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Development and validation of a PWR on-line power-distribution monitoring system NECP-ONION

机译:PWR在线配电监控系统NECP-ONION的开发和验证

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A 3D on-line power-distribution monitoring system NECP-ONION has been developed and validated in this paper. It includes plant data processing, core calculation and on-line power-distribution monitoring. The diagnosis and treatment of the detector failure, core state-parameter calculation and monitoring method has been investigated to address the key issues of the on-line monitoring system. Detector failure is diagnosed by comparing with average measurements and monitored responses. The fuel-burnup calculation is performed based on the macro-depletion method due to its high efficiency. The harmonics expansion method is adopted as the major monitoring method due to its long history of maturity and success. In the investigation of the harmonics expansion method, the determination of expansion orders and choice of expansion basis functions have also been studied. The on-line monitoring system NECP-ONION was verified and validated by the diffusion calculation and real detector measurements for the BEAVRS benchmark. The verification shows that, for BEAVRS cycle 1 with a complex power history, the monitoring power distributions are almost identical to the reference power distributions once the detector "measurements" are derived from the diffusion calculation. The validation shows that differences between monitored and measured ones are small for most of the burnup steps from BOC to EOC, except for a few abnormal discrepancies at specific burnup steps. Investigation shows that those discrepancies are caused by the detector failure, complex operation history, unknown control rod positions, and unidentified operation events which cannot be modeled directly in the simulation. Two improvements have been studied to increase the monitoring accuracy of the NECP-ONION system. The numerical results indicate that these two improvements are useful to increase the monitoring accuracy for the BEAVRS benchmark. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文开发并验证了3D在线配电监控系统NECP-ONION。它包括工厂数据处理,核心计算和在线配电监控。研究了探测器故障的诊断和处理,核心状态参数的计算和监测方法,以解决在线监测系统的关键问题。通过与平均测量值和监控响应进行比较来诊断检测器故障。由于其高效率,燃料消耗量的计算是基于宏消耗方法进行的。谐波扩展法由于其悠久的历史和成功的历史而被用作主要的监视方法。在研究谐波展开方法时,还研究了展开阶数的确定和展开基函数的选择。在线监测系统NECP-ONION已通过BEAVRS基准的扩散计算和实际检测器测量进行了验证和验证。验证表明,对于具有复杂功率历史的BEAVRS循环1,一旦从扩散计算中得出检测器“测量值”,监控功率分布几乎与参考功率分布相同。验证表明,从BOC到EOC的大多数燃耗步骤中,被监视和测量值之间的差异很小,除了特定燃耗步骤中的一些异常差异之外。调查表明,这些差异是由检测器故障,复杂的操作历史,未知的控制杆位置以及不确定的操作事件引起的,这些无法在模拟中直接建模。为了提高NECP-ONION系统的监视精度,已进行了两项改进研究。数值结果表明,这两项改进对于提高BEAVRS基准的监视精度很有用。 (C)2017 Elsevier B.V.保留所有权利。

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