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An Experimental Study on the Flow Characteristics of OilWater Two-Phase Flow in Horizontal Straight Pipes 被引量:7
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作者 刘文红 郭烈锦 +1 位作者 吴铁军 张西民 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2003年第5期491-496,共6页
The flow patterns and their transitions of oil-water two-phase flow in horizontal pipes were studied. The experiments were conducted in two kinds of horizontal tubes, made of plexiglas pipe and stainless steel pipe wi... The flow patterns and their transitions of oil-water two-phase flow in horizontal pipes were studied. The experiments were conducted in two kinds of horizontal tubes, made of plexiglas pipe and stainless steel pipe with 40 mm ID respectively. No. 46 mechanical oil and tap water were used as working fluids. The superflcial velocity ranges of oil and water were: 0.04-1.2m·s-1 and 0.04-2.2m·s-1, respectively. The flow patterns were identified by visualization and by transient fluctuation signals of differential pressure drop. The flow patterns were defined according to the relative distribution of oil and water phases in the pipes. Flow pattern maps were obtained for both pipelines. In addition, semi-theoretical transition criteria for the flow patterns were proposed, and the proposed transitional criteria are in reasonable agreement with available data in liquid-liquid systems. 展开更多
关键词 oil-water two-phase flow horizontal pipe flow pattern transition criterion
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Horizontal dynamic response of a large-diameter pipe pile considering the second-order effect of axial force 被引量:2
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作者 Luan Lubao Ding Xuanming +2 位作者 Zhou Wei Zheng Changjie Qu Liming 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第3期567-579,共13页
The second-order effect of axial force on horizontal vibrating characteristics of a large-diameter pipe pile is theoretically investigated.Governing equations of the pile-soil system are established based on elastodyn... The second-order effect of axial force on horizontal vibrating characteristics of a large-diameter pipe pile is theoretically investigated.Governing equations of the pile-soil system are established based on elastodynamics.Threedimensional wave equations of soil are decoupled through differential transformation and variable separation.Consequently,expressions of soil displacements and horizontal resistances can be obtained.An analytical solution of the pile is derived based on continuity conditions between the pile and soil,subsequently from which expressions of the complex impedances are deduced.Analyses are carried out to examine the second-order effect of axial force on the horizontal vibrating behavior of the pipe pile.Some conclusions can be summarized as follows: stiffness and damping factors are decreased with the application of axial force on the pile head; distributions of the pile horizontal displacement and rotation angle are regenerated due to the second-order effect of the applied axial force; and redistributions of the bending moment and shearing force occur due to the second-order effect of the applied axial force. 展开更多
