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首页> 外文期刊>Bulletin of the Institute of Heat Engineering >An Investigation of Oxide Layer Impact on Heat Transfer in a Fuel Element of the MARIA Reactor
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An Investigation of Oxide Layer Impact on Heat Transfer in a Fuel Element of the MARIA Reactor

机译:氧化层对MARIA反应堆燃料元件传热影响的研究

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Within the framework of test fuel examination it has been performed the irradiation of one of fuel elements to high level of burnup (ca. 60 %). Post-irradiation examinations proved that under high burnup it comes to local detachment of oxide layer from the fuel element cladding. Unilateral breaking away of the oxide layer of strong insulation properties from cladding surface may lead to disturbance of conditions for heat removal from the fuel. This effect has been numerically modeled by means of ANSYS FLUENT code. The numerical results confirmed the existence of heat flux redistribution in the spot of oxide layer detachment. Since the phenomenon for breaking away of oxide layer appears at high fuel burnup the thermal loads are getting lower than in most thermally loaded fuel elements so the safety margins for fuel operation are being preserved.
机译:在测试燃料检查的框架内,已对一种燃料元件进行了辐照,以达到高燃耗水平(约60%)。辐照后检查证明,在高燃耗下,这涉及氧化物层从燃料元件包层中局部脱落。从包层表面单方面破坏强绝缘性能的氧化层可能会导致从燃料中除热的条件受到干扰。通过ANSYS FLUENT代码对该效果进行了数值建模。数值结果证实了在氧化层分离点处存在热通量的重新分布。由于在高燃料燃耗时会出现氧化层脱落的现象,因此热负荷比大多数热负荷燃料元件的热负荷要低,因此可以保持燃料运行的安全裕度。

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