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首页> 外文期刊>Journal of nuclear engineering and radiation science >Experimental Study on Melt Coolability Capability of Calandria Vault Water During Severe Accident in Indian PHWRs for Prolonged Duration
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Experimental Study on Melt Coolability Capability of Calandria Vault Water During Severe Accident in Indian PHWRs for Prolonged Duration

机译:Calandria Vault水在印度PHWR延长期间严重事故中熔融冷却性能力的试验研究

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The present experimental investigation in a scaled facility of an Indian pressurized heavy water reactors (PHWRs) is focused on the heat transfer behavior from the calandria vessel (CV) to the calandria vault during a prolonged severe accident condition in the presence of decay heat. The transient heat transfer simulates the conditions from single phase to boiling in the calandria vault water, partial uncovery of the CV due to boil off of water in the vault, and refill of calandria vault. Molten borosilicate glass was used as the simulant due to its comparable heat transfer characteristics similar to prototypic material. About 60?kg of the molten material was poured into the test section at about 1100?°C. Decay heat in the melt pool was simulated by using high watt cartridge type heaters. The temperature distributions inside the molten pool across the CV wall thickness and vault water were measured for prolonged period which can be divided into various phases, viz., single phase natural convection heat transfer in calandria vault, boiling heat transfer in calandria vault, partial uncovery of CV, and refilling calandria vault. Experimental results showed that once the crust formed, the inner vessel temperature remained very low and vessel integrity maintained. Even boiling of calandria vault water and uncovery of CV had negligible effect on melt, CV, and vault water temperature. The heat transfer coefficients on outer vessel surface were obtained and compared with various conditions.
机译:在印度加压重水反应器(PHWRS)的缩放设施中的本实验研究重点是在衰减热的延长的严重事故情况下从Calandria容器(CV)到Calandria拱顶的传热行为。瞬态传热模拟了单相到Calandria Vault水中的条件,因为煮在拱顶煮沸的水中,CV的部分揭示,并补充了Calandria Vault。由于其类似于原型材料的可比传热特性,使用熔融硼硅酸盐玻璃作为模拟剂。将约60克隆的熔融材料倒入约1100℃的试验部分中。通过使用高瓦盒式加热器模拟熔池中的衰变热量。测量了CV壁厚度和穹窿水的熔池内的温度分布,延长时间,可分为各个阶段,Ziz,Calandria拱顶,Calandria拱顶的单相自然对流传热,沸腾的热量转移,部分未展开简历,并重新填充卡兰里亚金库。实验结果表明,一旦形成外壳,内部容器温度仍然非常低,维持血管完整性。即使是Calandria Vault水的沸腾也是对CV的揭示效果可忽略不计,对熔体,简介和拱顶水温。获得外部血管表面的传热系数并与各种条件进行比较。

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