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Experimental Study on Vortex-Induced Vibration of Rough Risers with Coupling Interference Effect Under Side-by-Side Arrangement
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作者 HU Ze-bo LIU Zhen +5 位作者 LI Peng GUO Hai-yan WANG Shu-bing REN Xiao-hui HOU Hao WANG Ye-shuo 《China Ocean Engineering》 SCIE EI CSCD 2024年第1期18-28,共11页
A vortex-induced vibration(VIV)experiment of rough risers with coupling interference effect under a side-by-side arrangement was carried out in a wave-current combined flume.The roughness of the riser was characterize... A vortex-induced vibration(VIV)experiment of rough risers with coupling interference effect under a side-by-side arrangement was carried out in a wave-current combined flume.The roughness of the riser was characterized by arranging different specifications of surface attachments on the surface of the riser.Rough risers with three different roughnesses were arranged side by side with smooth risers to explore the VIV response of the riser under the combined action of roughness and interference effect,and to reveal the coupling mechanism between roughness and interference effect.The experimental results show that,compared with that of a smooth riser,the VIV of a rough riser under the coupling interference effect has a wider"lock-in"region,and the displacement decreases more significantly at a high reduced velocity,which is more likely to excite higher-order modes and frequency responses.In addition,the displacement response and frequency response of the smooth riser are not significantly affected by wake interference from the rough riser,which is caused by the decrease of the wake region due to the delay of the boundary layer separation point of the rough riser. 展开更多
关键词 marine riser vortex-induced vibration side-by-side arrangement ROUGHNESS interference effect
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Dynamic Analysis of A Deepwater Drilling Riser with A New Hang-off System
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作者 LI Yan-wei LIU Xiu-quan +3 位作者 WANG Jin-long CHEN Guo-ming CHANG Yuan-jiang SHENG Lei-xiang 《China Ocean Engineering》 SCIE EI CSCD 2024年第1期29-41,共13页
The safety of risers in hang-off states is a vital challenge in offshore oil and gas engineering.A new hang-off system installed on top of risers is proposed for improving the security of risers.This approach leads to... The safety of risers in hang-off states is a vital challenge in offshore oil and gas engineering.A new hang-off system installed on top of risers is proposed for improving the security of risers.This approach leads to a challenging problem:coupling the dynamics of risers with a new hang-off system combined with multiple structures and complex constraints.To accurately analyze the dynamic responses of the coupled system,a coupled dynamic model is established based on the Euler-Bernoulli beam-column theory and penalty function method.A comprehensive analysis method is proposed for coupled dynamic analysis by combining the finite element method and the Newmarkβmethod.An analysis program is also developed in MATLAB for dynamic simulation.The simulation results show that the dynamic performances of the risers at the top part are significantly improved by the new hang-off system,especially the novel design,which includes the centralizer and articulation joint.The bending moment and lateral deformation of the risers at the top part decrease,while the hang-off joint experiences a great bending moment at the bottom of the lateral restraint area which requires particular attention in design and application.The platform navigation speed range under the safety limits of risers expands with the new hang-off system in use. 展开更多
