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Mass production and performance evaluation of CHSN01 jacket for future fusion applications
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作者 Wei-Jun Wang Jing-Gang Qin +7 位作者 Yong-Sheng Wu Jing Jin Jin-Hao Shi Yi-Fei Wu Zheng-Ping Tu Xiao-Wei Chen Jian-Gang Li Huan Jin 《Nuclear Science and Techniques》 2026年第2期245-255,共11页
A low-temperature-resistant and high-strength stainless-steel jacket is a key component in the superconducting magnet of a fusion reactor.The development of cryogenic structural materials with high strength and toughn... A low-temperature-resistant and high-strength stainless-steel jacket is a key component in the superconducting magnet of a fusion reactor.The development of cryogenic structural materials with high strength and toughness poses a challenge for the future development of high-field superconducting magnets in fusion reactors.The yield strength of the International Thermonuclear Experimental Reactor developed for low-temperature structural materials at 4.2K is below 1100MPa,which fails to meet the demand for structural components with yield strengths exceeding 1500MPa at 4.2K in the future fusion reactors.CHSN01(formerly N50H),which is a low-temperature structural material developed in China,exhibits exceptional strength and toughness,thereby making it highly promising for practical applications.Recently,a 30 t jacket measuring approximately 5000m in total length was produced.Its low-temperature mechanical properties were tested using a sampling method to ensure compliance with application requirements.This paper presents the experimental data of the CHSN01 jacket and tests of the physical properties of the material in the temperature range of 4–300 K.The physical properties were unaffected by magnetic field.Furthermore,this paper discusses the feasibility of employing CHSN01 as a cryogenic structural material capable of withstanding high magnetic fields in next-generation fusion reactors. 展开更多
关键词 CHSN01 CICC jacket Cryogenic steel Fusion reactor
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Experimental Study on Heat Transfer Characteristics of New Jacketed Cold Storage Condenser
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作者 Lei Xing Haonan Huang +2 位作者 Mingyang Sun Dongyue Jiang Qiang He 《Frontiers in Heat and Mass Transfer》 2026年第1期1-24,共24页
In response to the actual demands of the energy storage type organic Rankine power generation cycle,this study proposes a new type of jacketed shell and tube heat exchanger with integrated cold storage and heat exchan... In response to the actual demands of the energy storage type organic Rankine power generation cycle,this study proposes a new type of jacketed shell and tube heat exchanger with integrated cold storage and heat exchange.N-tedecane is selected as the phase change material for cold storage,low-temperature water as the cold source,and R134a as the heat source.The phase change material for cold storage is filled inside the jacket tube of the heat exchanger.Cold fluid is introduced into the inner tube to cause the phase change material to condense and store cold.After the cold storage is completed,R134a flows in from the shell side and condenses through heat exchange with the solidified phase change material for energy storage.This study discusses the influence laws of different cold water mass flow rates and temperatures on the cold storage performance of this heat exchanger,and analyzes the condensation effect of R134a.The results show that when the mass flow rate is 0.5 kg/s and the cold water temperature is between 3 and 4℃,the average power of the energy storage heat exchanger in the condensation experiment is 80W,and the average convective heat transfer coefficient is 110.73 W/(m^(2)⋅K).This research provides an experimental basis for the development of energy storage organic Rankine power generation cycles. 展开更多
关键词 Phase change cold storage N-tetradecarane shell and tube heat exchanger R134A heat transfer coefficient jacketed type total cold storage capacity cooling power
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Innovative Outdoor Jacket Design Featuring Honeycomb Thermal Layers with Graphene/Silver Integration for Enhanced Thermal Conductivity
