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Effect of dissolution on the load-settlement behavior of shallow foundations

机译:溶出度对浅层基础荷载沉降行为的影响

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Mineral dissolution and solid-liquid phase change may cause settlement or affect the bearing capacity of shallow foundations. The effect of gradual grain dissolution on small-scale shallow foundation behavior is investigated using the discrete element method. Results show that dissolution is most detrimental during early stages, as initially contacting particles shrink and force chains must reform throughout the medium. Porosity tends to increase during dissolution and force chains evolve into strong localized forces with a honeycomb topology. Higher settlements are required to mobilize bearing resistance in post-dissolution sediments than in pre-dissolution ones. Subsurface mineral dissolution beneath a footing under load is the worst condition; in fact, settlements in such cases are higher than when a foundation load is applied on a sediment that has already experienced dissolution.
机译:矿物溶解和固液相变可能引起沉降或影响浅层基础的承载力。使用离散元方法研究了颗粒逐渐溶解对小规模浅层基础行为的影响。结果表明,在早期溶解是最有害的,因为最初接触的颗粒会收缩,并且力链必须在整个介质中重新形成。在溶解过程中孔隙率趋于增加,力链演变成具有蜂窝形拓扑的强局部力。与溶解前的沉积相比,需要更高的沉积来动员溶解后沉积物中的阻力。在负载下,立足下的地下矿物溶解是最坏的情况。实际上,在这种情况下的沉降比在已经溶解的沉积物上施加基础载荷时要高。

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