关键词 deepwater drilling riser new hang-off system dynamic analysis finite element method penalty function method
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Effect of safety valve types on the gas venting behavior and thermal runaway hazard severity of large-format prismatic lithium iron phosphate batteries
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作者 Zhuangzhuang Jia Yuanyuan Min +5 位作者 Peng Qin Wenxin Mei Xiangdong Meng Kaiqiang Jin Jinhua Sun Qingsong Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期195-207,I0006,共14页
The safety valve is an important component to ensure the safe operation of lithium-ion batteries(LIBs).However,the effect of safety valve type on the thermal runaway(TR)and gas venting behavior of LIBs,as well as the ... The safety valve is an important component to ensure the safe operation of lithium-ion batteries(LIBs).However,the effect of safety valve type on the thermal runaway(TR)and gas venting behavior of LIBs,as well as the TR hazard severity of LIBs,are not known.In this paper,the TR and gas venting behavior of three 100 A h lithium iron phosphate(LFP)batteries with different safety valves are investigated under overheating.Compared to previous studies,the main contribution of this work is in studying and evaluating the effect of gas venting behavior and TR hazard severity of LFP batteries with three safety valve types.Two significant results are obtained:(Ⅰ)the safety valve type dominates over gas venting pressure of battery during safety venting,the maximum gas venting pressure of LFP batteries with a round safety valve is 3320 Pa,which is one order of magnitude higher than other batteries with oval or cavity safety valve;(Ⅱ)the LFP battery with oval safety valve has the lowest TR hazard as shown by the TR hazard assessment model based on gray-fuzzy analytic hierarchy process.This study reveals the effect of safety valve type on TR and gas venting,providing a clear direction for the safety valve design. 展开更多
关键词 Lithium iron phosphate battery Safety valve Thermal runaway Gas venting behavior Thermal runaway hazard severity Gray-fuzzy analytic hierarchy process
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Deep-large faults controlling on the distribution of the venting gas hydrate system in the middle of the Qiongdongnan Basin, South China Sea
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作者 Jin-feng Ren Hai-jun Qiu +6 位作者 Zeng-gui Kuang Ting-wei Li Yu-lin He Meng-jie Xu Xiao-xue Wang Hong-fei Lai Jin Liang 《China Geology》 CAS CSCD 2024年第1期36-50,共15页
