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Laboratory and Numerical Investigation of Microwave Heating Properties of Asphalt Mixture

机译:沥青混合料微波加热特性的室内及数值研究

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摘要

Microwave heating is an encouraging heating technology for the maintenance, recycling, and deicing of asphalt pavement. To investigate the microwave heating properties of asphalt mixture, laboratory tests and numerical simulations were done and compared. Two types of Stone Mastic Asphalt (SMA) mixture samples (with basalt aggregates and steel slag aggregates) were heated using a microwave oven for different times. Numerical simulation models of microwave heating of asphalt mixture were developed with finite element software COMSOL Multiphysics. The main thermal and electromagnetic properties of asphalt mixture, served as the model input parameters, were measured through a series of laboratory tests. Both laboratory-measured and numerical simulated surface temperatures were recorded and analyzed. Results show that the replacement of basalt aggregates with steel slag aggregates can significantly increase the microwave heating efficiency of asphalt mixture. Numerical simulation results have a good correlation with laboratory test results. It is feasible to use the developed model coupling electromagnetic waves with heat transfer to simulate the microwave heating process of asphalt mixture.
机译:微波加热是一种令人鼓舞的加热技术,用于沥青路面的维护,回收和除冰。为了研究沥青混合料的微波加热特性,进行了实验室测试和数值模拟并进行了比较。使用微波炉将两种类型的石乳胶沥青(SMA)混合物样品(含玄武岩骨料和钢渣骨料)加热不同的时间。利用有限元软件COMSOL Multiphysics建立了沥青混合料微波加热的数值模拟模型。通过一系列实验室测试,测量了沥青混合料的主要热和电磁性能(作为模型输入参数)。记录并分析了实验室测量的表面温度和数值模拟的表面温度。结果表明,用钢渣骨料代替玄武岩骨料可以显着提高沥青混合料的微波加热效率。数值模拟结果与实验室测试结果具有良好的相关性。使用开发的将电磁波与热传递耦合的模型来模拟沥青混合料的微波加热过程是可行的。

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