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A stochastic dynamic model for human...
~
Delgado-Loperena, Dharma.
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A stochastic dynamic model for human error analysis in nuclear power plants.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
A stochastic dynamic model for human error analysis in nuclear power plants./
作者:
Delgado-Loperena, Dharma.
面頁冊數:
271 p.
附註:
Source: Dissertation Abstracts International, Volume: 65-06, Section: B, page: 3135.
Contained By:
Dissertation Abstracts International65-06B.
標題:
Psychology, Behavioral. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3137693
ISBN:
0496848644
A stochastic dynamic model for human error analysis in nuclear power plants.
Delgado-Loperena, Dharma.
A stochastic dynamic model for human error analysis in nuclear power plants.
- 271 p.
Source: Dissertation Abstracts International, Volume: 65-06, Section: B, page: 3135.
Thesis (Ph.D.)--University of Missouri - Columbia, 2004.
Nuclear disasters like Three Mile Island and Chernobyl indicate that human performance is a critical safety issue, sending a clear message about the need to include environmental press and competence aspects in research. This investigation was undertaken to serve as a roadmap for studying human behavior through the formulation of a general solution equation. The theoretical model integrates models from two heretofore-disassociated disciplines (behavior specialists and technical specialists), that historically have independently studied the nature of error and human behavior; including concepts derived from fractal and chaos theory; and suggests re-evaluation of base theory regarding human error.
ISBN: 0496848644Subjects--Topical Terms:
1017677
Psychology, Behavioral.
A stochastic dynamic model for human error analysis in nuclear power plants.
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Nuclear disasters like Three Mile Island and Chernobyl indicate that human performance is a critical safety issue, sending a clear message about the need to include environmental press and competence aspects in research. This investigation was undertaken to serve as a roadmap for studying human behavior through the formulation of a general solution equation. The theoretical model integrates models from two heretofore-disassociated disciplines (behavior specialists and technical specialists), that historically have independently studied the nature of error and human behavior; including concepts derived from fractal and chaos theory; and suggests re-evaluation of base theory regarding human error.
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The results of this research were based on comprehensive analysis of patterns of error, with the omnipresent underlying structure of chaotic systems. The study of patterns lead to a dynamic formulation, serving for any other formula used to study human error consequences. The search for literature regarding error yielded insight for the need to include concepts rooted in chaos theory and strange attractors---heretofore unconsidered by mainstream researchers who investigated human error in nuclear power plants or those who employed the ecological model in their work. The study of patterns obtained from the rupture of a steam generator tube (SGTR) event simulation, provided a direct application to aspects of control room operations in nuclear power plant operations.
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In doing so, the conceptual foundation based in the understanding of the patterns of human error analysis can be gleaned, resulting in reduced and prevent undesirable events.
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