Many locations with concentrated hydrates at vents have confirmed the presence of abundant thermogenic gas in the middle of the Qiongdongnan Basin(QDNB).However,the impact of deep structures on gasbearing fluids migra... Many locations with concentrated hydrates at vents have confirmed the presence of abundant thermogenic gas in the middle of the Qiongdongnan Basin(QDNB).However,the impact of deep structures on gasbearing fluids migration and gas hydrates distribution in tectonically inactive regions is still unclear.In this study,the authors apply high-resolution 3D seismic and logging while drilling(LWD)data from the middle of the QDNB to investigate the influence of deep-large faults on gas chimneys and preferred gasescape pipes.The findings reveal the following:(1)Two significant deep-large faults,F1 and F2,developed on the edge of the Songnan Low Uplift,control the dominant migration of thermogenic hydrocarbons and determine the initial locations of gas chimneys.(2)The formation of gas chimneys is likely related to fault activation and reactivation.Gas chimney 1 is primarily arises from convergent fluid migration resulting from the intersection of the two faults,while the gas chimney 2 benefits from a steeper fault plane and shorter migration distance of fault F2.(3)Most gas-escape pipes are situated near the apex of the two faults.Their reactivations facilitate free gas flow into the GHSZ and contribute to the formation of fracture‐filling hydrates. 展开更多
关键词 venting gas hydrates Deep-large faults Gas chimney Gas-escape pipes High-resolution 3D seismic Logging while drilling Qiongdongnan Basin South China Sea
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Abandonment and Recovery Operation of Steel Lazy-Wave Riser in Deepwater by Controlled Vessel and Cable Velocity Rate
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作者 GU Ji-jun HUANG Jun +3 位作者 GAO Lei CHEN Lei-lei JIA Ji-chuan WANG Shu-jiang 《China Ocean Engineering》 SCIE EI CSCD 2023年第1期29-41,共13页
Evaluation of abandonment and recovery operation of steel lazy-wave riser in deepwater is presented in this paper.The calculation procedure includes two single continuous SLWR and cable segments, which are coupled tog... Evaluation of abandonment and recovery operation of steel lazy-wave riser in deepwater is presented in this paper.The calculation procedure includes two single continuous SLWR and cable segments, which are coupled together to form the overall mathematical model. Then the equilibrium equations of SLWR and cable are established based on minimum total potential energy principle. The coupled equations are discretized by the finite difference method and solved by Newton-Raphson technique in an iterative manner. The present method is validated by well-established commercial code OrcaFlex. Recovery methods by considering different ratios of vessel’s moving velocity to cable’s recovery velocity are evaluated to optimize the abandonment and recovery operation. In order to keep the tension more stable during the recovery process, the rate ratio before leaving the seabed is increased, and the rate ratio after leaving the seabed is reduced. 展开更多
关键词 steel lazy-wave riser ABANDONMENT RECOVERY
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Linear analysis of the dynamic response of a riser subject to internal solitary waves
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作者 Dalin TAN Xu WANG +1 位作者 Jinlong DUAN Jifu ZHOU 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第6期1023-1034,共12页
