首页> 外文期刊>Fusion Science and Technology >COUPLING DISCRETE ELEMENT MODELS OF CERAMIC BREEDER PEBBLE BEDS TO THERMOFLUID MODELS OF HELIUM PURGE GAS USING VOLUME-AVERAGED NAVIER-STOKES AND THE LATTICE-BOLTZMANN METHOD
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COUPLING DISCRETE ELEMENT MODELS OF CERAMIC BREEDER PEBBLE BEDS TO THERMOFLUID MODELS OF HELIUM PURGE GAS USING VOLUME-AVERAGED NAVIER-STOKES AND THE LATTICE-BOLTZMANN METHOD

机译:体积平均Navier-Stokes和Lattice-Boltzmann方法将陶瓷容器卵石床的离散元素模型与氦吹气热流模型耦合

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摘要

Pebble-scale models of the interactions inside packed beds are critical for determining alterations to thermophysical properties in the wake of changes to the packed bed due to cracking, sintering, or creep-deformation of the ceramic pebbles. Simultaneously, the helium purge gas flow through the pebble bed can change; while not specifically playing a role as coolant, it does have an impact on the thermal transport in the volumetrically heated bed We present numerical tools that are capable of resolving pebble-scale interactions coupled to bed-scale thermofluid flow. The new computational techniques are used to show that maximum temperatures in pebble beds do not increase drastically in spite of the significant amount of cracking induced in our numerical model. Furthermore a complete flow field of helium moving through densely packed spheres is modeled with the lattice-Boltzmann method to reveal the strong effect of slow-moving helium gas on flattening temperature profiles in pebble beds with nuclear heating.
机译:填充床内部相互作用的卵石模型对于确定由于陶瓷卵石的开裂,烧结或蠕变引起的填充床变化后的热物理性质变化至关重要。同时,流经卵石床的氦吹扫气体会发生变化。虽然没有专门扮演冷却剂的角色,但它确实会对体积加热床中的热传输产生影响。我们提供了能够解决与床级热流体流耦合的卵石级相互作用的数值工具。新的计算技术被用来表明,尽管在我们的数值模型中产生了大量的开裂,但卵石床中的最高温度并未急剧增加。此外,用格-玻尔兹曼方法对氦流通过紧密堆积球体的完整流场进行了建模,以揭示缓慢移动的氦气对带核加热的卵石床扁平温度分布的强大影响。

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  • 来源
    《Fusion Science and Technology》 |2015年第2期|288-294|共7页
  • 作者单位

    Univ Calif Los Angeles, Mech & Aerosp Engn, Los Angeles, CA 90095 USA;

    Univ Calif Los Angeles, Mech & Aerosp Engn, Los Angeles, CA 90095 USA;

    Univ Calif Los Angeles, Mech & Aerosp Engn, Los Angeles, CA 90095 USA;

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