关键词 axial force second-order effect horizontal vibration pipe pile analytical solution
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Research on Horizontal Vibration of Heavy-Weight Drill Pipes in Directional Drilling 被引量:3
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作者 Jiang Wei Wang Lan Engineer, Drilling Department of Bohai Oil Corp of CNOOC, Tanggu, 300452, Tianjin Engineer, Well Testing Company of Bohai Oil Corp of CNOOC, Tanggu, 300452, Tianjin 《China Ocean Engineering》 SCIE EI 1992年第4期403-414,共12页
The mode of load and deformation of directional drilling string and the expression of trigonometric series of deflection equation are established by means of elastic deformation energy and of the vertical and horizont... The mode of load and deformation of directional drilling string and the expression of trigonometric series of deflection equation are established by means of elastic deformation energy and of the vertical and horizontal bending. A calculation formula for natural frequency of horizontal resonance and rotational speed is derived based on the calculation method by Ritz, with which analysis is made for the cause and affecting factors of the excessive abrasion of heavy-weight drill pipe in high-angle holes so as to provide reference and basis for rational selection of drilling parameters and drilling tools in the future high-angle directional drilling. 展开更多
关键词 directional drilling heavy-weight drill pile drill pipe wornout horizontal vibration natural-frequency
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Field synergy analysis of different flow patterns in falling-film dehumidification system with horizontal pipes 被引量:1
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作者 NIU Run-ping KUANG Da-qing +1 位作者 WANG Shi-zheng CHEN Xiao-yi 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第8期2353-2366,共14页
Effects of the flow pattern of intertubular liquid film on mass and heat transfer synergies in a falling-film dehumidification system with horizontal pipes are studied.A flow model of the dehumidifying solution betwee... Effects of the flow pattern of intertubular liquid film on mass and heat transfer synergies in a falling-film dehumidification system with horizontal pipes are studied.A flow model of the dehumidifying solution between horizontal pipes is established using Fluent software,the rule of transitions of the flow pattern between pipes is studied,critical Reynolds numbers of flow pattern transitions are obtained,and the accuracy of the model is verified by experiments.The mass transfer synergy angle and heat transfer synergy angle are respectively used as evaluation criteria for the mass transfer synergy and heat transfer synergy,and distribution laws of the synergy angles for droplet,droplet columnar and curtain flow patterns are obtained.Simulation