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首页> 外文期刊>High temperature: English translation of teplofizika vysokikh temperatur >The influence of thermal relaxation and thermal damping on transient processes with cyclic boundary conditions
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The influence of thermal relaxation and thermal damping on transient processes with cyclic boundary conditions

机译:循环边界条件的瞬态过程热弛豫和热阻对瞬态过程的影响

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摘要

Variants of the differential equation of heat conduction in a solid body, which follow from the Fourier and Cattaneo-Vernotte hypotheses and the Lykov equation, are considered. A boundary value problem describing temperature fields in a body (cylinder) upon cyclic heat transfer with cold and hot media is formulated. An analytical solution to the boundary value problem with a hyperbolic differential equation of heat conduction with allowance for thermal relaxation and temperature damping with cyclic boundary conditions of the third kind is given. The thermal transient processes calculated by the classical heat conductance equation and hyperbolic equation of heat conduction on the axis of the cylinder at different values of factors such as the ratio of the thermal damping time to the thermal relaxation time, the duration of cyclic periods, the Fourier relaxation number, and the Biot number are compared. A conclusion is made that the theory of regenerative air heater should be improved by taking into account thermal relaxation and thermal damping in the nozzle and measurements of the thermal relaxation and thermal damping times of the corresponding materials.
机译:考虑了从傅立叶和Cattaneo-vernotte假设和Lykov方程的固体中导热的差动方程的变形例。制定了在循环热传递与冷热介质上的循环热传递时描述体(气缸)中的温度场的边界值问题。给出了用热弛豫和温度阻尼的热传导的双曲分子差动方程对边界值问题的分析解决方案,具有第三种循环边界条件。通过经典导热方程和热传导的热瞬态过程,在汽缸轴上的热传导中的不同因素值,诸如热阻时间与热松弛时间的比率,循环时段的持续时间傅里叶放松号码,比较Biot数。结论是通过在喷嘴中考虑热弛豫和热阻和对应材料的热弛豫和热阻尼时间的测量来改善再生空气加热器理论。

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