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Effects of macro-pores on water flow in coastal subsurface drainage systems

机译:大孔隙对沿海地下排水系统水流的影响

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摘要

Leaching through subsurface drainage systems has been widely adopted to ameliorate saline soils. The application of this method to remove salt from reclaimed lands in the coastal zone, however, may be impacted by macro-pores such as crab burrows, which are commonly distributed in the soils. We developed a three-dimensional model to investigate water flow in subsurface drainage systems affected by macro-pores distributed deterministically and randomly through Monte Carlo simulations. The results showed that, for subsurface drainage systems under the condition of continuous surface ponding, macro-pores increased the hydraulic head in the deep soil, which in turn reduced the hydraulic gradient between the surface and deep soil. As a consequence, water infiltration across the soil surface was inhibited. Since salt transport in the soil is dominated by advection, the flow simulation results indicated that macro-pores decreased the efficiency of salt leaching by one order of magnitude, in terms of both the elapsed time and the amount of water required to remove salt over the designed soil leaching depth (0.6 m). The reduction of the leaching efficiency was even greater in drainage systems with a layered soil stratigraphy. Sensitivity analyses demonstrated that with an increased penetration depth or density of macro-pores, the leaching efficiency decreased further. The revealed impact of macro-pores on water flow represents a significant shortcoming of the salt leaching technique when applied to coastal saline soils. Future designs of soil amelioration schemes in the coastal zone should consider and aim to minimize the bypassing effect caused by macro-pores.
机译:通过地下排水系统的浸提已被广泛用于改善盐渍土壤。但是,这种方法从沿海开垦土地上去除盐分的应用可能会受到大孔(例如通常在土壤中分布的蟹洞)的影响。我们开发了一个三维模型,以通过蒙特卡洛模拟研究确定性和随机分布的大孔隙影响的地下排水系统中的水流。结果表明,在连续地表淤积条件下的地下排水系统中,大孔隙增加了深层土壤的水力压头,进而降低了地表与深层土壤的水力梯度。结果,抑制了水在土壤表面的渗透。由于盐分在土壤中的迁移主要由对流控制,流动模拟结果表明,大孔在经过时间和去除盐分所需的水量方面,使盐分浸出的效率降低了一个数量级。设计的土壤浸出深度(0.6 m)。在具有分层土壤地层的排水系统中,浸出效率的降低甚至更大。敏感性分析表明,随着渗透深度或大孔密度的增加,浸出效率进一步降低。当应用于沿海盐渍土壤时,大孔对水流的影响已显露出盐浸技术的重大缺陷。沿海地区土壤改良方案的未来设计应考虑并旨在最大程度地减少大孔造成的旁路效应。

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