搜索到18088篇“ TIGHT“的相关文章
空位缺陷硅烯纳米带结构与自旋极化电子性质的密度泛函紧束缚研究
2025年
随着纳米电子器件和自旋电子学的不断发展,对小尺寸的纳米硅材料物理和化学性质的研究是研发新型微电子材料器件的基础.硅烯纳米带在实验制备和理论研究中均备受关注.本研究利用基于自洽电荷的密度泛函理论紧束缚方法,研究了不同宽度的硅烯纳米带的结构、稳定性和自旋极化电子性质.研究发现,稳定的完美和带有空位缺陷的硅烯纳米带表现为带有曲翘褶皱的蜂窝结构.纳米带边缘的曲翘度大于中心位置.空位缺陷更容易出现在纳米带边缘.纳米带的宽度可实现完美的硅烯纳米带的半导体性质和金属性之间的转换.硅烯纳米带中出现空位缺陷可有效调控纳米带自旋电子性质从半导体向金属性转变、半导体向半金属性转变,及金属性向为半导体或者半金属性质的转变.这种自旋电子性质的调控手段使得该种纳米材料在纳米电子自旋器件上有着潜在的应用价值.
扶锦云吴丽君王爽迟中钰刘亚
关键词:空位缺陷
Unusual Anterolateral Fascio Cutaneous Tight Flap for Extremity Soft Tissue Reconstruction
2024年
Soft tissue sarcoma is rare neoplasms that affect mainly the extremities. Surgery is the mean treatment and the resection results in extensive muscle and skin loss. The anterolateral tight flap is a good option for sarcomas arising in knees, superior third of legs and the medial face of thigh. The anatomy knowledge and the multidisciplinary approach is very important for a successful reconstruction. The authors report a successful case treated with the anterolateral tight flap and a literature review.
Eurico Cleto Ribeiro de CamposPedro Afonso KonoElder Dalazoana FilhoMelquesedeque dos SantosMatheus Von Jelita SalinaMarcelo Augusto de SouzaLeandro Cavalcante LipinskiGuataçara Salles Junior
Experiment of dynamic seepage of tight/shale oil under matrix fracture coupling
2024年
A physical simulation method with a combination of dynamic displacement and imbibition was established by integrating nuclear magnetic resonance(NMR)and CT scanning.The microscopic production mechanism of tight/shale oil in pore throat by dynamic imbibition and the influencing factors on the development effect of dynamic imbibition were analyzed.The dynamic seepage process of fracking-soaking-backflow-production integration was simulated,which reveals the dynamic production characteristics at different development stages and their contribution to enhancing oil recovery(EOR).The seepage of tight/shale reservoirs can be divided into three stages:strong displacement and weak imbibition as oil produced rapidly by displacement from macropores and fractures,weak displacement and strong imbibition as oil produced slowly by reverse imbibition from small pores,and weak displacement and weak imbibition at dynamic equilibrium.The greater displacement pressure results in the higher displacement recovery and the lower imbibition recovery.However,if the displacement pressure is too high,the injected water is easy to break through the front and reduce the recovery degree.The higher the permeability,the greater the imbibition and displacement recovery,the shorter the time of imbibition balance,and the higher the final recovery.The fractures can effectively increase the imbibition contact area between matrix and water,reduce the oil-water seepage resistance,promote the oil-water displacement between matrix and fracture,and improve the oil displacement rate and recovery of the matrix.The soaking after fracturing is beneficial to the imbibition replacement and energy storage of the fluid;also,the effective use of the carrying of the backflow fluid and the displacement in the mining stage is the key to enhancing oil recovery.