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作者 Emine Dilara Koçak Ayça Kanlıgöl +2 位作者 Demet Ateş Selin Elyak Zeynep Ünver 《Journal of Textile Science and Technology》 2025年第1期8-19,共12页
Outdoor jackets are engineered to protect against extreme weather while ensuring comfort and safety. Key to this protection is the thermal properties, achieved through insulation materials like down feathers and synth... Outdoor jackets are engineered to protect against extreme weather while ensuring comfort and safety. Key to this protection is the thermal properties, achieved through insulation materials like down feathers and synthetic fibers, which trap heat and minimize heat loss. Resistance to wind, rain, and snow is provided by waterproof and windproof fabrics, while breathability allows moisture to escape, maintaining a comfortable microclimate. Air permeability and water resistance are essential for achieving this balance. This study examines two outdoor jacket prototypes with six material layers each. The outer layer (Layer 1) consists of 100% polyester coated with polyurethane for waterproofing. Inner layers (Layers 2, 3, and 6) use wool/cotton and wool/polyamide blends, offering insulation and moisture-wicking properties. Down feathers are used as the filling material, providing excellent warmth. Advanced materials like graphene and silver honeycomb fabrics were included to enhance thermal conductivity and regulate heat transfer. Performance testing focused on thermal conductivity, comfort (water and air permeability), and mechanical properties like tensile strength and tear resistance. Tests also assessed spray application and fastness to evaluate durability under environmental exposure. Results showed that jackets with silver-infused honeycomb fabrics had superior thermal conductivity, enabling better heat regulation and comfort in harsh conditions. The findings highlight the advantages of integrating silver honeycomb fabrics into outdoor jackets. These materials enhance insulation, thermal regulation, and overall comfort, making them ideal for high-performance designs. Incorporating such fabrics ensures functionality, durability, and user protection in extreme environments. 展开更多
关键词 Honeycomb Thermal Fabric Outdoor jacket Design SILVER GRAPHANE
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Multivariate Risk Assessment for Offshore Jacket Platforms by Gaidai Reliability Method
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作者 Oleg Gaidai Yu Cao +2 位作者 Yan Zhu Fuxi Zhang Hongchen Li 《哈尔滨工程大学学报(英文版)》 2025年第2期428-436,共9页
The novel structural reliability methodology presented in this study is especially well suited for multidimensional structural dynamics that are physically measured or numerically simulated over a representative timel... The novel structural reliability methodology presented in this study is especially well suited for multidimensional structural dynamics that are physically measured or numerically simulated over a representative timelapse.The Gaidai multivariate reliability method is applied to an operational offshore Jacket platform that operates in Bohai Bay.This study demonstrates the feasibility of this method to accurately estimate collapse risks in dynamic systems under in situ environmental stressors.Modern reliability approaches do not cope easily with the high dimensionality of real engineering dynamic systems,as well as nonlinear intercorrelations between various structural components.The Jacket offshore platform is chosen as the case study for this reliability analysis because of the presence of various hotspot stresses that synchronously arise in its structural parts.The authors provide a straightforward,precise method for estimating overall risks of operational failure,damage,or hazard for nonlinear multidimensional dynamic systems.The latter tool is important for offshore engineers during the design stage. 展开更多
关键词 Monte carlo simulation System reliability jacket offshore structure Bohai bay Energy
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Effects of Repair Grouting and Jacketing on Corrosion Concrete Using Ultrasonic Method
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作者 Rivky Afanda Ahmad Zaki 《Structural Durability & Health Monitoring》 2025年第2期265-284,共20页