results show that the mass transfer synergy angles corresponding to droplet,droplet columnar and curtain flow patterns all rise to a plateau with time.The mean mass-transfer synergy angle is 98°for the droplet flow pattern,higher than 96.5°for the droplet columnar flow pattern and 95°for the curtain flow pattern.The results show that the mass transfer synergy of the droplet flow pattern is better than that of the droplet columnar flow pattern and that of the curtain flow pattern. 展开更多
关键词 film falling between horizontal pipes fluent software flow pattern of liquid film synergy angle mass and heat transfer
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The extending length calculation of hydraulic drive non-metallic completion screen pipe running into ultra-short radius horizontal well
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作者 BI Yansen XIAN Baoan +1 位作者 SHI Xiaolei GAO Deli 《Petroleum Exploration and Development》 CSCD 2022年第4期942-954,共13页
Focusing on the extending length restriction of the completion screen pipe resistance running into ultra-short radius horizontal well,this paper proposed technology of hydraulic drive completion tubular string running... Focusing on the extending length restriction of the completion screen pipe resistance running into ultra-short radius horizontal well,this paper proposed technology of hydraulic drive completion tubular string running into ultra-short radius horizontal well.Innovative hydraulic drive tools and string structure are designed,which are composed of guide tubing,hydraulic drive tubing and non-metallic completion screen pipe from inside to outside.A novel mechanical-hydraulic coupling model is established.Based on the wellbore structure of an ultra-short radius horizontal well for deep coalbed methane,the numerical calculations of force and hydraulic load on tubular strings were accomplished by the mechanical-hydraulic coupling model.The results show that the extending length of completion tubular string with the hydraulic drive is 17 times that of conventional completion technology under the same conditions.The multi-factor orthogonal design is adopted to analyze the numerical calculations,and the results show that the extending length of the completion tubular string is mainly affected by the completion tubular string structure and the friction coefficient between the non-metallic composite continuous screen pipe and the wellbore.Two series of hydraulic drive completion tubular string structures suitable for ultra-short radius horizontal wells under different conditions are optimized,with the extending limits of 381 m and 655 m,respectively.These researches will provide theoretical guidance for design and control of hydraulic drive non-metallic composite continuous completion screen pipe running into ultra-short radius horizontal wells. 展开更多
关键词 ultra-short radius horizontal well screen pipe completion hydraulic drive technology non-metallic composite continuous screen pipe screen pipe extending length