DU MengYANG ZhengmingLYU WeifengLI ZhongchengWANG GuofengCHEN XinliangQI XiangYAO LanlanZHANG YuhaoJIA NinghongLI HaiboCHANG YilinHUO Xu
关键词:EOR
致密油藏驱渗结合采油可行性研究被引量:1
2024年
致密油藏孔喉较小而渗吸作用显著,为提高致密油藏水驱效率,提出驱渗结合采油方法,同时利用驱替与渗吸作用。为验证该方法的可行性与主控因素,在水驱模型的基础上,考虑了渗吸作用,并基于实验数据特征建立了渗吸项模型,建立了驱渗结合采油数值模拟模型。结果表明,渗吸作用有效增加了注入水的波及面积,有效置换出基质中的原油,提升了采油效率;主控地质因素包括基质/裂缝孔隙度、渗透率和渗吸经验参数,主控工程因素包括注水压力、裂缝间距和半长;现场应用表明相较水驱方式,驱渗结合采油的日产油速度提高了约1倍,受效时间约为200 d,提高累产约为340 t,说明驱渗结合采油工艺可有效提高中国致密油藏的采收率,所建模型可用于驱渗结合采油的优化设计。
彭岩王一博雷征东王笑涵汪大伟张广清周大伟
关键词:致密油藏渗吸增产机理
A transient production prediction method for tight condensate gas wells with multiphase flow
2024年
Considering the phase behaviors in condensate gas reservoirs and the oil-gas two-phase linear flow and boundary-dominated flow in the reservoir,a method for predicting the relationship between oil saturation and pressure in the full-path of tight condensate gas well is proposed,and a model for predicting the transient production from tight condensate gas wells with multiphase flow is established.The research indicates that the relationship curve between condensate oil saturation and pressure is crucial for calculating the pseudo-pressure.In the early stage of production or in areas far from the wellbore with high reservoir pressure,the condensate oil saturation can be calculated using early-stage production dynamic data through material balance models.In the late stage of production or in areas close to the wellbore with low reservoir pressure,the condensate oil saturation can be calculated using the data of constant composition expansion test.In the middle stages of production or when reservoir pressure is at an intermediate level,the data obtained from the previous two stages can be interpolated to form a complete full-path relationship curve between oil saturation and pressure.Through simulation and field application,the new method is verified to be reliable and practical.It can be applied for prediction of middle-stage and late-stage production of tight condensate gas wells and assessment of single-well recoverable reserves.
BAI WenpengCHENG ShiqingWANG YangCAI DingningGUO XinyangGUO Qiao
关键词:PSEUDO-PRESSURE
A new interacting capillary bundle model on the multiphase flow in micropores of tight rocks
2024年
Surfactants are widely used in the fracturing fluid to enhance the imbibition and thus the oil recovery rate. However, current numerical models cannot capture the physics behind capillary imbibition during the wettability alteration by surfactants. Although the interacting capillary bundle(ICB) model shows potential in characterizing imbibition rates in different pores during wettability alteration, the existing ICB models neglect the influence of wettability and viscosity ratio on the imbibition behavior, making it difficult to accurately describe the oil-water imbibition behavior within the porous media. In this work,a new ICB mathematical model is established by introducing pressure balance without assuming the position of the leading front to comprehensively describe the imbibition behavior in a porous medium under different conditions, including gas-liquid spontaneous imbibition and oil-water imbibition.When the pore size distribution of a tight rock is known, this new model can predict the changes of water saturation during the displacement process in the tight rock, and also determine the imbibition rate in pores of different sizes. The water saturation profiles obtained from the new model are validated against the waterflooding simulation results from the CMG, while the imbibition rates calculated by the model are validated against the experimental observations of gas-liquid spontaneous imbibition. The good match above indicates the newly proposed model can show the water saturation profile at a macroscopic scale while capture the underlying physics of the multiphase flow in a porous medium at a microscopic scale. Simulation results obtained from this model indicate that both wettability and viscosity ratio can affect the sequence of fluid imbibition into pores of different sizes during the multiphase flow, where less-viscous wetting fluid is preferentially imbibed into larger pores while more-viscous wetting fluid tends to be imbibed into smaller pores. Furthermore, this model provides an avenue to calcu
Wen-Quan DengTian-Bo LiangWen-Zhong WangHao LiuJun-Lin WuFu-Jian Zhou
A technique for enhancing tight oil recovery by multi-field reconstruction and combined displacement and imbibition
2024年