Concrete is one of the most important elements in building construction.However,concrete used in construction is susceptible to damage due to corrosion.The influence of corrosive substances causes changes in the reinf... Concrete is one of the most important elements in building construction.However,concrete used in construction is susceptible to damage due to corrosion.The influence of corrosive substances causes changes in the reinforcing steel and affects the strength of the structure.The repair method is one approach to overcome this problem.This research aims to determine the effect of grouting and jacketing repairs on corroded concrete.The concrete used has dimensions of 15 cm×15 cm×60 cm with planned corrosion variations of 50%,60%,and 70%.The test objects were tested using the Non-Destructive Testing(NDT)method using Ultrasonic Pulse Velocity(UPV).The test results show that the average speed of normal concrete is 5070 m/s,while the lowest average speed is 3070 m/s on the 70%planned corrosion test object.The test object was then given a load of 1600 kgf.At this stage,there is a decrease in speed and wave shape with the lowest average speed obtained at 2753 m/s.The repair method is an effort to restore concrete performance by using grouting and jacketing.Grouting is done by injecting mortar material into it.Jacketing involves adding thickness to the existing concrete layer with additional layers of concrete.After improvements were made,there was an improvement in the UPV test,with a peak speed value of 4910 m/s.Repairing concrete by filling cracks can improve concrete continuity and reduce waveform distortion,thereby increasing wave propagation speed. 展开更多
关键词 CORROSION CONCRETE REPAIR GROUTING jacketING non-destructive testing(NDT) ultrasonic pulse velocity(UPV)
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The deer wearing a reflective jacket
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作者 许学霞 《疯狂英语(新悦读)》 2025年第3期35-37,77,共4页
1 In a town of fewer than 1,000 people,it can be hard to keep a secret.And yet no one in McBride,a mountain community in British Columbia,can figure out how a local deer came to be wearing a reflective jacket or why t... 1 In a town of fewer than 1,000 people,it can be hard to keep a secret.And yet no one in McBride,a mountain community in British Columbia,can figure out how a local deer came to be wearing a reflective jacket or why the deer has been so hard to track down. 展开更多
关键词 DEER tracking small town reflective jacket mountain community MYSTERY British Columbia
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Impact of Grouting Pipeline Design on the Performance of Suction Bucket Jacket Foundation Grouting
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作者 DING Hong-yan WANG Ting-yuan +1 位作者 ZHANG Pu-yang LE Cong-huan 《China Ocean Engineering》 2025年第6期1162-1175,共14页
Suction bucket jacket foundations exhibit considerable potential for implementation in deep-sea offshore wind power projects. To address water film formation resulting from negative pressure penetration during constru... Suction bucket jacket foundations exhibit considerable potential for implementation in deep-sea offshore wind power projects. To address water film formation resulting from negative pressure penetration during construction, certain suction bucket jacket foundation projects implement grouting techniques to ensure adequate bearing capacity. This study conducted a large-scale suction bucket foundation grouting model experiment to examine grout flow characteristics and specific phenomena under various grouting pipeline configurations. Comparative analyses of grouting efficiency and quality across different pipeline layouts identified critical influencing factors and their impact on grouting performance. The results demonstrate that the number of grout outlets should be maintained within an optimal range:insufficient outlets enhance the indentation effect and decrease fill efficiency, while excessive outlets necessitate precise spacing for effective distribution. Additionally, grout outlets should be uniformly arranged to reduce segregation and enhance overall grouting quality. This study's findings provide a scientific foundation for optimizing grouting design in suction bucket jacket foundations, with substantial implications for engineering applications. 展开更多
