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The Heat Exchange and Stress Distributing of Expansive Soil in Site

机译:现场膨胀土的热交换与应力分布

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Expansive soil is called as "problem soil", which has a characteristic of swelling by absorbing water and shrinking by losing water. So buildings and sub-grade which are built on expansive soil, are easier to damage for lager deformation. Due to the large-scale urban construction, ground surface was covered in a wide range. For example, in tropics and subtropics areas, the water transfer in the expansive soil is influenced by the gradient of temperature, which is different between the central area under the road surface and road-side bare area. Because of the hysteresis of water transfer, the water content distributing is not uniform, which lead to the different swell-shrink performance in different zone, herewith will change some parameters of the expansive soil and finally affect its stress field and the displacement field. Take the road as the example: The road is a strip belt-shaped coverage. Both in dry and wet season, the thermodynamic field and water-flowing field is uneven between the central area under the road surface and road-side bare area, so the displacement field and the stress field on the crosssection under the road is uneven. Under the load of vehicle, the non-uniformity stress distributing in the soil is further aggravated, and the same to the displacement in the underlying sub-grade, which is a significant factor in aggravating the dehiscence of road surface. Comparing to general soil, expansive soil has a completely different distribution of temperate field and water-flowing condition because of its swell-shrink characteristic. By studying on the relationship between the thermodynamic field and the stress-strain in the expansive soil, it can find out how the climate affect the engineering expansive soil, and provide the theory basis for improving expansive soil.
机译:膨胀土被称为“问题土”,其特征是通过吸收水而膨胀,而由于失去水而收缩。因此,在膨胀土壤上建造的建筑物和路基更容易因较大的变形而损坏。由于大规模的城市建设,地表被广泛覆盖。例如,在热带和亚热带地区,膨胀土壤中的水分转移受到温度梯度的影响,温度梯度在路面下方的中心区域和路旁的裸露区域之间是不同的。由于输水的滞后作用,含水量分布不均匀,导致不同区域的胀缩性能不同,从而改变膨胀土的某些参数,最终影响其应力场和位移场。以道路为例:道路是带状的覆盖物。在干湿两季,路面下方中心区域和路侧裸露区域之间的热力学场和水流场都是不均匀的,因此,路面下横断面的位移场和应力场是不均匀的。在车辆的载荷作用下,分布在土壤中的非均匀应力会进一步加剧,并且与下层路基的位移相同,这是加剧路面开裂的重要因素。与普通土壤相比,膨胀土具有膨胀-收缩特性,因此在温度场和水流条件上具有完全不同的分布。通过研究膨胀土的热力学场与应力-应变之间的关系,可以发现气候如何影响工程膨胀土,并为膨胀土的改良提供理论依据。

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