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防流体倒灌的新型泡沫锤研制及其应用 被引量:1
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作者 胡贵 孟庆昆 +1 位作者 王向东 陶冶 《天然气工业》 EI CAS CSCD 北大核心 2014年第7期71-74,共4页
空气锤在油气田研磨性地层提速和高陡地层防斜应用中逐步成熟,但还存在出液地层钻井作业受井底压力的影响而出现输出功率低甚至不工作,以及停止循环时地层液体倒灌气缸而污染空气锤的问题。为此,研制出了同时适应于气体(干气)和雾化泡沫... 空气锤在油气田研磨性地层提速和高陡地层防斜应用中逐步成熟,但还存在出液地层钻井作业受井底压力的影响而出现输出功率低甚至不工作,以及停止循环时地层液体倒灌气缸而污染空气锤的问题。为此,研制出了同时适应于气体(干气)和雾化泡沫(湿气)钻井介质、具备防止井下流体倒灌的新型泡沫锤。该泡沫锤与空气锤相比,优化了气室结构以保证气体和雾化泡沫钻井介质的输出功率;新增的防倒灌装置在接单根时,依靠泡沫锤阀体与液体当量密度差推动阀体向上运行,可封闭地层流体进入泡沫锤的通道。在松辽盆地徐深气田外围的肇深17井下白垩统泉头组、登娄库组开展了现场试验,泡沫锤在气体介质条件下相比常规钻井机械钻速提高6.5倍,相比气体牙轮钻井提高1倍;在泡沫介质条件下相比常规钻井机械钻速提高2倍且钻进过程未发生井底流体倒灌现象。试验结果表明,所研制的泡沫锤在气体介质条件下相比空气锤输出功率未降低且具备了适应雾化泡沫钻井介质和防井下流体倒灌的能力。 展开更多
关键词 欠平衡钻井 气体钻井 泡沫钻井 空气 泡沫锤 防倒灌 地层出水 松辽盆地 早白垩世
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Efficient energy absorption of functionally-graded metallic foam-filled tubes under impact loading 被引量:4
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作者 M.SALEHI S.M.H.MIRBAGHERI A.JAFARI RAMIANI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第1期92-110,共19页
The deformation behavior and crashworthiness of functionally-graded foam-filled tubes(FGFTs)under drop-weight impact loading were investigated.Closed cell aluminum,A356 alloy and zinc foams fabricated by the liquid st... The deformation behavior and crashworthiness of functionally-graded foam-filled tubes(FGFTs)under drop-weight impact loading were investigated.Closed cell aluminum,A356 alloy and zinc foams fabricated by the liquid state processing were used as axial grading fillers for the manufacture of single-layer and multilayer structures with different configurations.The results indicate that the deformation of multilayer foam filled tubes initiates from the low-strength components,and then propagates in the high-strength components through the gradual increment of stress.The use of more A356 alloy and aluminum foam layers provides greater specific energy absorption(SEA)for the graded structures,whereas the high-strength zinc foam has no positive effect on the crash performance.The progressive collapse of graded structures consisting of the aluminum and A356 alloy foams occurs in a symmetric mode under quasi-static and drop-weight impact conditions.However,the zinc foam causes a combination of symmetric and extension modes as well as greater localized deformation under dynamic loading and greater local rupture in quasi-static loading condition.The Al−A356 foam-filled tubes with a combination of the highest SEA(10 J/g)and the lowest initial peak stress(σmax of 10.2 MPa)are considered as the best lightweight crashworthy structures. 展开更多
关键词 functionally-graded foam-filled tube drop-weight impact deformation behavior specific energy absorption CRASHWORTHINESS
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