关键词 suction bucket jacket foundation grouting technique pipeline design flow characteristics grouting efficiency
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Horizontal Bearing Performance of the Four-Bucket Jacket Foundation
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作者 Xi Wei Teng Wang +3 位作者 Yuehong Wang Yanqing Liu Mingtao Jiang Puyang Zhang 《哈尔滨工程大学学报(英文版)》 2025年第3期542-551,共10页
As an important part of offshore wind turbine support and fixed units, the multibucket jacket foundation bears large loads and a complex marine environment. In this paper, the horizontal bearing characteristics of the... As an important part of offshore wind turbine support and fixed units, the multibucket jacket foundation bears large loads and a complex marine environment. In this paper, the horizontal bearing characteristics of the four-bucket jacket foundation of offshore wind power in sandy soil are studied. Through model tests and numerical simulations, the influence of bucket foundation sealing properties, load application speed, and loading direction on foundation-bearing capacity are discussed. The results show that the horizontal ultimate bearing capacity of the foundation in the nonsealing condition is decreased by 51.3% compared with the sealing condition;therefore, after the foundation penetration construction is completed, the bucket sealing must be ensured to increase the load-bearing performance of the structure. At a loading speed of 3.25 mm/s, the horizontal ultimate bearing capacity of the foundation is increased by 9.4% over the working condition of 1.85 mm/s. The bearing capacity of the foundation is maximized in the loading direction α =45° and is the smallest when α =0°. That is, the foundation can maximize its loadbearing performance under the condition of single-bucket compression/tension. During the design process, the main load of the structure should be loaded in the 45° direction. The contrast error of the experiment and numerical simulation does not exceed 10%. The research results have important guiding importance for designing and constructing the jacket foundation and can be used as a reference for the stable operation and sustainable development of offshore wind power systems. 展开更多
关键词 Four-bucket jacket foundation Horizontal bearing capacity Load speeds Loading directions Model test
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Concurrent Design on Three-Legged Jacket Structure and Transition Piece of Offshore Wind Turbine by Exploiting Topology Optimization
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作者 Yiming Zhou Jinhua Zhang +5 位作者 Kai Long Ayesha Saed Yutang Chen Rongrong Geng Tao Tao Xiaohui Guo 《Computer Modeling in Engineering & Sciences》 2025年第5期1743-1761,共19页
The jacket structure and transition piece comprise the supporting structure of a bottom-fixed offshore wind turbine(OWT)connected to the steel tower,which determines the overall structural dynamic performance of the e... The jacket structure and transition piece comprise the supporting structure of a bottom-fixed offshore wind turbine(OWT)connected to the steel tower,which determines the overall structural dynamic performance of the entire OWT.Ideally,optimal performance can be realized by effectively coordinating two components,notwithstanding their separate design processes.In pursuit of this objective,this paper proposes a concurrent design methodology for the jacket structure and transition piece by exploiting topology optimization(TO).The TO for a three-legged jacket foundation is formulated by minimizing static compliance.In contrast to conventional TO,two separated volume fractions are imposed upon the structural design domain of the jacket structure and transition piece to ensure continuity.A 5 MW(megawatt)OWT supported by a four-legged or three-legged jacket substructure is under investigation.The external loads are derived from various design load cases that are acquired using the commercial software platform DNV Bladed(Det Norske Veritas).Through a comparative analysis of the fundamental frequency and maximum nodal deformation,it was found that the optimized solution demonstrates a reduced weight and superior stiffness.The findings demonstrate the present concurrent design approach using TO can yield significant benefits by reducing the overall design cycle and enhancing the feasibility of the final design. 展开更多
