Citation: | XIE Quan-xin, LI Wen-bo, WU Jian-jun, CONG Yi-kun. Stationary Calculation Method for Multicomponent Square Cascades With Additional Flows[J]. Atomic Energy Science and Technology, 2010, 44(4): 385-390. DOI: 10.7538/yzk.2010.44.04.0385 |
[1] |
SULABERIDZE G A, BORISEVICH V D, XIE Quanxin. On some separation problems on regenerated uranium application in the fuel cycle[C] ∥ Proceedings of Ⅸ AllRussia (International) Scientific Conference: Physical and Chemical Processes on Selection of Atoms and Molecules. Zvenigorod, Russia: [s.n.], 2004: 70-77.
|
[2] |
SULABERIDZE G A, BORISEVICH V D, XIE Quanxin. Study of regularities of stationary mass transfer in separating cascade for enrichment of regenerated uranium[J]. Engineering Physics, 2005, 3: 15-19.
|
[3] |
谢全新,李大勇,吴建军. 回收铀分离级联计算[J]. 核技术,2009,32(1):61-65.
XIE Quanxin, LI Dayong, WU Jianjun. Cascade calculations for separation of recycled uranium [J]. Nuclear Techniques, 2009, 32(1): 61-65(in Chinese). |
[4] |
贾兴国,应纯同,曾实. 附加供料离心净化级联的实现[J]. 清华大学学报:自然科学版,2006,46(3):371-373.
JIA Xingguo, YING Chuntong, ZENG Shi. Realization of centrifuge purge cascade with additional feed [J]. Journal of Tsinghua University: Sci & Tech, 2006, 46(3): 371-373(in Chinese). |
[5] |
SULABERIDZE G A, BORISEVICH V D, XIE Quanxin. Quasi-ideal cascades with an additional flow for separation of multicomponent isotope mixtures [J]. Theoretical Foundations of Chemical Engineering, 2006, 40(1): 7-16.
|
[6] |
XIE Quanxin, SULABERIDZE G A, BORISEVICH V D. Some properties of quasi-ideal cascades with losses at stages[C] ∥Proceedings of the ⅩⅩ International Symposium on Physico-Chemical Methods of the Mixtures Separation. Szklarska Poreba, Poland: [s.n.], 2005: 205-207.
|
[7] |
XIE Quanxin, SULABERIDZE G A, BORISEVICH V D. Optimization of model cascades for multicomponent isotope mixtures[C] ∥Proceedings of the Ⅺ AllRussia (International) Scientific Conference: Physical and Chemical Processes on Selection of Atoms and Molecules. [S.l.] : [s.n.], 2006: 15-20.
|
[8] |
谢全新,李大勇,李文泊,等. 多组份同位素分离级联的优化[J]. 核科学与工程,2008,28(1):86-91.
XIE Quanxin, LI Dayong, LI Wenbo, et al. Cascade optimization for multicomponent isotope separation [J]. Chinese Journal of Nuclear Science and Engineering, 2008, 28(1): 86-91(in Chinese). |
[9] |
XIE Quanxin, BORISEVICH V D, POTAPOV D V, et al. Multicomponent isotope mixture separations in square cascade with losses of working substances [J]. Engineering Physics, 2006, 2: 30-34.
|
[10] |
ZENG Shi, YING Chuntong. A robust and efficient calculation procedure for determining concentration distribution of multicomponent mixtures [J]. Separation Science and Technology, 2000, 35(4): 613-622.
|
[11] |
ZENG Shi, YING Chuntong. A method of separating a middle component in multicomponent isotope mixtures by gas centrifuge cascades [J]. Separation Science and Technology, 2000, 35 (14): 2 173-2 186.
|
[12] |
LEVIN E V, LAGUNTSOV N I, SULABERIDZE G A. A method for the numerical investigation of nonstationary processes in multisectional installations for separating multicomponent isotope mixtures [J]. Engineering Physics, 1982, 43(3): 456-462.
|
[13] |
WU Hongjiang, YING Chuntong, LIU Guanjun. Calculation methods for determining the distribution of components in a separation cascade for multicomponent mixture [J]. Separation Science and Technology, 1998, 33(6): 887-898.
|
[14] |
吴红江. 多组份气体混合物大分离系数分离级联的计算和参数分析[D]. 北京:清华大学,1998.
|
[15] |
ZENG Shi, YING Chuntong. A second-order time-accurate method for determination of concentration distribution of multicomponent mixtures in separation cascades[J]. Separation Science and Technology, 2000, 35(5): 729-741.