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A Pressure-Drop Model for Oil-Gas Two-Phase Flow in Horizontal Pipes
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作者 Xinke Yang Shanzhi Shi +4 位作者 Hui Zhang Yuzhe Yang Zilong Liu Ruiquan Liao Joseph X.F.Ribeiro 《Fluid Dynamics & Materials Processing》 EI 2021年第2期371-383,共13页
The accurate prediction of the pressure distribution of highly viscous fluids in wellbores and pipelines is of great significance for heavy oil production and transportation.The flow behavior of high-viscosity fluids ... The accurate prediction of the pressure distribution of highly viscous fluids in wellbores and pipelines is of great significance for heavy oil production and transportation.The flow behavior of high-viscosity fluids is quite different with respect to that of low-viscosity fluids.Currently,the performances of existing pressure-drop models seem to be relatively limited when they are applied to high-viscosity fluids.In this study,a gas-liquid two-phase flow experiment has been carried out using a 60 mm ID horizontal pipe with air and white oil.The experimental results indicate that viscosity exerts a significant influence on the liquid holdup and pressure drop.At the same gas and liquid volume,both the liquid holdup and pressure drop increase with an increase in the viscosity.Combining two existing models,a modified pressure drop method is developed,which is applicable to horizontal pipes for different viscosities and does not depend on the flow pattern.This new method displays a high accuracy in predicting the new experimental data presented here and other published data in literature. 展开更多
关键词 horizontal pipe different viscosities pressure drop model gas-liquid two-phase flow
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Simulation of quenching in horizontal geometry channel 被引量:3
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作者 Yuan Jingtian Tong Lili Cao Xuewu 《Nuclear Science and Techniques》 SCIE CAS CSCD 2010年第6期370-374,共5页
Two tests of refilling and reflooding in the horizontal geometry channel under different pressure conditions,respectively,are conducted to understand the thermal hydraulics behavior during a LOCA in the CANDU reactor.... Two tests of refilling and reflooding in the horizontal geometry channel under different pressure conditions,respectively,are conducted to understand the thermal hydraulics behavior during a LOCA in the CANDU reactor.One case of refilling a hot horizontal tube test and four cases of reflooding a horizontal fuel channel test series (35%and 60%break size of reactor inlet header with single-end injection or both-end injection,respectively) have been simulated.The horizontal channel is simulated with the model splitting as parallel pipes with cross flow junction component.The simulation results have been compared with the tests in terms of wall temperature or heated-pin surface temperature.The results are reasonably acceptable and it shows that the code is applicable on horizontal channel quenching. 展开更多