关键词 Offshore wind turbine topology optimization jacket structure transition piece design load case
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Real-Time Prediction of Stress Response of Tubular Joints on the Jacket Platform Using a Reduced-Order Model
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作者 LENG Jian-cheng MAO Hou-bin +1 位作者 DIAO Kai-xin FENG Hui-yu 《China Ocean Engineering》 2025年第1期13-26,共14页
Jacket platforms constitute the foundational infrastructure of offshore oil and gas field exploitation.How to efficiently and accurately monitor the mechanical properties of jacket structures is one of the key problem... Jacket platforms constitute the foundational infrastructure of offshore oil and gas field exploitation.How to efficiently and accurately monitor the mechanical properties of jacket structures is one of the key problems to be solved to ensure the safe operation of the platform.To address the practical engineering problem that it is difficult to monitor the stress response of the tubular joints of jacket platforms online,a digital twin reduced-order method for real-time prediction of the stress response of tubular joints is proposed.In the offline construction phase,multi-scale modeling and multi-parameter experimental design methods are used to obtain the stress response data set of the jacket structure.Proper orthogonal decomposition is employed to extract the main feature information from the snapshot matrix,resulting in a reduced-order basis.The leave-one-out cross-validation method is used to select the optimal modal order for constructing the reduced-order model(ROM).In the online prediction phase,a digital twin model of the tubular joint is established,and the prediction performance of the ROM is analyzed and verified through using random environmental load and field environmental monitoring data.The results indicate that,compared with traditional numerical simulations of tubular joints,the ROM based on the proposed reduced-order method is more efficient in predicting the stress response of tubular joints while ensuring accuracy and robustness. 展开更多
关键词 offshore jacket platform digital twin tubular joints proper orthogonal decomposition leave-one-out cross validation real-time prediction
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Seismic response mitigation of offshore jacket platforms using a novel bidirectional tuned liquid column gas damper
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作者 Mohamadhosein Mohasel Mohammad Reza Chenaghlou Ahmad Reza Mostafa Gharabaghi 《Theoretical & Applied Mechanics Letters》 2025年第5期508-521,共14页
This study investigates the seismic response mitigation of an offshore jacket platform via a novel damping system,the bidirectional tuned liquid column gas damper(BTLCGD).To efficiently model the complex platform stru... This study investigates the seismic response mitigation of an offshore jacket platform via a novel damping system,the bidirectional tuned liquid column gas damper(BTLCGD).To efficiently model the complex platform structure,an equivalent single degree of freedom approach was employed.Since the mass contribution of the first mode of the platform is more than 90%,this simplification significantly reduces the computational burden while maintaining accuracy.Therefore,this structure was modeled and analyzed on a scale of 1 to 36 using the Froudian law.To address the limitations of conventional tuned liquid column gas dampers(TLCGDs),which are susceptible to the directionality of seismic excitations,BTLCGD was proposed.This innovative damper is designed to operate effectively in two orthogonal directions,thereby improving seismic performance.Through numerical simulations,the performance of both TLCGD and BTLCGD was evaluated under seismic loading.The results demonstrated that BTLCGD significantly outperforms TLCGD in terms of reducing structural responses,particularly in the direction where TLCGD is ineffective.Furthermore,BTLCGD offers advantages in terms of installation and space requirements.The results of this research offer valuable perspectives into the design and implementation of effective damping systems for offshore structures,contributing to enhanced structural integrity and safety. 展开更多
