Results 101 to 110 of about 213 (134)
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Iranian Journal of Science and Technology, Transaction A: Science, 2018
Self-powered neutron detectors (SPNDs) are used widely in flux mapping, control, and protection of nuclear reactors. Compared with other neutron detector, SPND has the advantages of small size, low cost, and relatively simple electronics. In this work, a prototype SPND for flux measuring neutron generators has been designed and tested.
Hossein Khalafi, Zohreh Kargar
exaly +2 more sources
Self-powered neutron detectors (SPNDs) are used widely in flux mapping, control, and protection of nuclear reactors. Compared with other neutron detector, SPND has the advantages of small size, low cost, and relatively simple electronics. In this work, a prototype SPND for flux measuring neutron generators has been designed and tested.
Hossein Khalafi, Zohreh Kargar
exaly +2 more sources
Bioresource Technology, 2022
Saline wastewater poses a threat to biological nitrogen removal. This study investigated whether and how static magnetic field (SMF) can improve the salt-tolerance of aerobic granular sludge (AGS) in two simultaneous partial nitrification and denitrification (SPND) reactors.
Liang Guo, Yangguo Zhao, Mengchun Gao
exaly +3 more sources
Saline wastewater poses a threat to biological nitrogen removal. This study investigated whether and how static magnetic field (SMF) can improve the salt-tolerance of aerobic granular sludge (AGS) in two simultaneous partial nitrification and denitrification (SPND) reactors.
Liang Guo, Yangguo Zhao, Mengchun Gao
exaly +3 more sources
Uncertainty quantification of the SPND dynamic model based on non-intrusive polynomial chaos method
Annals of Nuclear Energy, 2019Abstract Self-Powered Neutron Detectors (SPNDs) are widely used in nuclear reactors to monitor the core neutron flux distribution and to provide meaningful information for regulation and protection of the reactor. In this paper we present the implementation and the application of Non-Intrusive Polynomial Chaos (NIPC) method for uncertainty analysis ...
Qu Wu, Yingrui Yu
exaly +2 more sources
IEEE Transactions on Nuclear Science, 2016
A neutron irradiation control method using a self-powered neutron detector (SPND) and zirconium foils was developed for neutron transmutation doping (NTD) application at HANARO. An SPND was installed at a fixed position of the upper part of the sleeve at the HANARO NTD hole for real-time monitoring of the neutron irradiation. The SPND signal output was
Myong-Seop Kim, Gi-Doo Kang
exaly +2 more sources
A neutron irradiation control method using a self-powered neutron detector (SPND) and zirconium foils was developed for neutron transmutation doping (NTD) application at HANARO. An SPND was installed at a fixed position of the upper part of the sleeve at the HANARO NTD hole for real-time monitoring of the neutron irradiation. The SPND signal output was
Myong-Seop Kim, Gi-Doo Kang
exaly +2 more sources
Numerical simulation of Delayed-SPND response current in NECP-Bamboo
Annals of Nuclear Energy, 2022Liangzhi Cao +2 more
exaly +2 more sources
Simulation and experimental verification for Rh-SPND burnup effect
Annals of Nuclear EnergyJinggang Li, Xiong Wu, Haoliang Lu
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A fast numerical method for calculating SPND space charge effect at steady state
Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated EquipmentQingmin Zhang +2 more
exaly +2 more sources
A study on the sensitivity of self-powered neutron detectors (SPNDs)
IEEE Transactions on Nuclear Science, 2001Self-powered neutron detectors (SPNDs) are widely used in reactors to monitor neutron flux, while they have several advantages such as small size, and relatively simple electronics required in conjunction with those usages, they have some intrinsic problems of the low level of output current-a slow response time and the rapid change of sensitivity-that
null Wanno Lee +6 more
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Verification of PWR-Core power distribution based on precisely calculated SPND response currents
Nuclear Engineering and DesignLiangzhi Cao, Ruizhi Shao
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Physics of Atomic Nuclei, 2011
A method for determination of linear energy release of a VVER fuel assembly near a rhodium self-powered neutron detector (SPND) is described. The dependence of SPND burnup on the charge passing through it is specified.
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A method for determination of linear energy release of a VVER fuel assembly near a rhodium self-powered neutron detector (SPND) is described. The dependence of SPND burnup on the charge passing through it is specified.
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