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COMMISSIONING OF CIRCE FACILITY FOR SGTR EXPERIMENTAL INVESTIGATION FOR HLMRS AND PRE-TEST ANALYSIS BY SIMMER-IV CODE

机译:SGTR HLMRS实验研究的循环装置的调试和SIMMER-IV编码的预测试分析

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In the framework of the European Commission MAXSIMA project, a large-scale test section, aiming to experimentally investigate the Steam Generator Tube Rupture (SGTR) postulated event, in a relevant configuration for Gen IV MYRRHA reactor, was implemented in the large pool CIRCE facility at ENEA CR Brasimone. The test section is mainly composed by four tube bundles of 31 tubes. Each one of which constitutes a full scale portion of the tube bundle of the Primary Heat eXchanger (PHX) of MYRRHA plant. The bundles are set in 6 inch tubes with a lower and upper tube plate, absolving structural tasks. Water flows upwards in the central tube at 200°C, 16 bar and about 0.1 kg/s, the first rank of six tubes is pressurized at 16 bar by argon for feedbacks on possible domino effect and the outer ranks are composed by opened tubes at the lower and upper end. Lead Bismuth Eutectic alloy (LBE), at 350°C under a cover gas of argon at about 1 bar, flows downwards shell side of the bundle, pushed by a pumping system composed by centrifugal and jet pumps connected in series, for reaching about 80 kg/s. Water tube is fed by external tank and supply line. Two regulation valves and one isolation valve are set for water pressure and mass flow rate regulation and interruption, respectively. Reached the water and LBE stationary conditions of MYRRHA PHX, in terms of pressure, temperature and mass flow rate, the central water tube is pulled upwards by an external hydraulic jack, realizing the tube rupture. Its position is well defined on the tube by a notch worked with machine tools. Four SGTR tests are foreseen to be carried out, one at a time, in the four tube bundles, excluding the necessity to extract the test section from CIRCE main vessel after each test. This paper presents the overall components implemented for carrying out the tests. In particular, the assembling of the whole test section, gas line for pressurizing the water tank and supply line and depressurization line of CIRCE cover gas. It discharges into a 1500 L tank, for collecting possible discharged LBE particulate. The Data acquisition and Control System (DACS) is realized in LabVIEW environment. It allows the remote control of the facility during the preparation phases, tests execution and safe shutdown. PID controllers are implemented for water heating and pressurization and water and LBE mass flow rate regulation. The main commissioning tests carried out and acquired variables by DACS, aiming to check the suitable functioning of all components, are presented. The pre-test numerical analysis of the SGTR experiments in CIRCE facility is performed by 3D Cartesian SIMMER-IV code. The obtained results show that the developed model is able to reach the initial condition of the tests in agreement with MYRRHA stationary conditions. Once reached, the water injection into LBE pool was numerically simulated. The pressure in CIRCE cover gas increased up to the opening rupture disk value of 6 bar in about 10 s, providing a grace period more than enough for carrying out the tests (3 or 5 s) in safe conditions.
机译:在欧盟委员会MAXSIMA项目的框架内,大型试验室在大型CIRCE设施中实施了一个大型试验区,旨在对IV代MYRRHA反应堆的相关配置进行实验性研究蒸汽发生器管破裂(SGTR)假定的事件。在ENEA CR Brasimone。测试部分主要由31管的四个管束组成。其中的每一个都构成MYRRHA工厂的一次换热器(PHX)的管束的满刻度部分。捆束固定在带有上下管板的6英寸管中,从而避免了结构性工作。水在200°C,16 bar和约0.1 kg / s的中央管中向上流动,六管的第一级通过氩气在16 bar加压,以反馈可能的多米诺效应,而外部级由打开的管组成。下端和上端。铅铋共晶合金(LBE)在350°C的氩气保护下在约1 bar的压力下向下流到管束的壳侧,由串联连接的离心泵和射流泵组成的泵系统推动,达到约80千克/秒水管由外部水箱和供水管线供水。分别设置了两个调节阀和一个隔离阀,分别用于水压和质量流量的调节和中断。达到MYRRHA PHX的水和LBE固定条件时,就压力,温度和质量流率而言,中央水管被外部液压千斤顶向上拉,从而导致水管破裂。它的位置通过机床上的槽口在管子上很好地确定了。预计将在四个管束中一次执行四个SGTR测试,但每次测试后不必从CIRCE主容器中提取测试部分。本文介绍了用于执行测试的总体组件。尤其是整个测试部分,给水箱加压的气体管线以及CIRCE覆盖气体的供应管线和减压管线的组装。它排放到1500 L的罐中,以收集可能排放的LBE颗粒。数据采集​​与控制系统(DACS)在LabVIEW环境中实现。它允许在准备阶段,测试执行和安全关机期间对设施进行远程控制。 PID控制器用于水的加热和加压以及水和LBE质量流量的调节。介绍了DACS进行的主要调试测试和获取的变量,旨在检查所有组件的功能是否正常。通过3D笛卡尔SIMMER-IV代码对CIRCE设施中的SGTR实验进行测试前的数值分析。获得的结果表明,所开发的模型能够达到与MYRRHA平稳条件一致的测试初始条件。一旦达到,就对注入LBE池中的水进行了数值模拟。在大约10 s内,CIRCE覆盖气体中的压力增加到6 bar的开启破裂盘值,为安全条件下的测试(3或5 s)提供了足够的宽限期。

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