The flow field induced by internal solitary waves(ISWs)is peculiar wherein water motion occurs in the whole water depth,and the strong shear near the pycnocline can be generated due to the opposite flow direction betw... The flow field induced by internal solitary waves(ISWs)is peculiar wherein water motion occurs in the whole water depth,and the strong shear near the pycnocline can be generated due to the opposite flow direction between the upper and lower layers,which is a potential threat to marine risers.In this paper,the flow field of ISWs is obtained with the Korteweg-de Vries(Kd V)equation for a two-layer fluid system.Then,a linear analysis is performed for the dynamic response of a riser with its two ends simply supported under the action of ISWs.The explicit expressions of the deflection and the moment of the riser are deduced based on the modal superposition method.The applicable conditions of the theoretical expressions are discussed.Through comparisons with the finite element simulations for nonlinear dynamic responses,it is proved that the theoretical expressions can roughly reveal the nonlinear dynamic response of risers under ISWs when the approximation for the linear analysis is relaxed to some extent. 展开更多
关键词 internal solitary wave(ISW) riser dynamic response linear analysis
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Experimental Study on Vortex-Induced Vibration of Marine Riser Model with Coupling Interference Effect Under Combined Internal and External Flow
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作者 REN Xiao-hui LI Peng +5 位作者 CHEN Xin WANG Ye-shuo LIU Zhen HAO Lian-hong WANG Yu HUANG Yi-jie 《China Ocean Engineering》 SCIE EI CSCD 2023年第4期673-684,共12页
A partition model of interference efficiency was constructed to study the coupling interference effect under combined internal and external flow.The concept of“internal flow efficiency”,“velocity ratio”and“interf... A partition model of interference efficiency was constructed to study the coupling interference effect under combined internal and external flow.The concept of“internal flow efficiency”,“velocity ratio”and“interference efficiency”were introduced to quantify the effect of internal flow and interference,and reveal the coupling mechanism among internal flow,external flow and interference effect.The results showed that the dynamic response of risers under variable angles was significantly different after considering the effect of internal flow.When the external flow velocity was smaller than 0.25 m/s,the vibration of risers was promoted by the internal flow.With the increase of external flow velocity,the effect of internal flow was weakened and the dynamic response of riser mainly depended on the external flow and interference effect.Under the effect of different internal flow,the interference efficiency had similar change trend.The interference effect amplified the complex secondary flow effect inside the riser,making the dynamic response of riser complex and random.In this paper,the overlap area and subdivision criterion of interference effect were constructed within the range of experimental velocity ratio,and the change curve of interference efficiency was obtained with an average meaning,which may have important practical meaning. 展开更多
关键词 marine riser vortex-induced vibration internal flow interference effect interference efficiency internal flow efficiency
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A New Simulation Model for Recoil Analysis of Deep-Water Drilling Risers After Emergency Disconnection
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作者 WU Jun-kang MENG Shuai 《China Ocean Engineering》 SCIE EI CSCD 2023年第4期637-644,共8页
