Kaczmarek Łukasz, Jastrzębska Małgorzata, Wejrzanowski Tomasz
Faculty of Building Services, Hydro and Environmental Engineering, Warsaw University of Technology, Nowowiejska 20, 00-653 Warsaw, Poland.
Faculty of Civil Engineering, Silesian University of Technology, Akademicka 5, 44-100 Gliwice, Poland.
Materials (Basel). 2022 Aug 26;15(17):5891. doi: 10.3390/ma15175891.
In the field of soil drying methods, rapid microwave heating is progressively replacing conventional techniques. Due to the specific heat transport caused by microwaves, the drying process can significantly modify soil structure, which, in turn, can influence mechanical and filtration characteristics. In this study, we compared structural changes of exemplary non-cohesive (medium quartz sand (MSa)) and cohesive soil (silty clay mainly composed of kaolinite (siCl)). The sample materials were subjected to three different drying methods: air-drying, conventional oven (CO) drying, and microwave oven (MO) drying (MO). Soil structure was studied using X-ray microtomography (XµCT) and described in detail by image analysis methods. The study showed that the analyzed types of heating had a negligible effect on the structure of the sands, but a significant impact in the case of silty clay. Such a phenomenon is discussed and explained in this paper. The study advances the testing of soils microwave drying in a geotechnical laboratory.
在土壤干燥方法领域,快速微波加热正逐渐取代传统技术。由于微波引起的特定热传输,干燥过程会显著改变土壤结构,进而影响其力学和过滤特性。在本研究中,我们比较了典型无粘性土(中石英砂(MSa))和粘性土(主要由高岭石组成的粉质粘土(siCl))的结构变化。对样品材料采用了三种不同的干燥方法:风干、传统烘箱(CO)干燥和微波炉(MO)干燥。使用X射线显微断层扫描(XµCT)研究土壤结构,并通过图像分析方法进行详细描述。研究表明,所分析的加热类型对砂的结构影响可忽略不计,但对粉质粘土的结构有显著影响。本文对这一现象进行了讨论和解释。该研究推动了岩土工程实验室中土壤微波干燥的测试。