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Field performance of in-service cast iron water reticulation pipe buried in reactive clay

机译:埋设在活性白土中的在役铸铁水网管的现场性能

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摘要

Field monitoring is an important means for understanding soil behaviour and its interaction with buried structures such as pipeline. This paper details the successful instrumentation of a section of an in-service cast iron water main buried in an area of reactive clay where frequent water pipe breakage has been observed. The instrumentation included measurement of pipe strain; pipe water pressure and temperature; soil pressure, temperature, moisture content and matric suction, as well as the meteorological conditions on site. The data generally indicated that changes in soil temperature, suction and moisture content were directly related to the local climatic variations. The suction and moisture content data indicated that the soil profile at the site down to around 700 mm, and probably down to 1000 mm, is affected by changes in surface weather, while soil conditions below this depth appear to be more stable. Analysis of pipe strain indicated that the pipe behaves like a cantilever beam, with the top experiencing predominantly tensile strains during summer. Subsequently, these trends reduce to compressive strains as soil swelling occurs due to increase of moisture content with the onset of winter.
机译:现场监测是了解土壤行为及其与地下结构(如管道)相互作用的重要手段。本文详细介绍了埋在反应性粘土中经常观察到水管破裂的部分在役铸铁水主管的成功仪表。仪器包括管道应变的测量;管道水压和温度;土壤压力,温度,水分含量和基质吸力,以及现场的气象条件。数据通常表明,土壤温度,吸力和水分含量的变化与当地的气候变化直接相关。吸力和水分含量数据表明,地表天气的变化会影响到低至700毫米左右(可能低至1000毫米)的土壤剖面,而低于该深度的土壤条件似乎更稳定。对管道应变的分析表明,管道的行为像悬臂梁,顶部在夏季主要承受拉伸应变。随后,随着冬季的来临,由于水分含量的增加而导致土壤膨胀,这些趋势降低为压应变。

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