The recoil response of a deep-water drilling riser following an ED(Emergency Disconnection)scenario is a transient and sensitive process.The recoiling displacement of the riser is the resultant of recoil motion and ax... The recoil response of a deep-water drilling riser following an ED(Emergency Disconnection)scenario is a transient and sensitive process.The recoiling displacement of the riser is the resultant of recoil motion and axial stretch.How-ever,it is typically represented by one variable in recoil simulations.As axial deformation is quite small compared with axial motion in the recoil process,it inevitably introduces numerical errors(i.e.,a large number annihilating a small number).Thus,it is hard to perform a quantitative analysis of axial deformation,although a consensus initial deformation is essential for recoil dynamics.Moreover,the triggered axial natural modes have never been examined before.In this study,the recoil response is decomposed into two parts:recoil motion and axial deformation,and a novel model is developed by Galerkin method.It has demonstrated that the initial stretch has a significant effect at the initial stage in recoil.The existing models underestimate the effects of axial deformation.The new model can capture information of triggered natural modes and figure out the modes undergoing dynamic compression.This study can be beneficial to overpull setting,determination of ED time and anti-recoil control optimization. 展开更多
关键词 recoil analysis drilling riser emergency disconnection axial deformation Galerkin method
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Dynamic Analysis of A Deep-Water Compliant Vertical Access Riser with A Variable Length During Installation
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作者 LIANG Wei-xing LOU Min +1 位作者 WANG Yu ZHANG Rui 《China Ocean Engineering》 SCIE EI CSCD 2023年第4期568-579,共12页
Compliant vertical access risers(CVAR)have broad application prospects in deep-water oil and gas transportation.However,the mechanical behaviors of the CVAR with a variable length during installation remains unclear.T... Compliant vertical access risers(CVAR)have broad application prospects in deep-water oil and gas transportation.However,the mechanical behaviors of the CVAR with a variable length during installation remains unclear.To address this issue,based on the flexible segment method,a model of CVAR with a variable length during installation is established in this study,which is verified by the comparison with commercial software.Then,the mechanical behaviors of CVAR during installation are investigated.The results reveal that the CVAR configuration is significantly affected by the buoyancy blocks.The streamwise displacement of CVAR increases with the increase of current velocity.When the BOP weight is insuffcient,obvious upbending is observed in the lower region and transition region,leading to local compression.When the platform moves in the opposite direction to the current,the maximum stress is larger than that of the scenario when the platform moves in the same direction as the current. 展开更多
关键词 compliant vertical access riser installation analysis dynamic performance variable length
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Deformation and Stress Analysis of the Deepwater Steel Lazy Wave Riser Subjected to Internal Solitary Waves