关键词 Offshore jacket platform Structural control Bidirectional tuned liquid column gas damper Response time history
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固体火箭发动机药柱包覆套外侧狭缝传热特性
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作者 娄永春 朱睿 +2 位作者 赵瑜 吕志超 刘佩进 《固体火箭技术》 北大核心 2026年第1期49-56,共8页
固体发动机在大过载下存在药柱包覆套外侧狭缝宽度增大的情况,易引起包覆套阻燃失效、药柱提前点燃的风险。采用动网格方法对燃面退移过程中狭缝的流动传热进行了仿真研究,分析了狭缝宽度和燃面退移速率的影响,并进行了试验验证。结果表... 固体发动机在大过载下存在药柱包覆套外侧狭缝宽度增大的情况,易引起包覆套阻燃失效、药柱提前点燃的风险。采用动网格方法对燃面退移过程中狭缝的流动传热进行了仿真研究,分析了狭缝宽度和燃面退移速率的影响,并进行了试验验证。结果表明,在初始时刻狭缝宽度较小时,燃气通过包覆套向药柱的传热速率大于热量向药柱内部的传导速率,药柱表面温度上升;当狭缝内流动稳定后,燃气通过包覆套向药柱传热的速率小于热量向药柱内部的传导速率,药柱表面温度下降;当狭缝宽度较大时,燃气在狭缝入口形成涡流,外部燃气对狭缝内部燃气进行热量传递的速率快,燃气通过包覆套向药柱传热的速率始终大于热量向药柱内部的传导速率,药柱表面温度持续上升。燃面退移速率不影响狭缝内部的流动情况,对狭缝传热的影响不大。包覆套外侧狭缝较窄时,需重点考虑点燃初始时刻药柱表面的温度变化。若飞行工况存在大过载,需要考虑包覆套外侧狭缝变宽、狭缝传热增强的可能性并提升热防护措施。 展开更多
关键词 固体火箭发动机 药柱包覆套 燃面退移 动网格 数值计算
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深水导管架Y形节点全自动多层多道焊接路径规划
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作者 田雷 周华亮 +5 位作者 张剑利 王炳明 孙晓斐 高志远 任文静 徐连勇 《焊接》 2026年第1期90-96,共7页
【目的】旨在通过六轴机器人全自动多层多道焊接路径规划方法,解决深水导管架Y形节点焊接效率低、高空作业风险高的核心问题。【方法】首先,基于Y形支管坡口形貌的动态特性,建立相贯线参数方程及二面角计算模型,推导坡口角与理论切割角... 【目的】旨在通过六轴机器人全自动多层多道焊接路径规划方法,解决深水导管架Y形节点焊接效率低、高空作业风险高的核心问题。【方法】首先,基于Y形支管坡口形貌的动态特性,建立相贯线参数方程及二面角计算模型,推导坡口角与理论切割角的几何关系,构建相贯线焊缝及其坡口三维理论模型,分析了坡口角度沿焊缝变化规律。然后根据等高型填充策略,通过层数控制与道数动态分配,结合焊接速度与送丝速度的协同调控,对焊接流程进行规划。【结果】该方法实现了变截面坡口的自适应路径与工艺规划。【结论】该方法显著提升了焊接效率与工艺稳定性,为海洋工程复杂节点自动化焊接提供了理论支撑与工程实践参考。 展开更多
关键词 导管架Y形节点 多层多道 路径规划 变截面坡口
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Seismic strengthening of reinforced concrete columns damaged by rebar corrosion using combined CFRP and steel jacket 被引量:2
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作者 李金波 贡金鑫 《Journal of Southeast University(English Edition)》 EI CAS 2009年第4期506-512,共7页
In order to study the effectiveness of combined carbon fiber-reinforced polymer (CFRP) sheets and steel jacket in strengthening the seismic performance of corrosion-damaged reinforced concrete (RC) columns, twelve... In order to study the effectiveness of combined carbon fiber-reinforced polymer (CFRP) sheets and steel jacket in strengthening the seismic performance of corrosion-damaged reinforced concrete (RC) columns, twelve reinforced concrete columns are tested under combined lateral cyclic displacement excursions and constant axial load. The variables studied in this program include effects of corrosion degree of the rebars, level of axial load, the amount of CFRP sheets and steel jacket. The results indicate that the combined CFRP and steel jacket retrofitting technique is effective in improving load-carrying, ductility and energy absorption capacity of the columns. Compared with the corrosion-damaged RC column, the lateral load and the ductility factor of many strengthened columns increase more than 90% and 100%, respectively. The formulae for the calculation of the yielding load, the maximum lateral load and the displacement ductility factor of the strengthened columns under combined constant axial load and cyclically increasing lateral loading are developed. The test results are also compared with the results obtained from the proposed formulae. A good agreement between calculated values and experimental results is observed. 展开更多
关键词 reinforced concrete column seismic performance CORROSION retrofitting steel jacket fiber-reinforced polymer (FRP) DUCTILITY
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有限域上快速分块Jacket变换 被引量:1
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作者 黄成荣 《计算机科学》 CSCD 北大核心 2014年第B11期215-220,共6页
提出了一种在有限域上的简单上闭链分块逆Jacket变换(CBIJT)。为将高阶的上闭链逆Jacket矩阵(CBIJM)因式分解成单位矩阵和低阶稀疏矩阵,考虑运用带来快速变换的连续结构来减少计算负荷。采用类似的递归方式分析两个CBIJT,即单维和双维CB... 提出了一种在有限域上的简单上闭链分块逆Jacket变换(CBIJT)。为将高阶的上闭链逆Jacket矩阵(CBIJM)因式分解成单位矩阵和低阶稀疏矩阵,考虑运用带来快速变换的连续结构来减少计算负荷。采用类似的递归方式分析两个CBIJT,即单维和双维CBIJT。这两个CBIJT为单位矩阵和低阶CBIJT的多重Kronecker积。 展开更多
关键词 元素逆矩阵 jacket矩阵 有限域
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柴油机缸套–水套系统的声振耦合特性
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作者 刘东 湛秀宇 +4 位作者 胡皓鲤 郗嘉慧 刘宇航 李国兴 王铁 《内燃机工程》 北大核心 2026年第1期158-168,共11页
针对缸套与水套之间存在的强耦合效应,建立了一个涵盖活塞摩擦动力学、缸套结构动力学和水套声学的系统性分析模型,重点分析了活塞拍击下的缸套振动和冷却液压力波动特性,并通过试验进行了验证。结合耦合模态和动态响应分析,阐明了振动... 针对缸套与水套之间存在的强耦合效应,建立了一个涵盖活塞摩擦动力学、缸套结构动力学和水套声学的系统性分析模型,重点分析了活塞拍击下的缸套振动和冷却液压力波动特性,并通过试验进行了验证。结合耦合模态和动态响应分析,阐明了振动和压力分布存在差异的根本原因,揭示了缸套–水套系统的声振耦合机制。结果表明,缸套外壁的冷却液会为系统提供额外的质量和阻尼,从而使缸套的模态频率和振动幅值显著下降。在所研究的发动机中,最大振动出现在水套上部,而高负压区出现在水套下部。缸套–水套系统的振动和压力分布特性与活塞拍击、耦合模态和水套声边界有关。 展开更多