关键词 水平测试 通道测试 模型模拟 几何 淬火 CANDU堆 压力条件 热工水力
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Modeling of Heat Transfer and Steam Condensation Inside a Horizontal Flattened Tube
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作者 M.Gh.Mohammed Kamil M.S.Kassim +1 位作者 R.A.Mahmood L.AZ Mahdi 《Fluid Dynamics & Materials Processing》 EI 2022年第4期985-998,共14页
This work investigates the steam condensation phenomena in an air-cooled condenser.The considered horizontal flattened tube has a 30 mm hydraulic diameter,and its length is a function of the steam quality with a limit... This work investigates the steam condensation phenomena in an air-cooled condenser.The considered horizontal flattened tube has a 30 mm hydraulic diameter,and its length is a function of the steam quality with a limit value between 0.95 and 0.05.The mass flow rate ranges from 4 to 40 kg/m^(2).s with a saturated temperature spanning an interval from 40°C to 80°C.A special approach has been implemented using the Engineering Equation Solver(EES)to solve a series of equations for the two-phase flow pattern and the related heat transfer coefficients.A wavy-stratified structure of the two-phase flow has been found when the mass rate was between 4 and 24 kg/m^(2).s.In contrast,an initially annular flow is gradually converted into a wavy stratified flow(due to the condensation process taking place inside the flattened tube)when the considered range ranges from 32 to 40 kg/m^(2).s. 展开更多
关键词 CONDENSATION flow pattern structure heat transfer rate flow in horizontal pipe flow behaviour EES modelling
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横向滑坡载荷作用下埋地PE管道的损伤数值模拟
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作者 燕集中 沈利民 +1 位作者 杨洪 汤文亮 《科学技术与工程》 北大核心 2024年第17期7114-7121,共8页
埋地燃气输送管道服役环境复杂,其中滑坡地质灾害严重威胁管道的服役安全。以埋地聚乙烯(polyethylene,PE)管道为研究对象,利用ABAQUS有限元软件模拟了横向滑坡载荷作用下的管道损伤行为,探讨了滑坡参数(滑坡体位移量)、管道埋深以及内... 埋地燃气输送管道服役环境复杂,其中滑坡地质灾害严重威胁管道的服役安全。以埋地聚乙烯(polyethylene,PE)管道为研究对象,利用ABAQUS有限元软件模拟了横向滑坡载荷作用下的管道损伤行为,探讨了滑坡参数(滑坡体位移量)、管道埋深以及内压对PE管力学性能的影响。研究结果表明:滑坡作用下埋地PE管最大偏移、最大Mises应力和最大主应变均位于管轴向横截对称面上。管道最大Mises应力随滑坡位移的增大而增大,管底为管道最终屈服点,屈服主要原因为管横截面被压扁变形。管道未屈服时,最大Mises应力随内压的增大呈现先减小后增大的现象,最大主应变随内压的增大而增大。最大Mises应力和最大主应变均随埋深的增大而增大。 展开更多
关键词 ABAQUS 有限元模拟 埋地PE管 横向滑坡 力学响应
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小井眼水平井洗井岩屑清除效率研究
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作者 臧传贞 荆思霖 +2 位作者 路宗羽 宋先知 武兴勇 《石油钻探技术》 CAS CSCD 北大核心 2024年第3期75-83,共9页
为研究小井眼水平井洗井钻柱旋转时的岩屑清除规律,针对玛湖深层三叠系长水平井小井眼洗井工况,进行了相似试验设计,开展了岩屑启动流速和岩屑清除效率的试验研究。试验发现,采用不同排量冲洗岩屑床时,岩屑床呈现稳定运移、沙丘式波浪... 为研究小井眼水平井洗井钻柱旋转时的岩屑清除规律,针对玛湖深层三叠系长水平井小井眼洗井工况,进行了相似试验设计,开展了岩屑启动流速和岩屑清除效率的试验研究。试验发现,采用不同排量冲洗岩屑床时,岩屑床呈现稳定运移、沙丘式波浪运移和整体运移等3种运移形态。试验研究了岩屑床稳定运移形态下岩屑粒径、排量和钻柱转速对岩屑启动流速及钻柱转速对岩屑床高度和形成稳定岩屑床所需时间的影响规律,分析了岩屑床整体运移形态下岩屑粒径、排量和岩屑床初始质量对岩屑床清除效率的影响。研究结果表明,岩屑粒径越小所需启动流速越低,钻柱旋转后等效岩屑启动流速降低45.5%,钻柱转速升高会使形成稳定岩屑床所需时间缩短,岩屑清除效率提高;当岩屑床发生整体运移后,较低排量下岩屑床清除速度受岩屑粒径影响较小,高排量下大粒径岩屑床的运移速度快。排量和钻柱转速是提高洗井过程岩屑床清除效率的关键,而现在洗井时钻柱转速较低,可适当提高钻柱转速,以提高洗井效率。 展开更多
关键词 水平井洗井 钻柱旋转 岩屑启动流速 岩屑床 清除效率
