Development of a Standard for the Moderator Temperature Coefficient of Reactivity in Water-moderated Power Reactors PDF Download

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Development of a Standard for the Moderator Temperature Coefficient of Reactivity in Water-moderated Power Reactors

Development of a Standard for the Moderator Temperature Coefficient of Reactivity in Water-moderated Power Reactors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 6

Book Description
The moderator temperature coefficient of reactivity (MTC) is an important parameter in safety analyses for thermal reactors. A positive MTC can exacerbate the severity of heatup transients, while a negative MTC can worsen the severity of cooldown transients. In particular, a strongly negative MTC is the major determinate of the severity of the steamline-break accident for pressurized water reactors (PWRs). Conversely, positive and negative MTCs can mitigate the severity of cooldown and heatup transients, respectively. Consequently, the accurate measurement and prediction of MTCs is an important factor in demonstrating that power reactors can be operated safely. This document discusses the development of a standard for measuring MTC.

Development of a Standard for the Moderator Temperature Coefficient of Reactivity in Water-moderated Power Reactors

Development of a Standard for the Moderator Temperature Coefficient of Reactivity in Water-moderated Power Reactors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 6

Book Description
The moderator temperature coefficient of reactivity (MTC) is an important parameter in safety analyses for thermal reactors. A positive MTC can exacerbate the severity of heatup transients, while a negative MTC can worsen the severity of cooldown transients. In particular, a strongly negative MTC is the major determinate of the severity of the steamline-break accident for pressurized water reactors (PWRs). Conversely, positive and negative MTCs can mitigate the severity of cooldown and heatup transients, respectively. Consequently, the accurate measurement and prediction of MTCs is an important factor in demonstrating that power reactors can be operated safely. This document discusses the development of a standard for measuring MTC.

Development of a Standard for Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity in Water-moderated Power Reactors

Development of a Standard for Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity in Water-moderated Power Reactors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 6

Book Description
The moderator temperature coefficient of reactivity (MTC) is an important parameter in safety analyses for thermal reactors. A positive MTC can exacerbate the severity of heatup transients, while a negative MTC can worsen the severity of cooldown transients. In particular, a strongly negative MTC is the major determinate of the severity of the steamline-break accident for pressurized water reactors (PWRs). Conversely, positive and negative MTCs can mitigate the severity of cooldown and heatup transients, respectively. Consequently, the accurate measurement and prediction of MTCs is an important factor in demonstrating that power reactors can be operated safely. ANS 19.11, the standard for ''Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity in Water-Moderated Power Reactors, '' recently has been approved as a national standard by the American National Standards institute (ANSI) and the American Nuclear Society (ANS). At present, the scope of the standard is limited to PWRs, because that is the only type of power reactor currently sited in the US for which measurement of the MTC is required. The standard addresses the calculation and measurement of the MTC, and it also addresses the calculation of the ITC.

American National Standard Calculation and Measurement of the Modular Temperature Coefficient of Reactivity for Water Moderated Power Reactors

American National Standard Calculation and Measurement of the Modular Temperature Coefficient of Reactivity for Water Moderated Power Reactors PDF Author: American National Standards Institute
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages : 32

Book Description


American National Standard

American National Standard PDF Author: American Nuclear Society. Standards Committee Working Group ANS-19.11
Publisher:
ISBN:
Category : Nuclear power plants
Languages : en
Pages :

Book Description
This standard provides guidance and specifies criteria for determining the MTC in PWRs. Measurement of the isothermal temperature coefficient of reactivity (ITC) at hot-zero-power (HZP) conditions is covered in ANSI/ANS-19.6.1-2011 (R2016). This standard therefore addresses the calculation of the ITC at HZP and the calculation and measurement of the MTC at power. This standard addresses the calculation and measurement of the MTC only in PWRs because that is the only type of power reactor currently sited in the United States for which measurement of the MTC is required.

American National Standard Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity for Pressurized Water Reactors

American National Standard Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity for Pressurized Water Reactors PDF Author:
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages : 27

Book Description


Development of a Noise-based Method for the Determination of the Moderator Temperature Coefficient of Reactivity (MTC) in Pressurized Water Reactors (PWRs)

Development of a Noise-based Method for the Determination of the Moderator Temperature Coefficient of Reactivity (MTC) in Pressurized Water Reactors (PWRs) PDF Author: Chalmers tekniska högskola
Publisher:
ISBN: 9789172912243
Category :
Languages : en
Pages : 72

Book Description


MODERATOR TEMPERATURE COEFFICIENTS IN HEAVY WATER REACTORS.

MODERATOR TEMPERATURE COEFFICIENTS IN HEAVY WATER REACTORS. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Reactors that are moderated with heavy water differ from those that are moderated with graphite in that (1) the moderator temperature is lower than it may be in graphite reactors, (2) when the moderator temperature is raised, the moderator-to-fuel ratio decreases, and (3) circulation in the moderator introduces local, random changes in reactivity that distort the flux distribution. The large negative contributions to the moderator temperature coefficient from leakage and resonance capture overshadow any positive contribution from eta that may accompany the buildup of plutonium with exposure. The effect of the coefficient on reactor safety depends upon the manner in which the D/sub 2/O circulation couples the reactor power to the moderator temperature. (auth).

Moderator Temperature Coefficients in Heavy Water Reactors

Moderator Temperature Coefficients in Heavy Water Reactors PDF Author: Daniel S. St. John
Publisher:
ISBN:
Category : Heavy water reactors
Languages : en
Pages : 12

Book Description


Metal-water Reactions

Metal-water Reactions PDF Author: E. Janssen
Publisher:
ISBN:
Category : Chemical kinetics
Languages : en
Pages : 102

Book Description


Proceedings of the International Conference on the Physics of Nuclear Science and Technology

Proceedings of the International Conference on the Physics of Nuclear Science and Technology PDF Author:
Publisher:
ISBN:
Category : Nuclear engineering
Languages : en
Pages : 1006

Book Description