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On the energy conservation and critical velocities for the propagation of a "steady-shock" wave in a bar made of cellular material 被引量:8
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作者 Li-Li Wang Li-Ming Yang Yuan-Yuan Ding 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2013年第3期420-428,共9页
The propagation of shock waves in a cellular bar is systematically studied in the framework of continuum solids by adopting two idealized material models, viz. the dynamic rigid, perfectly plastic, locking (D-R-PP-L... The propagation of shock waves in a cellular bar is systematically studied in the framework of continuum solids by adopting two idealized material models, viz. the dynamic rigid, perfectly plastic, locking (D-R-PP-L) model and the dynamic rigid, linear hardening plastic, locking (D-R-LHP-L) model, both considering the effects of strain-rate on the material properties. The shock wave speed relevant to these two models is derived. Consider the case of a bar made of one of such material with initial length L 0 and initial velocity v i impinging onto a rigid target. The variations of the stress, strain, particle velocity, specific internal energy across the shock wave and the cease distance of shock wave are all determined analytically. In particular the "energy conservation condition" and the "kinematic existence condition" as proposed by Tan et al. (2005) is re-examined, showing that the "energy conservation condition" and the consequent "critical velocity", i.e. the shock can only be generated and sustained in R-PP-L bars when the impact velocity is above this critical velocity, is incorrect. Instead, with elastic deformation, strain-hardening and strain-rate sensitivity of the cellular materials being considered, it is appropriate to redefine a first and a second critical impact velocity for the existence and propagation of shock waves in cellular solids. Starting from the basic relations for shock wave propagating in D-R-LHP-L cellular materials, a new method for inversely determining the dynamic stress-strain curve for cellular materials is proposed. By using e.g. a combination of Taylor bar and Hopkinson pressure bar impact experimental technique, the dynamic stress-strain curve of aluminum foam could bedetermined. Finally, it is demonstrated that this new formulation of shock theory in this one-dimensional stress state can be generalized to shocks in a one-dimensional strain state, i.e. for the case of plate impact on cellular materials, by simply making proper replacements of the elastic and plastic constants. 展开更多
关键词 Cellular solids 1D shock theory D-R-PP-L model D-R-SHP-L model Energy conservation across shock critical velocities
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连续油管速度管柱排水采气技术研究及应用 被引量:12
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作者 平恩顺 王林 +5 位作者 张建华 姜有才 徐庆祥 李楠 黄其 汪强 《石油化工应用》 CAS 2017年第5期20-25,共6页
针对苏里格气田低压水平气井携液能力差,井筒出现积液,原有生产管柱不能满足生产需求等问题,研究了水平井连续油管速度管柱排水采气技术方案。首先分析了水平井临界携液流速理论模型,利用该模型优选出Φ38.1 mm的连续油管作为速度管柱... 针对苏里格气田低压水平气井携液能力差,井筒出现积液,原有生产管柱不能满足生产需求等问题,研究了水平井连续油管速度管柱排水采气技术方案。首先分析了水平井临界携液流速理论模型,利用该模型优选出Φ38.1 mm的连续油管作为速度管柱。然后详述了连续油管速度管柱排水采气技术方案,最后在苏76-2-20H井进行现场应用,应用结果表明,水平井连续油管速度管柱排水采气技术方案降低了气井的临界携液流速,提高了气井的携液能力,气井油套平均压差减小1.82 MPa,可有效地排出井筒积液,实现了低压水平气井的连续携液增产稳产,起到了较好的应用效果。 展开更多
关键词 苏里格气田 低压水平井 临界携液流速理论模型 连续油管 速度管柱 排水采气
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水平气井全井筒携液模拟试验研究 被引量:3
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作者 秦峰 唐圣来 +4 位作者 闫正和 羊新州 洪舒娜 苏作飞 钟海全 《石油机械》 北大核心 2022年第2期95-101,共7页
目前有关水平井临界携液的诸多预测模型均需要满足环雾流条件,这些模型所得到的携液流速却未达到环雾流条件,或与正常生产的气井井筒流态相矛盾,同时未考虑水平井的全井筒井深结构变化对井筒流态及携液的影响。为此,开展了水平井全井筒... 目前有关水平井临界携液的诸多预测模型均需要满足环雾流条件,这些模型所得到的携液流速却未达到环雾流条件,或与正常生产的气井井筒流态相矛盾,同时未考虑水平井的全井筒井深结构变化对井筒流态及携液的影响。为此,开展了水平井全井筒可视化携液模拟试验,并基于试验测试数据,结合Kelvin-Helmholtz(K-H)不稳定气液两相流理论,建立了K-H波动理论修正携液模型。研究结果表明:水平井携液困难主要在倾斜管段,倾斜管段是水平井积液的起始位置,但不应单纯地看某一段有、无液体回落,应按全井筒液量有、无增加与各段液体回落程度来综合判断积液起始;K-H波动理论修正模型预测结果与测试结果很接近,平均绝对误差小于9%;利用K-H波动理论修正模型对海上11口(13井次)气井进行了全井筒携液预测诊断,诊断结论与实际生产情况吻合。所得结果有助于水平井临界携液流速的判断。 展开更多
关键词 水平井 全井筒 携液模型 临界流速 积液 K-H波动理论
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