1996
DOI: 10.1007/bf02418721
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Center for thermophysical data of the ministry of atomic energy of the Russian federation

Abstract: The Center for Thermophysical Data (CTD) [1] was founded in 1980. In 1986, at the decision of Soviet State Committee on Atomic Energy, it was raised to the status of an industry center, and as such it is a unit of the industry system of standard reference data.The main task of the Center is to provide scientific and design studies of reliable information about the thermohydraulics of nuclear power plants. To fulfil this mission, a technology of preparation, processing, and analysis of information, making it p… Show more

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Cited by 2 publications
(4 citation statements)
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“…The temperature dependence of dynamic viscosity, specific heat, density, and thermal conductivity was considered, as shown in Figure 8 [ 17 , 27 , 28 ]. Other property parameters of Ti6Al4V are listed in Table 3 [ 20 , 21 , 22 , 27 , 29 ].…”
Section: Numerical Modelmentioning
confidence: 99%
See 2 more Smart Citations
“…The temperature dependence of dynamic viscosity, specific heat, density, and thermal conductivity was considered, as shown in Figure 8 [ 17 , 27 , 28 ]. Other property parameters of Ti6Al4V are listed in Table 3 [ 20 , 21 , 22 , 27 , 29 ].…”
Section: Numerical Modelmentioning
confidence: 99%
“…In this model, the CW laser with top-hat energy distribution is applied to the material surface, and then the pulse laser with a Gaussian energy distribution is applied to the material surface after cooling for 500 ms. Therefore, the heat flux on boundary 2 is written as [ 29 ]: where is the CW laser heat source, is the CW laser power, is the CW laser spot, is the position of the CW laser, is the beginning position of the CW laser, and and are the velocity and time of the CW laser, respectively. Similarly, is the pulse laser heat source with a Gaussian distribution, is the pulse laser power, is the radius of the pulse laser, and is the velocity of the pulse laser.…”
Section: Numerical Modelmentioning
confidence: 99%
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“…Os aços austeníticos são considerados como isotrópicos em relação às Os aços estabilizados de baixo carbono da série 300, apresentam uma expansão térmica média de 16,6 µm/(m-K); na faixa térmica de 20 °C a 100 °C, a função é crescente com a temperatura. Essa relação é a média dos seguintes aços 321, 347, 348[69]. Se houver a expansão da faixa de temperatura de 20 °C a 600 Zircaloy, os códigos de desempenho utilizam a correlação de Mehan-Wiesinger proposta, em 1961, para temperaturas abaixo de 799,85 ºC.…”
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