【摘要】:An increasing trend towards and interest in aspiration of safe and peaceful nuclear energy is overwhelming across the world these days.Due to its ability of breeding fuel and transmutation of radioactive waste,fast neutron spectrum has become one of the popular research focuses in the world.As the core neutronics plays a key role in supporting the safety and dynamics of the reactor,it is necessary to conduct such simulations with high fidelity.Many researchers carry out core neutronics simulations for SFRs using both deterministic and Monte Carlo(MC)codes.On the basis of these calculations when compared with benchmarked experiments,it can be found that results of MC codes are commonly observed to be closer to the measurements(more accurate)as compared with that of deterministic ones.FDS Team(INEST,CAS,China)developed a highly efficient and general purpose code-the SuperMC-which is capable to model and simulate the complex nuclear systems.In order to validate and apply the SuperMC code/program in the area of designing and safety analysis of fast reactors,the high-fidelity core neutronics simulations including transport and burnup calculations were performed and analyzed based on two benchmarked Sodium-cooled Fast-spectrum Reactors(BFS-62-3A and BN-600).The study could essentially be divided in to two major parts:I.The benchmarking of SuperMC program for Sodium-cooled Fast Reactors' neutronic analysis with BFS-62-3A which is a benchmarked experiment conducted at BFS-2 facility,IPPE,Russia.This work incorporates three distinctive subjects including:a.Validation of SuperMC code for its neutron transport calculation capability.During the validation,various parameters were calculated-The spectral indices,for instance,gave C/E values 0.9927 and 0.9990 for F49/F25 and F28/F25.The average discrepancies for radial fission rate distributions in the fuel region and control rod worths were found to be 2.7%and less than 5%respectively.b.The testification of competence of indigenously developed point-wise nuclear data library,the HENDL/MC.The simulations agreed well with the experiment and this fraction of our study hence enabled the HENDL/MC library to be benchmarked.c.A detailed investigation on core's neutronic analysis of BFS-62-3A:including estimation of the impact of reflector density on fission rates,sodium void reactivity effect,sensitivity analysis,the effects of various data libraries on the criticality and fission rates,and code-to-code verification(using the available results of three Monte Carlo codes-SuperMC,MCNP,and Serpent-and a deterministic code DYN3D-MG).For reflector's density dependence of reaction rates in peripheral region of the assembly,for instance,a decrease of density by 5%was found to be in good agreement with the experiment.For code-to-code verification,control rod worth(CRW)and fission rates were calculated.For CRW,the average deviations are 8.19%and 4.97%for the Serpent and SuperMC respectively.For fission rates,the average discrepancies between SuperMC and other codes were about 1.8%and 1.6%for 239Pu and 235U,respectively.II.The neutronic analysis of BN-600 hybrid-core reactor using SuperMC program.The prototype reactor was reconstructed for criticality studies and fuel burnup analysis.The calculations,keeping the shim rods(SHRs)mid-core inserted and scram rods(SCRs)fully out/withdrawn,involved estimation of change in isotopic concentrations and prediction of burnup effect and burnup reactivity loss during reactor operation.The results so obtained were compared with the reference data available in IAEA's technical document(IAEA-TECDOC-1623)and other published articles.The comparison gave a good agreement of the SuperMC's results with available reference data.It is to conclude that SuperMC code is quite competent and capable to perform the neutronic analysis of fast spectrum sodium-cooled reactors.During the neutronics study of BFS reactor(described in "I" above),the sensitivity analysis renders an interesting fact that the reactivity of the core is substantially sensitive to fuel materials;including U-90%(present in HEZ),U-36%(old)(present in LEZ)and Pu-95%(present in PEZ);while the reactivity is comparatively less sensitive to UO2-36%(present only in LEZ with a few number of pellets).This thesis presents a work based on a strong motivation to help alleviate the boundless and comprehensive adoption of efficient,safe and espousal fast-reactor technology(with a specific emphasis on advanced sodium-cooled reactors).The work performed would be playing an integral role in furnishing input to almost all aspects related to design and safety evaluation,and operation of an SFR.The future work is intended to apply learning from the study and highly efficient Monte Carlo code for Lead-cooled fast reactor,the CLEAR-0 and other variants designed by INEST,CAS,China;and studying the subcritical systems such as Ukraine-based Accelerator-driven KIPT subcritical nuclear assembly.