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作者 LI Fuheng GUO Haiyan +2 位作者 GU Honglu LIU Zhen LI Xiaomin 《Journal of Ocean University of China》 SCIE CAS CSCD 2023年第2期377-392,共16页
The dynamic response of the steel lazy wave riser(SLWR)subjected to the internal solitary wave is a key to assessing its application feasibility.The innovation of this paper is to study the dynamic response properties... The dynamic response of the steel lazy wave riser(SLWR)subjected to the internal solitary wave is a key to assessing its application feasibility.The innovation of this paper is to study the dynamic response properties of the SLWR with large deformation characteristics under internal wave excitation.A numerical scheme of the SLWR is constructed using the slender-rod theory,and the internal solitary wave(ISW)with a two-layer seawater model is simulated by the extended Korteweg-deVries equation.The finite element method combined with the Newmark-βmethod is applied to discretize the equations and update the time integration.The ISW excitation combined with vessel motion on the dynamic deformation and stress of the SLWR is investigated,and extensive simulations of the ISW parameters,including the interface depth ratio and density difference,are carried out.Case calculation reveals that the displacement of the riser in the lower interface layer increases significantly under the ISW excitation,and the stresses at a part of both ends grow evidently.Moreover,the mean value of riser responses under a combination of vessel motion and ISW coincides with the ISW-induced ones.Furthermore,the dynamic responses along the whole riser,including the displacement amplitudes,bending moment amplitudes,and stress amplitudes,almost increase with the increase in interface depth ratios and density differences. 展开更多
关键词 steel lazy wave riser(SLWR) internal solitary wave(ISW) slender-rod theory DEFORMATION stress
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Dynamic Properties of Steel Catenary Riser near Touchdown Point Under Coplanar Vessel Heave and Vortex Induced Vibration
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作者 ZHANG Xiang-rui WANG Kun-peng +2 位作者 JIANG Da-peng TANG Kai LI Yu-long 《China Ocean Engineering》 SCIE EI CSCD 2023年第2期288-298,共11页
The present study establishes a simple numerical model for the coupled response of a steel catenary riser(SCR) subjected to coplanar vessel motion and vortex-induced vibration(VIV). Owing to the large deflection of th... The present study establishes a simple numerical model for the coupled response of a steel catenary riser(SCR) subjected to coplanar vessel motion and vortex-induced vibration(VIV). Owing to the large deflection of the SCR, the geometric nonlinearity is considered in this model. The hydrodynamic force comprises the excitation force and hydrodynamic damping, where the excitation force that only exists when the non-dimensional frequency is located in the lock-in range, is associated with the VIV. The hydrodynamic force model is validated based on the published VIV test data.As for the seabed resistance at the touchdown zone(TDZ), integrated with an initial seabed trench, the hysteretic feature is modeled. Based on the model, the study emphasizes on the coupled response characteristics near the touchdown point(TDP) induced by coplanar vessel heave and VIV, and analyzes the sensitivity of the coupled response to the heaving amplitude and frequency. It is found that with the