Shamanin, I.V., S.V. Bedenkoa, Yu.B. Chertkova, I.M. Gubaydulin (2015). “Gas-cooled thorium reactor with fuel block of the unified design.” Nuclear Energy and Technology 1, 184-190, (2015).
  • [13] Stauff N. E., C. H. Lee, P. Shriwise, A. Wells, C. Filippone, “Neutronic Benchmark on HOLOS-QUAD Micro-Reactor Concept.” EPJ Web of Conferences, PHYSOR 2020, EPJ Web of Conferences 247, 01006 (2021)
  • [14] Stauff, Nicolas E., et al. "Design optimization of the holos-quad micro-reactor concept." EPJ Web of Conferences. Vol. 247. EDP Sciences, (2021).
  • [15] Şahin, Sümer, et al. "Criticality investigations for the fixed bed nuclear reactor using thorium fuel mixed with plutonium or minor actinides." Annals of Nuclear Energy 36.8: 1032-1038, (2009).
  • [16] Şahin, Sümer, Hacı Mehmet Şahin, and Adem Acir. "Criticality and burn up evolutions of the fixed bed nuclear reactor with alternative fuels." Energy Conversion and Management 51.9: 1781-1787, (2010).
  • [17] Şahin, Sümer, et al. "Investigation of CANDU reactors as a thorium burner." Energy Conversion and Management 47.13-14: 1661-1675, (2006).
  • [18] Şahin, Sümer, Hacı Mehmet Şahin, and Adem Acır. "Utilization of TRISO fuel with reactor grade plutonium in CANDU reactors." Nuclear engineering and design 240.8: 2066-2074, (2010).
  • [19] Şahin, Sümer, Hacı Mehmet Şahin, and Adem Acır. "Commercial utilization of weapon grade plutonium as TRISO fuel in conventional CANDU reactors." Energy conversion and management 63 : 17-24, ( 2012).
  • [20] Vujić, Jasmina, et al. "Small modular reactors: Simpler, safer, cheaper?." Energy 45.1 (2012): 288-295,(2012).
  • [21] Çifci, A., & Acır, A. , “Neutronic Assessment of High-Temperature Gas-Cooled Thorium Burner using Monte Carlo Calculation Method with Full Core Model.” Gazi University Journal of Science Part C: Design and Technology, 11(4), 903-912, (2023).
  • [22] Çifci, A. ,“Bir mikro nükleer reaktörün nötronik analizi ve toryum yakıt kullanılabilirliğinin araştırılması.” (Yüksek lisans tezi). Yüksek Öğretim Kurulu Başkanlığı Ulusal Tez Merkezi. (814342) (2023).
  • [23] Tamer, E. M. R. E., Muhammed Mustafa İzgeç, and Adnan Sözen. "Enerji yoksulluğu konusundaki literatüre genel bakış." Politeknik Dergisi 26.3: 1255-1266, (2019).
  • [24] Avşar Ö., N., et al. "Enerji Üretim Yatırım Alternatiflerinin Değerlendirilmesinde Çok Kriterli Karar Verme Yöntemlerinin İstatistiksel ve Analitik Olarak Karşılaştırması: Türkiye Örneği." Journal of Polytechnic 25.2 (2022).
  • [25] Yağcı, B., E.,; Sözen, A., “Türkiye’nin enerji verimliliği etkinlik analizi.” Politeknik Dergisi, 1-1, (2023). https://doi.org/10.2339/politeknik.859790
Toplam 25 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Reaktör Teknolojisi
Bölüm Araştırma Makalesi
Yazarlar

Ahmet Çifci 0000-0002-4264-0693

Adem Acır 0000-0002-9856-3623

Erken Görünüm Tarihi 24 Kasım 2024
Yayımlanma Tarihi
Gönderilme Tarihi 22 Ekim 2024
Kabul Tarihi 19 Kasım 2024
Yayımlandığı Sayı Yıl 2024 ERKEN GÖRÜNÜM

Kaynak Göster

APA Çifci, A., & Acır, A. (2024). Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept. Politeknik Dergisi1-1. https://doi.org/10.2339/politeknik.1571850
AMA Çifci A, Acır A. Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept. Politeknik Dergisi. Published online 01 Kasım 2024:1-1. doi:10.2339/politeknik.1571850
Chicago Çifci, Ahmet, ve Adem Acır. “Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept”. Politeknik Dergisi, Kasım (Kasım 2024), 1-1. https://doi.org/10.2339/politeknik.1571850.
EndNote Çifci A, Acır A (01 Kasım 2024) Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept. Politeknik Dergisi 1–1.
IEEE A. Çifci ve A. Acır, “Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept”, Politeknik Dergisi, ss. 1–1, Kasım 2024, doi: 10.2339/politeknik.1571850.
ISNAD Çifci, Ahmet - Acır, Adem. “Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept”. Politeknik Dergisi. Kasım 2024. 1-1. https://doi.org/10.2339/politeknik.1571850.
JAMA Çifci A, Acır A. Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept. Politeknik Dergisi. 2024;:1–1.
MLA Çifci, Ahmet ve Adem Acır. “Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept”. Politeknik Dergisi, 2024, ss. 1-1, doi:10.2339/politeknik.1571850.
Vancouver Çifci A, Acır A. Utilization of the Thorium of the Holos-Quad Micro-Reactor Concept. Politeknik Dergisi. 2024:1-.
 
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