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首页> 外文期刊>The international journal of pavement engineering >One-dimensional temperature profile prediction in multi-layered rigid pavement systems using a separation of variables method
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One-dimensional temperature profile prediction in multi-layered rigid pavement systems using a separation of variables method

机译:基于变量分离法的多层刚性路面系统一维温度分布预测

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摘要

This paper presents an analytical solution for prediction of the one-dimensional (1D) time-dependent temperature profile in a multi-layered rigid pavement system. Temperature at any depth in a rigid pavement system can be estimated by using the proposed solution with limited input data, such as pavement layer thicknesses, material thermal properties, measured air temperatures and solar radiation intensities. This temperature prediction problem is modelled as a boundary value problem governed by the classic heat conduction equations, and the air temperatures and solar radiation intensities are considered in the surface boundary condition. Interpolatory trigonometric polynomials, based on the discrete least squares approximation method, are used to fit the measured air temperatures and solar radiation intensities during the time period of interest. The solution technique employs the complex variable approach along with the separation of variables method. A FORTRAN program was coded to implement the proposed 1D analytical solution. Field model validation demonstrates that the proposed solution generates reasonable temperature profile in the concrete slab for a four-layered rigid pavement system during two different time periods of the year.
机译:本文提出了一种用于预测多层刚性路面系统中一维(1D)时间相关温度曲线的解析解决方案。刚性路面系统中任何深度的温度都可以使用建议的解决方案通过有限的输入数据进行估算,例如路面层厚度,材料热性能,测得的气温和太阳辐射强度。该温度预测问题被建模为由经典热传导方程式控制的边界值问题,并且在表面边界条件下考虑了空气温度和太阳辐射强度。基于离散最小二乘近似法的插值三角多项式,用于拟合感兴趣的时间段内测得的气温和太阳辐射强度。解决方案技术采用复杂变量方法以及变量分离方法。一个FORTRAN程序被编码为实现建议的一维分析解决方案。现场模型验证表明,在一年的两个不同时间段内,针对四层刚性路面系统,所提出的解决方案可在混凝土板中生成合理的温度曲线。

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