increase of the heave amplitude and frequency, the VIV can be obviously mitigated, but the heave-related response in the coupled analysis seems to be close to that in the heave-only simulation. Finally, the fatigue damage near TDP is parametrically investigated based on the separate analysis and the coupled analysis. The results demonstrate that the coupled effect plays a significant role in the fatigue assessment near TDP. Besides, the proportion of the coupled effect accounting for the total fatigue damage decreases with the increasing seabed stiffness, while increases with the increasing seabed trench depth. 展开更多
关键词 vessel heave vortex induced vibration coupled effect steel catenary riser(SCR)-seabed interaction seabed trench
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基于拉法尔喷管的新型放空立管可行性研究
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作者 马强 《化工设备与管道》 CAS 北大核心 2024年第2期89-94,共6页
针对传统放空立管介质出口速度小、扩散高度低等缺点。文章基于理论分析和模拟的手段对新型放空立管进行可行性研究。结果表明,放空介质动能来源于进出口压差及介质焓值,放空过程是一个压降、温降过程;通过对新型放空立管合理设计,在不... 针对传统放空立管介质出口速度小、扩散高度低等缺点。文章基于理论分析和模拟的手段对新型放空立管进行可行性研究。结果表明,放空介质动能来源于进出口压差及介质焓值,放空过程是一个压降、温降过程;通过对新型放空立管合理设计,在不改变进出口条件下,可比传统立管出口速度提高37.5%~41.7%,提高可燃气体的扩散高度,降低对地面工作人员的潜在危害。该新型放空立管切实可行,可为今后放空立管的设计提供新的思路。 展开更多
关键词 天然气 放空立管 拉法尔喷管 可行性
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排烟口朝向与挡烟垂壁对地铁站台排烟效果的影响
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作者 钟委 吴英昊 +3 位作者 田英 梁天水 王珍珍 高子鹤 《中国安全生产科学技术》 CAS CSCD 北大核心 2024年第1期107-113,共7页
为提高地铁站台的排烟效果,采用数值模拟方法,对地铁站不同排烟口朝向的机械排烟系统排烟效果进行分析,并进一步对比挡烟垂壁高度对排烟效果影响。研究结果表明:排烟口朝向不是影响烟气控制效果的主要因素,顶面排烟的排烟效果最佳,其总... 为提高地铁站台的排烟效果,采用数值模拟方法,对地铁站不同排烟口朝向的机械排烟系统排烟效果进行分析,并进一步对比挡烟垂壁高度对排烟效果影响。研究结果表明:排烟口朝向不是影响烟气控制效果的主要因素,顶面排烟的排烟效果最佳,其总排热量是底面排烟的1.32倍,总排烟量是底面排烟的1.19倍;并通过分析3种排烟系统吸入烟气的方式和温度解释排烟效果产生差异的原因;增设挡烟垂壁可起到良好的控烟效果,当挡烟垂壁下沿高度分别降低至3.5,3.0,2.5 m时,顶面排烟,侧面排烟和底面排烟能够将烟气控制在起火防烟分区;挡烟垂壁与机械排烟系统具有协同作用,设置挡烟垂壁可以有效改善排烟效果,因此建议采用排烟管道顶面开口的排烟方式,并可通过设置一定高度的挡烟垂壁提高现有排烟系统的排烟效果。研究结果可为地铁站台排烟系统设计提供参考与借鉴。 展开更多
关键词 地铁站台 排烟口朝向 机械排烟 挡烟垂壁
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海上油田井下放气阀冲蚀机理
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作者 李良庆 褚建国 周欢 《腐蚀与防护》 CAS CSCD 北大核心 2024年第2期85-89,共5页
针对南海西部高温高压井中砂砾对放气阀内部冲蚀导致的失效问题,利用Fluent软件对放气阀内部流场进行了仿真分析。结果表明:放气阀内部的密封头端部、外侧以及下接头端部存在严重的冲蚀磨损,且如其他条件控制不变,密封间隙的减小与上返... 针对南海西部高温高压井中砂砾对放气阀内部冲蚀导致的失效问题,利用Fluent软件对放气阀内部流场进行了仿真分析。结果表明:放气阀内部的密封头端部、外侧以及下接头端部存在严重的冲蚀磨损,且如其他条件控制不变,密封间隙的减小与上返排量的增大均会导致冲蚀速率的增大;随着含砂量的增大,砂粒撞击工具内部的概率上升,导致冲蚀加剧。建议放气阀材料选用防腐蚀材料以避免产生密封间隙,同时增加放气阀开启的频率以及加强防砂措施的实施。 展开更多
关键词 南海 放气阀 FLUENT 砂砾 冲蚀
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连通设备粉尘爆炸泄压面积确定方法
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作者 李刚 周雷 +1 位作者 张晓宇 张凯 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第2期276-281,共6页
国内外相关标准提供了单体设备的泄压面积计算方法,但连通设备的准则尚属空白.通过FLACS数值模拟,以玉米淀粉为爆炸介质,探究了连通设备内的泄爆压力和压力上升速率.结果表明:当管道长度一定时,传爆容器内最大泄爆压力随泄压面积增加而... 国内外相关标准提供了单体设备的泄压面积计算方法,但连通设备的准则尚属空白.通过FLACS数值模拟,以玉米淀粉为爆炸介质,探究了连通设备内的泄爆压力和压力上升速率.结果表明:当管道长度一定时,传爆容器内最大泄爆压力随泄压面积增加而降低;在设置相同泄压面积时,传爆容器内的最大泄爆压力随管道长度的增长而增大,且达到最大泄爆压力的时间也随之延后;传爆容器所需最小安全泄压面积大于同等大小单体设备的泄压面积,说明现有单体设备的泄压面积计算方法对于连通设备不适用.通过数值拟合,对标准中单体设备的泄压面积计算公式进行修正,使其满足连通设备安全泄压要求.研究结果为连通系统的防爆设计提供参考和依据. 展开更多
关键词 连通设备 粉尘爆炸 数值模拟 泄爆压力 泄压面积
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储气库注采工艺优化研究与应用
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作者 高继峰 银永明 +2 位作者 公明明 孙娟 吴佳伟 《西南石油大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第1期126-135,共10页