A seepage-geomechanical coupled embedded fracture flow model has been established for multi-field coupled simulation in tight oil reservoirs,revealing the patterns of change in pressure field,seepage field,and stress field after long-term water injection in tight oil reservoirs.Based on this,a technique for enhanced oil recovery(EOR)combining multi-field reconstruction and combination of displacement and imbibition in tight oil reservoirs has been proposed.The study shows that after long-term water flooding for tight oil development,the pressure diffusion range is limited,making it difficult to establish an effective displacement system.The variation in geostress exhibits diversity,with the change in horizontal minimum principal stress being greater than that in horizontal maximum principal stress,and the variation around the injection wells being more significant than that around the production wells.The deflection of geostress direction around injection wells is also large.The technology for EOR through multi-field reconstruction and combination of displacement and imbibition employs water injection wells converted to production and large-scale fracturing techniques to restructure the artificial fracture network system.Through a full lifecycle energy replenishment method of pre-fracturing energy supplementation,energy increase during fracturing,well soaking for energy storage,and combination of displacement and imbibition,it effectively addresses the issue of easy channeling of the injection medium and difficult energy replenishment after large-scale fracturing.By intensifying the imbibition effect through the coordination of multiple wells,it reconstructs the combined system of displacement and imbibition under a complex fracture network,transitioning from avoiding fractures to utilizing them,thereby improving microscopic sweep and oil displacement efficiencies.Field application in Block Yuan 284 of the Huaqing Oilfield in the Ordos Basin has demonstrated that this technology increases the recovery factor by 1
LEI ZhengdongWANG ZhengmaoMU LijunPENG HuanhuanLI XinBAI XiaohuTAO ZhenLI HongchangPENG Yingfeng
致密砂岩储层压裂效果地质—工程影响因素评价
2024年
我国致密砂岩储层具有巨大的油气储量和开发潜力,水平井水力压裂改造技术是致密砂岩储层开发的关键增产措施。川中—川西过渡带J气田侏罗系沙溪庙组致密砂岩储层受其岩石力学性质及地质力学特征差异影响,相近压裂工艺下各井压裂改造效果差距较大。为提高压裂改造的有效性及针对性,研究了表征岩石力学性质的脆性指数及表征地质力学特征的最小水平主应力、水平两向主应力差3个地质因素对压裂效果的影响。以水平两向主应力差为分类条件,将研究区地质条件由好到差分为Ⅰ类和Ⅱ类;分析两类地质条件下各类工程因素对压裂效果的影响,并给出了不同地质条件下的工程参数优选范围。采用层次分析法和灰色关联法计算了上述地质及工程参数对压裂改造效果的影响权重,建立了压裂改造效果定量评价模型。基于所建模型与压裂改造效果的相关程度,优选层次分析法所建模型用于评价研究区压裂改造效果,并验证上述研究给出的工程参数建议范围的合理性及压裂改造效果综合评价模型的适用性。不同地质条件下水平井压裂工程参数建议范围存在较大差别,地质条件较好的水平井工程参数建议范围明显比地质条件较差的范围更大。优选层次分析法建立了用于评价研究区压裂改造效果的地质—工程综合评价模型。
宿航李瑞雪邓虎成秦源蔚伏美燕何建华曾青高宋林珂张家维
关键词:沙溪庙组侏罗系致密砂岩
窄河道致密砂岩气藏开发关键参数一体化优化设计
2024年
JQ气田沙溪庙组气藏为窄河道致密砂岩气藏,具有河道薄窄、发育复杂、储层物性差、优质储层纵横向非均质性强等特点,存在实施井效果差异大、现有开发技术难以满足规模效益开发需求的问题。为提高单井产量、改善气田开发效果、提高开发效益,文中以JQ气田沙溪庙组6号砂组为研究对象,采用一体化数值模拟方法,对配产比、井轨迹方位、水平段长及井网部署等开发关键参数进行了优化研究。结果表明:在相同压裂规模下,随着储层物性的降低,人工裂缝长度增加;储层性质越差,合理配产比越高,砂体宽度变化对配产比的影响越小;水平井轨迹方向与最大水平主应力方向的夹角为90°时产能最优,但考虑砂体宽度的约束,对井轨迹方位进行小角度调整更有利于产能增加;储层性质越差,推荐巷道距、井距及经济水平段长度越小,合理井距随砂体宽度的增大而减小。通过建立针对JQ气田窄河道不同类型储层的差异化开发技术对策,能够加大气藏储量控制动用程度,延长稳产期,提高气藏的开发效果,对于同类型气藏高效开发具有指导意义。
侯明华唐慧莹肖红林王艺云张烈辉
关键词:致密砂岩气藏
Gas-Water Production of a Continental Tight-Sandstone Gas Reservoir under Different Fracturing Conditions
2024年
A numerical model of hydraulic fracture propagation is introduced for a representative reservoir(Yuanba continental tight sandstone gas reservoir in Northeast Sichuan).Different parameters are considered,i.e.,the interlayer stress difference,the fracturing discharge rate and the fracturing fluid viscosity.The results show that these factors affect the gas and water production by influencing the fracture size.The interlayer stress difference can effectively control the fracture height.The greater the stress difference,the smaller the dimensionless reconstruction volume of the reservoir,while the flowback rate and gas production are lower.A large displacement fracturing construction increases the fracture-forming efficiency and expands the fracture size.The larger the displacement of fracturing construction,the larger the dimensionless reconstruction volume of the reservoir,and the higher the fracture-forming efficiency of fracturing fluid,the flowback rate,and the gas production.Low viscosity fracturing fluid is suitable for long fractures,while high viscosity fracturing fluid is suitable for wide fractures.With an increase in the fracturing fluid viscosity,the dimensionless reconstruction volume and flowback rate of the reservoir display a non-monotonic behavior,however,their changes are relatively small.
Yan LiuTianli SunBencheng WangYan Feng

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