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1)  Depressurization Accident
失压事故
2)  Loss of cooling and depressurization accident
失冷失压事故
3)  depressurisation accident
失压事故,卸压事故
4)  accident loss
事故损失
1.
It is the gist of accidents managing and the important basis for safety management to analyze and evaluate the accident loss.
分析了事故损失的多属性特征,确定了属性指标和评价矩阵,建立了基于TOPSIS的事故损失综合评价模型,并进行了实证分析。
2.
In this paper the main content is the analysis of the information asymmetry of the accident loss and the several incidents asymmetric types are summed up in order to make better of the analysis of the accident loss.
本文研究的主要内容是分析企业事故损失中存在的信息不对称现象,并归纳出企业事故损失的几种不对称类型,以使企业的事故损失分析更完善,从而提高企业的安全管理水平。
5)  LOCA ['ləukə]
失水事故
1.
PWR LOCA Analysis with Condensation Reflux Model;
采用冷凝回流模型的压水堆失水事故分析
2.
Simulation of LOCA in the auxiliary primary loop system of nuclear power plant;
核动力装置一回路辅助系统失水事故的仿真研究
3.
Realistic Analysis of Intermediate and Small LOCA;
中小破口失水事故现实估算分析
6)  Loss of coolant accident
失水事故
1.
Loss of coolant accident is considered as design basis accident in the design of nuclear power plant.
失水事故是核电站设计的基准事故之一,是压水堆事故分析关注的重点。
2.
The momentum integral method is applied in the frame of safety analysis of pressure water reactors under hypothetical loss of coolant accident(LOCA) conditions to simulate numerically film condensation, rewetting and vaporization on the inner surface of a pressure water reactor containment.
采用动量积分方法分析压水堆发生失水事故时在安全壳的内表面上的液膜凝结、再浸润和蒸发过程。
3.
To evaluate the safety characteristics of pulsed reactor under LOCA (loss of coolant accident), an analytical model of LOCA is developed and an advanced code XPRLOCA with friendly interactive interface and real time simulation function is coded for simulating LOCA.
针对脉冲反应堆的特点 ,建立了脉冲反应堆失水事故的数学模型 ,编制了脉冲堆失水事故仿真分析软件XPRLOCA。
补充资料:反应堆失冷事故
分子式:
CAS号:

性质:当冷却剂回路管道或设备破裂,或冷却剂流量中断,造成堆芯失去冷却,可导致燃料元件的损坏和熔化。为防止失冷事故,堆内设有安全保护系统和堆芯事故冷却系统,保证一旦出现事故能及时发现,迅速停堆,注入加硼水和大量补充水,排出堆内余热。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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