An Improved Critical Power Correlation for Tight-Lattice Rod Bundles
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概要
- 論文の詳細を見る
Developing critical power correlation is indispensable for R&D of Innovative Water Reactor for Flexible Fuel Cycle, which adopts a triangular tight-lattice fuel rod configuration and axially double-humped heated profile. In this research, the critical power correlation for tight-lattice rod bundles is improved by using two sets of different tightness 37-rod bundle data derived at Japan Atomic Energy Agency (JAEA), with an aim to predict critical power in different tightness bundles with high accuracy. Deduction for the correlation forms of critical heat flux — critical quality type for spot dryout mechanism and critical quality — annular flow length type for complete dryout one is given out. To account for the changed transverse power peaking effect when the peaking location changes, power peaking on non-peripheral rods, LPF1, is introduced in the development of the critical power correlation. The standard deviation of Experimental Critical Power Ratio to JAEA data is 3.24%. To Bettis Atomic Power Laboratory data, this value is 9.2%. The applicable range of the correlation is: rod number 20 or 37, gap width between rods from 1.0 to 2.29 mm, mass velocity from 150 to 1,500 kg/m2s, pressure from 2 to 11 MPa, inlet subcooling from 50 to 1 K, and transverse power peaking from 1 to 1.1.
- 社団法人 日本原子力学会の論文
- 2007-04-25
著者
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Liu W
Japan Atomic Energy Agency
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Liu Wei
サウサンプトン大
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Ohnuki A
Japan Atomic Energy Agency
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Ohnuki Akira
Japan Atomic Energy Research Institute
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Ohnuki Akira
Japan Atomic Energy Agency
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Liu Wei
Japan Atomic Energy Agency
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Liu W
九大 大学院工学府
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Akimoto Hajime
Japan Atomic Energy Agency
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Akimoto H
Japan Atomic Energy Res. Inst. Ibaraki
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Akimoto Hajime
Frontier Research System For Global Change
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KURETA Masatoshi
Japan Atomic Energy Agency
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YOSHIDA Hiroyuki
Japan Tobacco Inc. Applied Plant Research Center
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Yoshida Hiroyuki
Japan Atomic Energy Agency Nuclear Science And Engineering Directorate
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Yoshida Hiroyuki
Japan Atomic Energy Research Institute
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Yoshida Hiroyuki
Japan Atomic Energy Agency
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