首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >DESIGN AND TESTING OF D.C. CONDUCTION PUMP FOR SODIUM COOLED FAST REACTOR
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DESIGN AND TESTING OF D.C. CONDUCTION PUMP FOR SODIUM COOLED FAST REACTOR

机译:钠冷快速反应器直流导电泵的设计和测试

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DC Conduction pump immersed in sodium forms a part of Failed Fuel Location Module (FFLM) of 500 MWe Fast Breeder Reactor (PFBR) currently under construction. FFLM housed in control plug of the reactor, is used to locate the failed fuel sub-assembly due to clad rupture in the fuel pin. The DC conduction pump sucks the sodium from the top of fuel sub-assemblies through the selector valve and pumps the sodium to hold up for detecting the presence of delayed neutrons. Presence of delayed neutron is the indication of failure in the sampled fuel sub-assembly. The DC Conduction Pump was chosen because of its low voltage operation (2 V) where argon/ alumina ceramic can provide required electrical insulation even at operating temperature of 560 ℃ without much complication on the manufacturing front. Sampling of sodium from top of different sub-assemblies is achieved by operation of selector valve in-conjunction with the drive motor. FFLM requires the pump to be immersed in sodium pool at ~560 ℃ located above the fuel sub-assemblies in the reactor. The Pump of 0.36 m~3/h capacity and developing 1.45 Kg/ cm~2 pressure was designed, manufactured and tested. The DC Conduction Pump has a stainless steel duct filled with liquid sodium, which is to be pumped. The stainless steel duct is kept in magnetic field obtained by means of electromagnet. The electromagnet is made of soft iron and the coil made of copper conductor surrounds the yoke portion of electromagnet. The external DC source of 2000 Amps, 2 Volt is used to send current through sodium placed in the stainless steel duct and the same current is sent through copper coil of electromagnet for producing required magneto motive force, which in turn produces required magnetic field. The interaction of current in sodium (placed in stainless steel duct) and magnetic field produced by the electromagnet in the duct region produces pumping force in the sodium. Electromagnet, copper coil, stainless steel duct, copper bus bar etc. are encapsulated in stainless steel shell. Hydraulic characteristics, efficiency, cavitation free operation at operating temperatures was ascertained by conducting tests in sodium loop called Large Component Test Rig (LCTR). The pump was also endurance tested for 750 hrs. The performance tests on DC Conduction Pump indicate that the pump meets the target specification at reactor operating condition. This paper deals with design, construction and performance testing of DC Conduction Pump.
机译:浸入钠中的直流电导泵构成了目前正在建造的500 MWe快速增殖反应堆(PFBR)的故障燃料定位模块(FFLM)的一部分。 FFLM装在反应堆的控制塞中,用于定位由于燃料销钉包层破裂而导致的故障燃料子组件。直流传导泵通过选择阀从燃料组件顶部吸取钠,然后泵送钠以保持滞后状态,以检测延迟中子的存在。中子存在延迟是所采样的燃料子组件发生故障的指示。之所以选择直流传导泵,是因为其低电压运行(2 V),其中氩气/氧化铝陶瓷即使在560℃的工作温度下也可以提供所需的电绝缘,而在制造方面没有太多复杂性。通过选择阀与驱动电机的配合操作,可以从不同子组件的顶部对钠进行采样。 FFLM要求将泵浸没在反应堆燃料组件上方〜560℃的钠池中。设计,制造和测试了容量为0.36 m〜3 / h且压力为1.45 Kg / cm〜2的泵。直流传导泵具有一个装有液体钠的不锈钢管道,该管道将被泵送。不锈钢导管保持在通过电磁体获得的磁场中。电磁铁由软铁制成,铜导体制成的线圈围绕电磁铁的磁轭部分。外部的2000安培,2伏特的直流电源用于通过设置在不锈钢导管中的钠提供电流,而相同的电流通过电磁体的铜线圈发送以产生所需的磁动力,进而产生所需的磁场。钠中的电流(放置在不锈钢管中)与电磁体在管区域中产生的磁场的相互作用会在钠中产生泵浦力。电磁体,铜线圈,不锈钢风管,铜母线等被封装在不锈钢外壳中。通过在钠回路中进行的称为大型部件试验台(LCTR)的测试,可以确定在工作温度下的液压特性,效率,无气蚀的运行情况。泵还经过了750小时的耐久测试。直流电导泵的性能测试表明,该泵在反应堆运行条件下符合目标规格。本文涉及直流传导泵的设计,构造和性能测试。

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