储气库建设对供气管网安全、平衡供气具有重要战略意义,在天然气调峰中起到举足轻重的作用。目前,储气库工艺存在压缩机组中体放空对空排放安全隐患和增压气润滑油超标、采出气轻烃超标、甘醇再生系统尾气对空排放、集输管线积盐腐蚀等... 储气库建设对供气管网安全、平衡供气具有重要战略意义,在天然气调峰中起到举足轻重的作用。目前,储气库工艺存在压缩机组中体放空对空排放安全隐患和增压气润滑油超标、采出气轻烃超标、甘醇再生系统尾气对空排放、集输管线积盐腐蚀等问题。针对中体放空,设置放空引射装置,将排放物引至火炬集中排放,避免可燃气体站内聚集的隐患;针对润滑油含量超标(体积比为16×10^(−6)),设置高压除油器,降低增压气油含量,消除二次污染;通过对脱水装置吸收塔和再生装置优化,避免甘醇起泡失活;通过对甘醇再生气系统改造,实现再生气回收利用,降低环境污染,节约能耗。 展开更多
关键词 储气库 往复式压缩机组 润滑油 中体放空 甘醇
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1295例静脉留置针不良事件分析及监管工作改进建议
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作者 李倩 孟艳秋 郭洁 《医疗装备》 2024年第2期53-56,共4页
目的基于真实世界数据,探讨影响静脉留置针使用安全的相关因素,针对该产品不良事件监测工作提出改进建议。方法收集2020年4月至2021年3月河南省药品不良反应监测中心收到的河南省企业生产的静脉留置针不良事件报告,剔除错报、误报、重... 目的基于真实世界数据,探讨影响静脉留置针使用安全的相关因素,针对该产品不良事件监测工作提出改进建议。方法收集2020年4月至2021年3月河南省药品不良反应监测中心收到的河南省企业生产的静脉留置针不良事件报告,剔除错报、误报、重复上报及无效报告后共纳入1295例不良事件报告。对不良事件的上报情况、患者情况、类型、表现进行分析,并针对静脉留置针不良事件监测工作提出改进建议。结果1295例不良事件中,静脉留置针故障类不良事件919例,占70.97%,其中漏液、堵塞最常见,发生原因主要包括产品质量问题、操作技术及超范围使用等;患者伤害类不良事件548例,占42.32%,其中穿刺部位红肿最常见,发生原因主要包括软管有毛刺、操作不熟练、患者血管条件差等。结论建议通过以下方面改进静脉留置针不良事件监测工作:(1)建议医疗机构加强培训,培养主动监测及上报意识、持续提升不良事件报告质量;(2)建议产品生产、经营企业承担不良事件监测责任,加强分析评价并采取有效控制措施;(3)建议监管部门规范不良事件术语,积极开展重点监测,持续提升用械安全。 展开更多
关键词 静脉留置针 真实世界数据 不良事件 用械安全
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平台运动对柔性立管涡激振动影响的实验研究
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作者 朱红钧 刘文丽 高岳 《力学学报》 EI CAS CSCD 北大核心 2024年第3期565-576,共12页
基于自循环实验水槽开展了存在平台纵荡和横荡运动时的悬链线型柔性立管涡激振动响应测试,模型立管的长径比为125,测试的平均约化速度范围为4.40~39.33.利用激光位移传感器和高速摄像机分别监测了平台运动和立管振动位移,从响应频率、... 基于自循环实验水槽开展了存在平台纵荡和横荡运动时的悬链线型柔性立管涡激振动响应测试,模型立管的长径比为125,测试的平均约化速度范围为4.40~39.33.利用激光位移传感器和高速摄像机分别监测了平台运动和立管振动位移,从响应频率、振幅和振动形态等方面分析了平台运动对立管振动的影响.根据立管振动的主导频率与平台运动的主导频率是否相同,区分了强耦联和弱耦联现象,定义了强耦联的立管长度,其在立管振动的模态过渡组次相对较短.立管振动与平台运动存在两个方向均耦联、仅单一方向耦联和不耦联3种情形.其中,立管平面外振动受平台运动的影响较平面内振动小.以立管瞬时形态的波腹个数变化量化了模态竞争和平台运动对振动形态的影响.通过对比过滤平台固有频率前后的立管振幅、振形与主导频率的时空分布,用强耦合的时间权重和空间长度量化了平台对立管振动耦合的影响,发现高约化速度时,平台运动抑制了立管空间的频率竞争,也抑制了立管平面内与平面外振动的耦合响应. 展开更多
关键词 立管振动 平台运动 耦联长度 耦合程度 瞬时振型
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海洋环境下深水区立管腐蚀速率预测
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作者 骆正山 马园园 +1 位作者 骆济豪 王小完 《安全与环境学报》 CAS CSCD 北大核心 2024年第1期92-98,共7页
为提升海洋环境下深水区立管腐蚀速率的预测精度,建立基于改进秃鹰搜索算法(Improved Bald Eagle Search, IBES)的EDGM(1, 1,ρ)腐蚀速率预测模型。通过Sine混沌映射初始化种群、莱维飞行策略、折射反向学习策略和柯西高斯变异策略提高... 为提升海洋环境下深水区立管腐蚀速率的预测精度,建立基于改进秃鹰搜索算法(Improved Bald Eagle Search, IBES)的EDGM(1, 1,ρ)腐蚀速率预测模型。通过Sine混沌映射初始化种群、莱维飞行策略、折射反向学习策略和柯西高斯变异策略提高秃鹰搜索算法的寻优能力和收敛速度;利用IBES算法优化EDGM(1, 1,ρ)中的参数ρ,建立IBES-EDGM(1, 1,ρ)模型以提高立管腐蚀速率的预测精度。以南海某海洋深水区立管数据为基础进行腐蚀速率预测,分析对比3种模型的预测结果。结果表明,优化后的模型与原模型相比误差更小,且预测精度得到了提高,能够更准确地预测深海立管的腐蚀速率,为后续管道系统的维修和更换提供理论参考。 展开更多
关键词 安全工程 海洋环境 深水区立管 腐蚀速率 改进秃鹰搜索算法(IBES) EDGM(1 1)模型
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基于尾流振子模型的柔性悬挂立管涡激振动分析
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作者 邹丽 国奇 +1 位作者 金国庆 于宗冰 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期57-66,共10页
为了分析深海采矿柔性立管涡激振动响应特性,提出了一种高效的针对特殊边界的处理方法.基于欧拉梁模型和尾流振子模型,结合有限差分方法,系统研究不同边界条件、中间仓质量和海流剪切参数对深海采矿立管涡激振动的影响规律.结果表明:悬... 为了分析深海采矿柔性立管涡激振动响应特性,提出了一种高效的针对特殊边界的处理方法.基于欧拉梁模型和尾流振子模型,结合有限差分方法,系统研究不同边界条件、中间仓质量和海流剪切参数对深海采矿立管涡激振动的影响规律.结果表明:悬挂立管底部会产生较大位移,与传统两端铰接立管相比,相同激励下悬挂立管会激发出更高阶的振动模态,从原本5阶模态升至6阶;随着中间仓质量增加,立管振动的主导模态会随之降低,在同一模态下,悬挂立管底部位移逐渐减小,从0.460降至0.405,当模态转换时,底部位移均方根会迅速增大,由0.405升至0.413;底部位移随着均匀流速的增加呈现出波动趋势,在一定流速范围内,位移随流速线性变化;随着剪切参数增大,在同一模态下,立管底部的位移逐渐减小,当模态转换时,底部位移会增加. 展开更多
关键词 深海采矿 柔性悬挂立管 涡激振动 尾流振子模型
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