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凹坑下城镇中低压燃气管道水平喷射火研究
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作者 张培红 孙玲 《燃烧科学与技术》 CAS CSCD 北大核心 2024年第4期323-328,共6页
城镇埋地中低压燃气管道周围人口密集,一旦发生全管径破裂,凹坑条件将加剧水平喷射火行为的复杂及危险性.利用Fluent模拟分析了不同凹坑尺寸及管压下火焰长度、等效宽度及长宽比变化规律,得到了火焰长度及等效宽度与无量纲热释放速率关... 城镇埋地中低压燃气管道周围人口密集,一旦发生全管径破裂,凹坑条件将加剧水平喷射火行为的复杂及危险性.利用Fluent模拟分析了不同凹坑尺寸及管压下火焰长度、等效宽度及长宽比变化规律,得到了火焰长度及等效宽度与无量纲热释放速率关系式.结果表明:火焰长度随着热释放速率增加与凹坑尺寸减小而增大,坑口尺寸较小时,火焰长度大于开放空间;坑口尺寸增大到一定程度时,火焰长度小于开放空间火焰长度.等效宽度随热释放速率的增大而增大,且当等效宽度增长到凹坑开口尺寸后,增长速率变缓并趋于稳定,同时火焰长度有明显增长.火焰长宽比呈现先减小后增大趋势,随着凹坑尺寸增大,长宽比减小且均小于开放空间. 展开更多
关键词 水平喷射火 火焰 城镇中低压燃气管道 全管径破裂 凹坑
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基于虚拟现实的立管横焊机器人辅助焊接工艺设计与实现
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作者 罗雨 高萌萌 +4 位作者 许耀波 任飞燕 于俊杰 田文鹏 刘铂洋 《机床与液压》 北大核心 2024年第13期110-115,236,共7页
焊接工艺参数的选择对焊接质量有重要影响。针对立管J型铺设窄坡口横焊熔池下淌特性,提出基于横焊焊道厚度及热输入恒定策略的焊接工艺参数匹配算法。基于Unity3D开发平台和工艺参数匹配算法,通过C#开发了立管横焊CAPP模块,扩展了虚拟... 焊接工艺参数的选择对焊接质量有重要影响。针对立管J型铺设窄坡口横焊熔池下淌特性,提出基于横焊焊道厚度及热输入恒定策略的焊接工艺参数匹配算法。基于Unity3D开发平台和工艺参数匹配算法,通过C#开发了立管横焊CAPP模块,扩展了虚拟现实人机交互系统的功能模块;开展立管横焊计算机辅助焊接工艺实验,焊后焊缝成形良好,无焊接缺陷。实验结果表明:CAPP模块可有效获取匹配的焊接工艺参数,能缩短焊接工艺开发周期,降低工艺开发成本,有效提升系统的智能化水平。 展开更多
关键词 CAPP 虚拟现实人机交互系统 焊道规划算法 立管横焊机器人
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层状地基中海洋大直径管桩水平动力响应分析 被引量:1
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作者 林浩 郑长杰 丁选明 《岩土力学》 EI CAS CSCD 北大核心 2024年第6期1873-1883,共11页
考虑桩−海水−层状土相互作用,研究了水平动荷载作用下层状地基中海洋大直径管桩的动力响应特性。将海水视为无黏性可压缩流体介质建立桩周、桩芯海水的运动方程,通过分离变量法并结合海水的边界条件求得桩周、桩芯海水作用在管桩上的动... 考虑桩−海水−层状土相互作用,研究了水平动荷载作用下层状地基中海洋大直径管桩的动力响应特性。将海水视为无黏性可压缩流体介质建立桩周、桩芯海水的运动方程,通过分离变量法并结合海水的边界条件求得桩周、桩芯海水作用在管桩上的动水压力。将海床土体视为黏弹性介质并考虑其成层非均质性,利用微分变化并结合土体振动边界条件解得桩周、桩芯土体作用在管桩上的水平抗力。进而根据各桩段上水平力的平衡建立管桩控制方程,利用传递矩阵法并结合桩身的连续条件以及桩顶、桩底的边界条件,得到层状海床土中海洋大直径管桩的水平动力响应解析解,给出了桩顶位移解析表达式。将所得解与有限元模拟结果以及退化解与已有文献解进行对比,验证了本研究计算方法的合理性。并基于所得解分析了管桩−海水−层状土系统水平动力响应对动水压力、水深、土体模量、土层厚度等关键参数的敏感性。 展开更多
关键词 桩顶位移 海洋大直径管桩 水平振动特性 桩芯海水 层状海床地基
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多结构强化管换热特性的实验研究
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作者 钱含琪 黄理浩 +1 位作者 陈建红 陶乐仁 《化学工程》 CAS CSCD 北大核心 2024年第5期53-58,78,共7页
基于单管换热实验系统,研究光管和双侧强化管的换热机理,利用Gnielinski公式和热阻分离法分别计算4种强化结构换热管的管内外换热系数,并对光管外的冷凝过程进行数值模拟。结果表明:冷凝液光管模拟结果与实验结果之间误差<15%,能够... 基于单管换热实验系统,研究光管和双侧强化管的换热机理,利用Gnielinski公式和热阻分离法分别计算4种强化结构换热管的管内外换热系数,并对光管外的冷凝过程进行数值模拟。结果表明:冷凝液光管模拟结果与实验结果之间误差<15%,能够较好地呈现冷凝过程;EX3强化管平均总换热系数提升207.02%,提升效果最佳。三角形齿相较于梯形齿对水流的扰动效果更大,管内对流换热效果更好。EX3管外强化冷凝换热效果最佳,同时,带有切槽的整体肋管的冷凝换热效果强于三维强化管,近矩形微肋强化管外侧冷凝性能优于近T形微肋管。存在最优肋间距,使得强化管能够最大化提升冷凝换热效果。基于实验数据拟合EX3与EX4的关联式,误差在±20%的范围内,符合预期可靠性。 展开更多
关键词 水平单管 强化换热 强化结构 换热机理 换热系数
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浅埋矩形顶管背土效应全过程理论分析模型
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作者 马晓宾 苏栋 +4 位作者 吴永照 吴炯 阳文胜 王雷 陈湘生 《福州大学学报(自然科学版)》 CAS 北大核心 2024年第5期569-576,共8页
针对浅埋矩形顶管顶进的背土效应,提出覆盖背土竖向扩展阶段、水平扩展阶段和整体背土阶段的全过程理论分析模型,确定顶管顶进的松动土压力、管土摩擦力、侧壁剪切约束力和前端阻力的计算方法,得到背土启动和发展全过程的理论计算公式.... 针对浅埋矩形顶管顶进的背土效应,提出覆盖背土竖向扩展阶段、水平扩展阶段和整体背土阶段的全过程理论分析模型,确定顶管顶进的松动土压力、管土摩擦力、侧壁剪切约束力和前端阻力的计算方法,得到背土启动和发展全过程的理论计算公式.结果表明:背土是否启动主要由顶管上覆土层的厚度、地层土体特性和管土摩擦特性决定,与顶进长度无直接关系;背土竖向扩展阶段的背土区域厚度和水平扩展阶段的地表扩展宽度都随着顶进长度的增加而非线性增长;理论分析结果与矩形顶管顶进全过程三维有限元模拟结果和现场实测结果吻合较好,理论公式可为矩形顶管背土发展全过程预测分析提供一种有效而简便的方法. 展开更多