【圖文】:
圖.口目七..口n舊
【學(xué)位授予單位】:中國科學(xué)技術(shù)大學(xué)
【學(xué)位級別】:博士
【學(xué)位授予年份】:2018
【分類號】:TL433
【相似文獻】
相關(guān)期刊論文 前10條
1 Zhi-Song Zhang;Li-Chun Zhu;Wei Tang;Xin-Yi Li;;Unit panel node detection by CNN on FAST reflector[J];Research in Astronomy and Astrophysics;2019年01期
2 黃華茂;王洪;黃曉升;胡金勇;;GaN-based high-voltage light-emitting diodes with backside reflector[J];Journal of Semiconductors;2014年07期
3 Li Tuanjie;Jiang Jie;Deng Hanqing;Lin Zhanchao;Wang Zuowei;;Form-fnding methods for deployable mesh reflector antennas[J];Chinese Journal of Aeronautics;2013年05期
4 ;An optimization of the shape of FAST reflector panels[J];Research in Astronomy and Astrophysics;2010年08期
5 ;Calculation of distribution of effective reflection area for space-borne laser retro-reflector array[J];Science in China(Series G:Physics,Mechanics & Astronomy);2004年03期
6 陳涵奎,孫乃華,朱守正;CALCULATION OF INPUT IMPEDANCE OF NON-REGULAR DOUBLE LOOP ANTENNA NEAR RECTANGULAR CYLINDER REFLECTOR[J];Science in China,Ser.A;1988年04期
7 康楊;李寧;翁春生;王傳位;;Acoustic characteristics of pulse detonation engine with ellipsoidal reflector[J];Chinese Physics B;2018年10期
8 Peiyuan Lian;Congsi Wang;Wei Wang;Binbin Xiang;;Electromagnetic performance analysis of reflector antennas with non-uniform errors along radius[J];Journal of Systems Engineering and Electronics;2016年05期
9 Md.Tawhidul Islam Khan;Kenbu Teramoto;Shigeru Matsuo;Toshiaki Setoguchi;;Jet Screech Reduction with Perforated Flat Reflector[J];Journal of Thermal Science;2008年03期
10 黃鵬;;Error analysis and distribution of the driving mechanism for large spherical radio telescope active reflector[J];High Technology Letters;2008年01期
相關(guān)會議論文 前10條
1 Chien-hao LIU;;RESONANT FREQUENCY TUNABLENESS OF SOLIDLY MOUNTED RESONATORS[A];Proceedings of the 2010 Symposium on Piezoelectricity,Acoustic Waves and Device Applications[C];2010年
2 Wen-han LV;Xian-mei WU;Di ZHANG;Yun-fei YE;;QUANTITATIVE ESTIMATION TO CIRCULAR HOLES IN STEEL FOR NON-DESTRUCTIVE TESTING USING ULTRASONIC PHASED ARRAY[A];2015全國壓電和聲波理論及器件技術(shù)研討會論文集[C];2015年
3 Jizhong Wu;Wei Wu;;An Alternative Approach for Estimating SNR Metrics in GPS-IR[A];第九屆中國衛(wèi)星導(dǎo)航學(xué)術(shù)年會論文集——S01 衛(wèi)星導(dǎo)航應(yīng)用技術(shù)[C];2018年
4 ;The FengYun-3 Microwave Radiation Imager On-orbit Verification[A];第七屆全國優(yōu)秀青年氣象科技工作者學(xué)術(shù)研討會論文集[C];2010年
5 ;KINEMATICS ANALYSIS OF ACTIVE REFLECTOR SUPPORTING MECHANISM FOR FAST[A];2006年中國機械工程學(xué)會年會暨中國工程院機械與運載工程學(xué)部首屆年會論文集[C];2006年
6 CHANG Dauchyrh;CHENG Yaoxiang;WU Mengshiue;CHEN Hsinan;CHEN Liksuong;LAU linus;;Large quiet zone of CATR for Satellite Reflector measurement[A];2017年全國天線年會論文集(上冊)[C];2017年
7 Dong-Sing Wuu;Ray-Hua Horng;;Near-Ultraviolet Nitride LEDs Grown on Pyramidal and Columnar Patterned Sapphire Substrates[A];Proceedings of the Eighth Chinese Optoelectronics Symposium[C];2006年
8 Gang Zhao;Shanshi Zhou;Xuhua Zhou;Bin Wu;;Precise Orbit Determination of BeiDou Satellites Using Satellite Laser Ranging[A];第四屆中國衛(wèi)星導(dǎo)航學(xué)術(shù)年會論文集-S3精密定軌與精密定位[C];2013年
9 ;Spall Fracture Experimental Investigation in 30CrMnSiNi2A[A];第九屆全國沖擊動力學(xué)學(xué)術(shù)會議論文集(下冊)[C];2009年
10 Ioannis Manousakas;;Design and Development of Shock Wave Therapy[A];The 4~(th) Across-strait Workshop on Shock Wave/Vortex Interaction Abstract Book[C];2008年
相關(guān)博士學(xué)位論文 前1條
1 Zeeshan JAMIL;SuperMC應(yīng)用于先進鈉冷快堆的適用性評估[D];中國科學(xué)技術(shù)大學(xué);2018年
相關(guān)碩士學(xué)位論文 前1條
1 周卓;專利文獻IMPROVED OPTICAL SOLAR REFLECTORS英譯漢實踐報告[D];長沙理工大學(xué);2013年
,
本文編號:
2706313
本文鏈接:http://sikaile.net/projectlw/hkxlw/2706313.html