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FRACTURE PROPAGATION AND ARREST IN HIGH-PRESSURE GAS TRANSMISSION PIPELINE BY ULTRA HIGH STRENGTH LINE PIPES

机译:超高强度管线管中高压气体传输管道骨折繁殖与阻塞

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The fracture arrest of high pressure gas pipelines is one of the keen subjects for application of high strength line pipes. To examine the arrestability of high strength line pipes against crack propagation, several full scale fracture propagation tests have been conducted. The fracture propagation tests of X100 or X120 under high pressure revealed that the existing models of arrest energy prediction failed to predict the arrest energies. By careful investigations of the test results, it is found that the failure in prediction is mainly due to the uncertainty of crack velocity curve prediction. On the other hand, accuracy of predicted gas decompression curve is relatively high even in the case of high pressure condition. Experimentally, the arrest energies have been determined by full-scale fracture propagation tests with increasing toughness arrangement. Different from actual pipeline, extremely low toughness pipe has been employed in crack initiation pipe with intention of getting steady state propagation. However, arrestability of pipe might be underestimated in the increasing toughness arrangement test as the initial crack velocity increases. Together with recalibrated crack velocity curve, Sumitomo model (HLP method with Sumitomo's crack velocity curve) predicts that even toughness arrangement, which is the case of real pipelines, could arrest the propagating shear fracture in high pressure gas pipelines by X100.
机译:高压气体管道的断裂搅动是用于施加高强度管线管的敏感受试者之一。为了检查高强度线管对抗裂纹繁殖的阻塞性,已经进行了几种全规模的裂缝繁殖试验。在高压下X100或X120的断裂传播测试显示,现有的逮捕能量预测模型未能预测逮捕能量。通过仔细研究测试结果,发现预测失败主要是由于裂纹速度曲线预测的不确定性。另一方面,即使在高压条件的情况下,预测气体减压曲线的准确性也相对较高。通过实验,通过增加韧性排列的全尺寸裂缝传播测试确定了防止能量。与实际管道不同,在裂纹启动管中采用极低的韧性管,意图稳态传播。然而,随着初始裂纹速度的增加,在增加的韧性布置测试中,管道的阻止性可能会被低估。与重新校准裂缝速度曲线一起,Sumitomo模型(HLP方法与Sumitomo的裂缝速度曲线)预测,即使是真正管道的情况,均匀的韧性布置也可以通过X100抑制高压气体管道中的传播剪切断裂。

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