关键词 柴油机 缸套–水套系统 声振耦合 振动 压力波动
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射流间距对多股射流冲击夹套传热的影响
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作者 庄凯 曹桓 +2 位作者 李秉润 蔡永华 王宗勇 《塑料科技》 北大核心 2026年第1期159-165,共7页
提出一种适用于强放热反应的多股冲击射流强化传热的反应釜夹套,利用数值模拟方法研究射流管轴向间距(l)及射流速度(v)对夹套传热性能的影响。结果表明:相较于同大小的传统圆筒形整体夹套,多股冲击射流夹套能够显著提高换热壁面的平均... 提出一种适用于强放热反应的多股冲击射流强化传热的反应釜夹套,利用数值模拟方法研究射流管轴向间距(l)及射流速度(v)对夹套传热性能的影响。结果表明:相较于同大小的传统圆筒形整体夹套,多股冲击射流夹套能够显著提高换热壁面的平均努塞尔数(Nu_(m)),降低流动过程中的压力损失(Δp)。筒体壁面轴向局部努塞尔数(Nua)沿流向呈波形升降,极值点位置与射流冲击点一致。在v为1~4 m/s范围内,l的改变对Δp影响微小,v为影响Δp的主要因素,Δp随v的增大而增大。通过综合分析得到,当l为射流管直径(d)的7.5倍时,筒体壁面的换热均匀性(U_(Nu))和Nu_(m)优于其他l下的多股射流冲击夹套。 展开更多
关键词 夹套 冲击射流 射流间距 强化传热
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基于TMCMC抽样的导管架平台模型修正方法
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作者 王维刚 任毅昊 +1 位作者 路敬祎 闫天红 《机械设计与制造工程》 2026年第1期13-18,共6页
为了使导管架平台有限元模型尽可能接近真实结构,提出了一种基于过渡马尔可夫链蒙特卡洛(TMCMC)抽样的导管架平台模型修正方法。首先,选择频率和模态振型作为修正目标,弹性模量、桩腿支承刚度和桩腿壁厚作为待修正参数;其次,通过贝叶斯... 为了使导管架平台有限元模型尽可能接近真实结构,提出了一种基于过渡马尔可夫链蒙特卡洛(TMCMC)抽样的导管架平台模型修正方法。首先,选择频率和模态振型作为修正目标,弹性模量、桩腿支承刚度和桩腿壁厚作为待修正参数;其次,通过贝叶斯框架得到待修正参数的后验概率密度函数(PDF);再次,采用TMCMC算法对待修正参数抽样,并进行迭代求解;最终得到导管架平台模型修正后的参数。结果表明,修正后各项指标都在合理的范围内,频率和模态置信度(MAC)得到了很好的匹配。通过与基于MH算法的模型修正方法比较,证明该方法具有精度高、效率高等优点。 展开更多
关键词 贝叶斯 过渡马尔可夫链蒙特卡洛算法 导管架平台 模型修正
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Analyzing the safety of removal sequences for piles of an offshore jacket platform
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作者 潘新颖 张兆德 《Journal of Marine Science and Application》 2009年第4期311-315,共5页
An inevitable consequence of the development of the offshore petroleum industry is the eventual obsolescence of large offshore structures. Proper methods for removal of decommissioned offshore platforms are becoming a... An inevitable consequence of the development of the offshore petroleum industry is the eventual obsolescence of large offshore structures. Proper methods for removal of decommissioned offshore platforms are becoming an important topic that the oil and gas industry must pay increasing attention to. While removing sections from a decommissioned jacket platform, the stability of the remaining parts is critical The jacket danger indices D ~ and Ds defined in this paper are very useful for analyzing the safety of any procedure planned for disassembling a jacket platform. The safest piles cutting sequence can be determined easily by comparing every column of Do and Ds or simply analyzing the figures of every row ofD o and D,. 展开更多
关键词 jacket platform REMOVAL safety analysis STRESS
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A generic PWM strategy for multi-leg VSI-fed machine drives
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作者 王伟 张景皓 程明 《Journal of Southeast University(English Edition)》 EI CAS 2017年第2期189-195,共7页
A generic pulse width modulation(PWM) strategy is proposed for the multi-leg voltage source inverter(VSI).First, the multi-leg VSI is modeled, which is independent from the load structure. Secondly, the proposed P... A generic pulse width modulation(PWM) strategy is proposed for the multi-leg voltage source inverter(VSI).First, the multi-leg VSI is modeled, which is independent from the load structure. Secondly, the proposed PWM strategy is deduced by inverting the mathematical model of the multileg VSI. According to the relationship between the leg number of VSIs and the phase number of electrical machines, the multi-leg VSI-fed machine drives are classified into two types:matched and unmatched applications. The leg numbers of VSIs and the phase number of electrical machines are equal in matched applications while they are different in unmatched applications. The existing PWM strategies cannot be directly used for both matched and unmatched applications. However,the proposed PWM strategy can be general for both matched and unmatched applications, and no modifications are required. The effectiveness of the proposed PWM strategy is verified by experimental results. 展开更多
关键词 pulse width modulation(PWM) multi-leg voltage-source-inverter(VSI) carrier-based PWM machine drives
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