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Fracture Research on Preheating Installation of Directly Buried Heating Return Water Pipe with Large Diameter

机译:直径直径直接埋地换水水管预热安装的裂缝研究

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Pipe fracture and compensator tear may happen when directly buried pipes with large diameter, high temperature and pressure adopt preheated installation. Combined with engineering, this paper analyzes theoretically the fracture accident on DN1200 return water pipe during the period of cold operation and analyzes various factors which cause the pipeline fracture, when adopt open ditch electric preheating. By the numerical simulation, the size of influence factors on fracture was obtained, and the conclusion that the tensile stress is greater than the compressive stress was also obtained, where the preheating temperature was defined by means of "intercycle temperature". It is worth nothing, the buried pipeline will emerge vertical bending under the main impact of soil and transportation loads. The vertical bending is related to pipe base, and the value of curving stress will be very big if the pipe base is mishandled. The coupling effect of curving stress and the temperature tensile stress can lead the pipeline to fracture, such as the disposable compensator place, the pipeline welding place, corners, the pipe wall flaw place and so on. This paper proposed the effective preventive measure which may reduce the occurrence probability of pipeline fracture during temperature drop process.
机译:在直径大,高温和压力的直接埋入管道采用预热装置时,可能会发生管道骨折和补偿器撕裂。结合工程,本文在冷运行期间理论上分析了DN1200回水管道的骨折事故,分析了导致管道骨折的各种因素,采用开放式电动预热。通过数值模拟,获得了骨折上的影响因素的尺寸,并且还获得了张应力大于压缩应力的结论,其中通过“间间温度”定义预热温度。值得注意的是,埋地管道将在土壤和运输负荷的主要影响下出现垂直弯曲。垂直弯曲与管底有关,如果管座被误操作,弯曲应力的值将非常大。弯曲应力和温度拉伸应力的耦合效应可以引导管道裂缝,例如一次性补偿器地点,管道焊接地点,角落,管壁爆震等。本文提出了有效的预防措施,可在温度下降过程中降低管道断裂的发生概率。

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