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Transient Safety Analysis for Accelerator Driven System with Gas-lift Pump

机译:加速器驱动系统与燃气泵泵的瞬态安全性分析

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Accelerator driven system (ADS), which combines a sub-critical reactor, a high energy proton accelerator, a spallation target and gas-lift pump, has a remarkable potential for transmutation of the long-lived nuclear waste. For the design of ADS, a major part is about safety investigations for transient behaviors under conditions leading to severe accidents. In this study, using Gear algorithm, TASAR (Transient analysis of Simplified ADS Reactor) code has been developed to evaluate the transient analysis of a simplified accelerator driven system with gas-lift pump, so as to describe the XADS(eXperimental ADS) specifics such as subcritical core, strong external neutron source and lead-bismuth-eutectic (LBE) coolant. Point reactor neutron kinetics model with six groups of delayed neutron is adopted for the solution of reactor power. All possible flow and heat transfer conditions are considered and the corresponding optional models are supplied in the theoretical calculations. As transient scenarios, the following cases are analyzed: Spurious beam trip (BT), unprotected beam overpower (UBOP), unprotected transient overpower (UTOP), unprotected loss of flow (ULOF). Meanwhile, the calculation results by TASAR code show good agreement with experiment results of NACIE facility. The results reveal that, the accelerator and gas-lift pump influence the loop mass flow rate and core temperatures of research system in this paper greatly. Besides, the present simulation consequences represent that the simplified accelerator driven system with gas-lift pump has a very good safety performance, and further design and safety optimizations are under consideration.
机译:加速器驱动系统(ADS)结合了亚临界电抗器,高能质子加速器,介质靶和燃气泵泵,具有显着的长寿核废料嬗变的潜力。对于广告的设计,主要部分是关于在导致严重事故的条件下对瞬态行为的安全调查。在这项研究中,使用齿轮算法,TASAR(简体ADS反应器的瞬态分析)码已经被开发,以评估与气体提升泵的简化加速器驱动系统的瞬态分析,以便描述XADS(实验ADS)的细节如作为亚临界芯,强外中子源和铅 - 铋 - 共晶(LBE)冷却剂。采用六组延迟中子的点反应堆中子动力学模型用于反应器功率溶液。考虑所有可能的流量和传热条件,并在理论计算中提供相应的可选模型。作为瞬态情景,分析以下病例:虚拟光束跳闸(BT),未受保护的光束折叠(UBOP),无保护的瞬态过度功率(UTOP),无保护的流量丧失(ULOF)。同时,Tasar Code的计算结果与Nacie设施的实验结果显示了良好的一致性。结果表明,加速器和燃气泵泵大大影响了本文研究体系的环路质量流速和核心温度。此外,目前的模拟后果代表了具有燃气升降泵的简化加速器驱动系统具有非常好的安全性能,并正在考虑进一步的设计和安全优化。

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