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首页> 外文期刊>The Science of the Total Environment >Investigation of sub-slab pressure field extension in specified granular fill materials incorporating a sump-based soil depressurisation system for radon mitigation
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Investigation of sub-slab pressure field extension in specified granular fill materials incorporating a sump-based soil depressurisation system for radon mitigation

机译:研究结合了基于集水坑的土壤减压系统的特定粒状填充材料的地下平板压力场扩展

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Design of bearing layers (granular fill material layers) is important for a house with a soil depressurisation (SD) system for indoor radon mitigation. These layers should not only satisfy the bearing capacity and serviceability criteria but should also provide a sufficient degree of the air permeability for the system. Previous studies have shown that a critical parameter for a SD system is the sub-slab pressure field extension in the bearing layers, but this issue has not been systematically investigated. A series of two-dimensional computational fluid dynamic simulations that investigate the behaviour of the sub-slab pressure field extension developed in a SD system is presented in this paper. The SD system considered in this paper consists of a granular fill material layer and a radon sump. The granular fill materials are 'T1 Struc' and 'T2 Perm', which are standard materials for building in the Republic of Ireland. Different conditions, which might be encountered in a practical situation, were examined. The results show that the air permeability and thickness of the granular fill materials are the two key factors which affect the sub slab pressure field extension (SPFE) significantly. Furthermore, the air permeability of native soil is found to be a fundamental factor for the SPFE so that it should be well understood when designing a SD system. Therefore, these factors should be considered sufficiently in each practical situation. Finally, a significant improvement of the pressure field extension can be achieved by ensuring air tightness of the SD system.
机译:承重层(粒状填充材料层)的设计对于带有土壤减压(SD)系统以减轻室内ra气的房屋非常重要。这些层不仅应满足承载能力和可维修性标准,而且还应为系统提供足够程度的透气性。先前的研究表明,SD系统的关键参数是承压层中平板下压力场的扩展,但尚未对此问题进行系统的研究。本文提出了一系列二维计算流体动力学模拟,以研究在SD系统中开发的子板压力场扩展的行为。本文考虑的SD系统由颗粒状填充材料层和a气池组成。颗粒填充材料是“ T1 Struc”和“ T2 Perm”,它们是爱尔兰共和国建筑的标准材料。研究了在实际情况下可能遇到的不同条件。结果表明,粒状填充材料的透气性和厚度是显着影响平板下部压力场扩展(SPFE)的两个关键因素。此外,发现天然土壤的透气性是SPFE的基本因素,因此在设计SD系统时应充分理解。因此,在每种实际情况下都应充分考虑这些因素。最后,通过确保SD系统的气密性,可以实现压力场扩展的显着改善。

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