关键词 浅埋矩形顶管 背土效应 竖向扩展 水平扩展 松动土压力
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新型空心管屏障隔振效果对比数值研究
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作者 胡中华 徐长节 +1 位作者 柳伟 朱怀龙 《噪声与振动控制》 CSCD 北大核心 2024年第5期218-223,共6页
为研究新型空心管屏障在工程隔振中的应用价值及对其影响因素进行分析,基于Plaxis3D有限元分析软件,依照已有的模型和现场试验参数建立有限元模型,并采用经过验证的有限元模型进行仿真计算。基于有限元数值分析方法,开展新型空心管隔振... 为研究新型空心管屏障在工程隔振中的应用价值及对其影响因素进行分析,基于Plaxis3D有限元分析软件,依照已有的模型和现场试验参数建立有限元模型,并采用经过验证的有限元模型进行仿真计算。基于有限元数值分析方法,开展新型空心管隔振效果与已有模型和现场试验中屏障的对比研究;分析单根空心管高度和空心管数量对新型空心管隔振效果的影响。研究发现:新型空心管屏障平均减振系数比填充沟、排桩和波阻板小得多,彼此之间平均减振系数偏差最大可达373%,而与空沟的平均减振系数偏差较小。这一结果表明:新型空心管的隔振效果明显要优于填充沟、排桩和波阻板,而与空沟的隔振效果相接近。此外,还发现在不同的工程条件下,新型空心管隔振屏障的平均减振系数大都在0.3以下,具有很好的隔振效果;且随着空心管数量的增加,空心管的隔振效果也随之提升;在空心管总高度不变的条件下,调节单根空心管的高度对屏障的隔振效果影响很小。 展开更多
关键词 振动与波 水平空心管 空沟 排桩 隔振效果对比
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过滤双流体模型的水平管道内稠油输送数值模拟
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作者 陈羽佳 王淑彦 +3 位作者 邵宝力 袁子涵 谢磊 马一玫 《排灌机械工程学报》 CSCD 北大核心 2024年第8期785-793,共9页
针对介观尺度下蜡晶颗粒聚团在管壁形成宏观尺度下石蜡层的现象,采用过滤双流体模型研究水平管道输送伴有固态沥青质的稠油的液固两相流流动和传热特性.对比均匀结构曳力模型和亚格子曳力模型的模拟结果,获得了颗粒相时均体积分数、颗... 针对介观尺度下蜡晶颗粒聚团在管壁形成宏观尺度下石蜡层的现象,采用过滤双流体模型研究水平管道输送伴有固态沥青质的稠油的液固两相流流动和传热特性.对比均匀结构曳力模型和亚格子曳力模型的模拟结果,获得了颗粒相时均体积分数、颗粒相压力和过滤传热系数的修正系数等参数分布规律.同时分析了壁面温度对稠油温度分布和传热的影响.结果表明:与均匀模型Gidaspow model相比,过滤模型能够揭示蜡晶颗粒非均匀流动结构对液固两相流的变化规律.Filtered modelⅡ的结果更加接近于试验结果,Filtered modelⅡ的结果随着蜡晶颗粒体积分数的增加而减小.当蜡晶颗粒相体积分数增加到12%时,加入壁面修正的亚格子模型的误差仅为4.1%.而ZAMBRANO等人模拟结果与试验压降的误差为12.9%.亚格子尺度模型能够详细地再现沥青质颗粒聚团的介观尺度流动行为,为稠油输送过程中的蜡晶聚集以及流动过程的预测提供了新的方法. 展开更多
关键词 稠油 过滤双流体模型 水平管道 液固两相流 传热
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煤矿地下精准注浆技术与发展现状
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作者 隋来才 刘少炜 +4 位作者 张普纲 芦文增 赵国贞 高强 赵建忠 《煤炭技术》 CAS 2024年第11期161-165,共5页
注浆技术是现代地下工程加固与防渗的重要施工手段,注浆法在各类地下工程中发挥了重要作用。随着现代地下工程发展,注浆技术取得了显著的发展,同时也对地层注浆提出了更高技术要求,特别是在保障煤矿高效安全生产前提下需要更精准的注浆... 注浆技术是现代地下工程加固与防渗的重要施工手段,注浆法在各类地下工程中发挥了重要作用。随着现代地下工程发展,注浆技术取得了显著的发展,同时也对地层注浆提出了更高技术要求,特别是在保障煤矿高效安全生产前提下需要更精准的注浆技术。从近年来煤矿注浆法的发展趋势可以看出,精准注浆分别在区域、钻孔与孔内3个层次上取得了显著进展,通过工程实例分析,系统综述了目前煤矿地下精准注浆技术特征,提出了煤矿地下精准注浆的内涵与关键技术,总结了不同尺度精准注浆的实施方法、适应条件以及工程实例,为相关地下工程精准注浆发展提供借鉴。 展开更多
关键词 地下工程 精准注浆 非均质 水平注浆孔 定向注浆管
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疏松砂岩水平井分段压裂分层开采一体化工艺研究
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作者 张伦 徐凤祥 +5 位作者 张聪聪 陈少航 徐海珍 郑九洲 杨立军 王宇鸣 《石油矿场机械》 CAS 2024年第6期75-81,共7页
针对疏松砂岩具有高孔、高渗、且强度低、塑性强的特点,裂缝起裂与延伸机理较为复杂,储层非均质性强,裸眼水平井全井段单次压裂起裂位置具有不可控性。压裂充填是为了提高疏松砂岩储层产能,增强低渗层导流能力,解除近井地带污染,实现防... 针对疏松砂岩具有高孔、高渗、且强度低、塑性强的特点,裂缝起裂与延伸机理较为复杂,储层非均质性强,裸眼水平井全井段单次压裂起裂位置具有不可控性。压裂充填是为了提高疏松砂岩储层产能,增强低渗层导流能力,解除近井地带污染,实现防砂、增产、调剖和控水等多重目的的有效技术手段。通过对水平井全井段单次压裂和多段压裂的产能模拟对比分析,结果表明,疏松砂岩裸眼水平井分段压裂是可行的、必要的。研制了一套适用于疏松砂岩地质的裸眼水平井分段压裂、分层开采一体化工艺管柱。该工艺管柱通过裸眼封隔器对长水平段进行封隔,每层段设置有双层复合筛管、充填滑套、生产滑套和循环滑套,其中双层筛管基管不打孔。一趟管柱下入即可实现裸眼水平井分段压裂充填防砂作业,且留井管柱保留有分层开采手段,无需后期单独下入分采管柱即可选择性隔离含水、含气储层。该工艺管柱可为海上疏松砂岩储层的高效开采、防砂控水提供新的思路和方向。 展开更多
关键词 疏松砂岩 水平井 分段压裂 分层开采 一体化管柱
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