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corium    
n. 真皮

真皮

corium
n 1: the deep vascular inner layer of the skin [synonym: {dermis},
{corium}, {derma}]


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  • An investigation of corium in Fukushima Daiichi Unit-1 accident
    We can notice from the tables that, the total corium activity10 years post –accident was 6 046E+17Bq and the specific activity was about 4 3E+12Bq kg, assuming homogeneous mixture and 50% of the volatile radio-nuclides Also, the total corium activity 50 years post-accident was 1 89 E+17Bq and the specific activity was about1 35E+12Bq kg
  • Study on corium-concrete interaction, heat transfer, and concrete . . .
    The concrete ablation modeling is a complex process as it depends on various parameters including (a) decay heat, (b) mass flux from molten corium, (c) different reactions during corium and concrete interaction, (d) heat transfer and slag movement into the molten corium, and (f) transfer of heat to the surroundings
  • Natural convection heat transfer in corium pools: A review work of . . .
    In-vessel corium is a mixture made up from molten core materials, which are composed of (U, Zr)O 2 + Zr + Fe + B 4 C + fission products The corium is characterized by the degree of oxidization of zirconium and U Zr ratio and has a solidus-liquidus temperature of 1500–2850 °C (Sehgal, 2012) So far, due to technological limitations, only a
  • FARO tests corium-melt cooling in water pool: Roles of melt superheat . . .
    Extensive studies have aimed at articulating the possible scenario of the corium melt, but the primary focuses have been limited to only part of the melt fate, for example, the melt jet breakup phenomena and interaction with the water pool during the particle transit in the pool (Cheng et al , 2015, Dombrovsky and Dinh, 2008, Matsuo et al
  • Corium melt researches at VESTA test facility - ScienceDirect
    The ex-vessel core catcher [Passive Ex-vessel corium retaining and Cooling System (PECS)] is installed to retain the corium in the reactor cavity of the EU-APR1400 [14] The core catcher concept incorporates a number of engineering solutions, such as thin-layer corium spreading for better cooling, retention of the melt in a water-cooled steel
  • Experimental contribution to the corium thermodynamic modelling – The U . . .
    Many phenomena take place during Molten Corium Concrete Interaction MCCI (Journeau and Piluso, 2012): high temperature concrete decomposition, heat transfer due to gas bubbles agitation, formation of several phases, oxidation of metals, etc Several studies on the interaction between corium and concrete were published starting from the 1980s
  • Viscosity models for corium melts - ScienceDirect
    We calculated the viscosity of basalts and basalt with 18%wt of UO 2, and then, pending direct measurements of liquid corium viscosity, we tried to determine the range of applicability of this method to corium-concrete mixtures In the second part, we looked for an apparent viscosity model which takes account of the increase of solid volume
  • Ex-vessel corium spreading: results from the VULCANO spreading tests
    Twelve high-temperature spreading tests have been performed and analyzed The main experimental results are the good spreadability of corium–concrete mixtures having large solidification ranges even with viscous silicic melts, the change of microstructure due to cooling rates, the occurrence of a large thermal contact resistance at the corium–substrate interface, the presence of a steep
  • Influence of corium temperature, concrete composition and water . . .
    Thus, as the corium viscosity increases, its transition velocity decreases Thus, it impedes the transfer of heat by reducing the corium coefficient of convective heat transfer Similarly, high viscosity corium decreases the amount of molten corium that leaks through the crust vent holes Thus, cooling efficiency is reduced
  • Dissolving microneedles: Applications and growing therapeutic potential
    Corium claims to have established GMP manufacturing facilities, systems for scale-up, and cost-effective manufacturing processes to support early-stage through to clinical development LTS Lohamann micro array patch technology is also based on dissolvable microneedles, and seeks to incorporate small molecules, large molecule biologics, and





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