|
[16] |
POTAPOV D V, SULABERIDZE G A, KHOLPANOV L P. Calculation of square-sectional cascade by approximating the separation factor[J]. Theoretical Foundations of Chemical Engineering, 2000, 34(2): 147-151.
|
[17] |
XIE Quanxin. Stationary molecular selective transfer in ordinary and multiflow cascades with large enrichment factors and losses at stages for the separation of multicomponent isotopic mixture [D]. Moscow: Moscow Engineering Physics Institute, 2007.
|
[18] |
KHOLPANOV L P, XIE Quanxin, SULABERIDZE G A, et al. Calculation of a square cascade with losses of the working material in the steps and pipelines during separation of multicomponent isotopic mixtures [J]. Atomic Energy, 2008, 104(1): 17-23.
|
[1] | XU Jiayuan, ZHAO Quanbin, SUN Jianfeng, LIU Xiuting, ZHANG Dalin, ZHUO Wenbin. Study on Cold End Characteristic of SCO2 Brayton Cycle in Small Fluoride-salt-cooled High-temperature Reactor[J]. Atomic Energy Science and Technology, 2023, 57(9): 1720-1730. DOI: 10.7538/yzk.2023.youxian.0260 |
[2] | LUO Tianjun, XUE Yun, ZHOU Yu, MA Fuqiu, ZHAO Qiang. Study on Dynamic Simulation Model of Continuous Dissolution Process of Spent Fuel[J]. Atomic Energy Science and Technology, 2023, 57(1): 34-46. DOI: 10.7538/yzk.2022.youxian.0002 |
[3] | MING Yang, YI Jingwei, FANG Huawei, LIU Kai, ZHAO Fulong, TAN Sichao, TIAN Ruifeng. Analysis of Operating Characteristic of Direct Brayton Cycle Gas-cooled Reactor System[J]. Atomic Energy Science and Technology, 2020, 54(7): 1168-1175. DOI: 10.7538/yzk.2020.youxian.0013 |
[4] | GUO Kailun, WANG Chenglong, QIU Suizheng, SU Guanghui, TIAN Wenxi. Analysis on Thermoelectric Conversion Characteristic of Brayton Cycle in Megawatt-class Nuclear Electric Propulsion System[J]. Atomic Energy Science and Technology, 2019, 53(1): 16-23. DOI: 10.7538/yzk.2018.youxian.0354 |
[5] | LEI Jie-hong, GU Yu-qiu. Microscopic Simulation on Dynamic Failure Process of Single Crystal Copper under Shock Wave Loading Using Molecular Dynamics[J]. Atomic Energy Science and Technology, 2016, 50(5): 769-773. DOI: 10.7538/yzk.2016.50.05.0769 |
[6] | CHEN Yong-wei, FU Jing-qiang, QIU He-wen, ZHANG Li-guo, YOU Dai-lun. Improvement and Optimization of Master/Bypass Valve Switching Process for Steam Generator Level Control of Nuclear Power Plant[J]. Atomic Energy Science and Technology, 2015, 49(3): 523-528. DOI: 10.7538/yzk.2015.49.03.0523 |
[7] | LIU Dan, SUN Jun, XU Xiao-lin, SUN Yu-liang. Simulation and Analysis of Start-up Process of High Temperature Gas-cooled Reactor[J]. Atomic Energy Science and Technology, 2014, 48(增刊1): 594-598. DOI: 10.7538/yzk.2014.48.S0.0594 |
[8] | ZENG Sheng, TAN Kai-xuan, SANG Xiao, SHI Wen-ge. Numerical Simulation on Multi-field and Multi-process Coupling Dynamics of In-situ Leaching of Uranium[J]. Atomic Energy Science and Technology, 2011, 45(4): 500-505. DOI: 10.7538/yzk.2011.45.04.0500 |
[9] | QIN Ben-ke, BO Han-liang, ZHENG Wen-xiang, WANG Da-zhong. Study on StepDown Dynamic Process of Hydraulic Cylinder for Control Rod Hydraulic Drive Mechanism[J]. Atomic Energy Science and Technology, 2009, 43(4): 1-349. DOI: 10.7538/yzk.2009.43.04.0345 |
[10] | ZHOU Gang, ZHANG Da-fa, PENG Wei. Dynamic Process Identification for Steam Generator Based on Wavelet Neural Network[J]. Atomic Energy Science and Technology, 2006, 40(增刊): 1-4. DOI: 10.7538/yzk.2006.40.suppl.0001 |