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Research on Multi-Level Automatic Filling Optimization Design Method for Layered Cross-Sectional Layout of Umbilical 被引量:1
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作者 YIN Xu FAN Zhi-rui +4 位作者 CAO Dong-hui LIU Yu-jie LI Meng-shu YAN Jun YANG Zhi-xun 《China Ocean Engineering》 2025年第5期891-903,共13页
The umbilical,a key component in offshore energy extraction,plays a vital role in ensuring the stable operation of the entire production system.The extensive variety of cross-sectional components creates highly comple... The umbilical,a key component in offshore energy extraction,plays a vital role in ensuring the stable operation of the entire production system.The extensive variety of cross-sectional components creates highly complex layout combinations.Furthermore,due to constraints in component quantity and geometry within the cross-sectional layout,filler bodies must be incorporated to maintain cross-section performance.Conventional design approaches based on manual experience suffer from inefficiency,high variability,and difficulties in quantification.This paper presents a multi-level automatic filling optimization design method for umbilical cross-sectional layouts to address these limitations.Initially,the research establishes a multi-objective optimization model that considers compactness,balance,and wear resistance of the cross-section,employing an enhanced genetic algorithm to achieve a near-optimal layout.Subsequently,the study implements an image processing-based vacancy detection technique to accurately identify cross-sectional gaps.To manage the variability and diversity of these vacant regions,the research introduces a multi-level filling method that strategically selects and places filler bodies of varying dimensions,overcoming the constraints of uniform-size fillers.Additionally,the method incorporates a hierarchical strategy that subdivides the complex cross-section into multiple layers,enabling layer-by-layer optimization and filling.This approach reduces manufac-turing equipment requirements while ensuring practical production process feasibility.The methodology is validated through a specific umbilical case study.The results demonstrate improvements in compactness,balance,and wear resistance compared with the initial cross-section,offering novel insights and valuable references for filler design in umbilical cross-sections. 展开更多
关键词 UMBILICAL cross-sectional layout multi-level filling layered layout optimization design
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Research on the Practical Path of Integrating Excellent Traditional Chinese Culture into Curriculum Ideological and Political Education:Taking the Layout Design Course as an Example 被引量:1
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作者 Xiaoqian Xu 《Journal of Electronic Research and Application》 2025年第3期32-38,共7页
This study focuses on the deepening paths of ideological and political construction of professional courses in higher vocational colleges,taking the layout design course of the digital media technology major as the re... This study focuses on the deepening paths of ideological and political construction of professional courses in higher vocational colleges,taking the layout design course of the digital media technology major as the research object,and explores the integration mechanism of excellent traditional Chinese culture and professional teaching.The curriculum’s ideological and political reform is advanced through three major measures:Reconstructing the role of teachers,innovating teaching methods,and building a cultural infiltration system.Combined with the three-dimensional assessment mechanism of“professional+culture+value”and the transformation of teaching achievements into competitions,it breaks through the limitations of traditional skill training and systematically solves the problems of formalization tendency and insufficient value guidance existing in the practice of curriculum ideology and politics.It responds to the era proposition of“promoting the creative transformation of excellent traditional Chinese culture,”and provides an operable solution for higher vocational colleges to break the predicament of“emphasizing skills while neglecting culture.” 展开更多
关键词 Curriculum ideology and politics Excellent traditional Chinese culture layout design Teaching reform
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贴片保险丝有效熔断的Layout方法
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作者 赵楠 江广浪 +1 位作者 刘恩锋 薛英仪 《现代信息科技》 2025年第13期26-29,共4页
针对贴片保险丝PAD散热作用导致的过流熔断功能失效问题,对贴片保险丝Layout方法进行了分析研究。文章对贴片保险丝焊盘引出铺铜尺寸的收窄进行限制,设计了多种Layout方法,并开展了打板实验。通过对比验证,分析了Layout方法在熔断时间... 针对贴片保险丝PAD散热作用导致的过流熔断功能失效问题,对贴片保险丝Layout方法进行了分析研究。文章对贴片保险丝焊盘引出铺铜尺寸的收窄进行限制,设计了多种Layout方法,并开展了打板实验。通过对比验证,分析了Layout方法在熔断时间方面的性能表现。结果表明,与传统方法相比,新方法具有更小的熔断电流和更短的熔断时间。当通过保险丝的电流达到其额定电流的1~2倍时,保险丝能够快速有效熔断。这为工控机电路硬件设计中贴片保险丝的功能和性能实现提供了一种全新的设计方法,具有重要的应用价值和推广前景。 展开更多
关键词 贴片保险丝 过流 熔断 layout方法
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Research on Layout Optimization of J Company’s Grain and Oil Processing Workshop
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作者 Hailing Lu 《Proceedings of Business and Economic Studies》 2025年第4期161-171,共11页
Whether the workshop layout is reasonable has a significant impact on logistics efficiency,production costs,and production efficiency.This article takes the grain and oil processing workshop of Company J as the resear... Whether the workshop layout is reasonable has a significant impact on logistics efficiency,production costs,and production efficiency.This article takes the grain and oil processing workshop of Company J as the research object and conducts a field investigation of its grain and oil processing workshop using the SLP(System Layout Design)method.Based on the logistics volume of the production site and the correlation of each functional area,the correlation analysis is carried out from two aspects:logistics factors and non-logistics factors.The interrelationship diagram of the operation units in the workshop,the ranking of the comprehensive proximity of the operation units,and the location correlation diagram of the operation units were obtained,and the improvement plan was designed based on the principle of route optimization layout.Through the optimized design,transportation efficiency was enhanced,workshop area utilization was improved,production costs were reduced,and good social and economic benefits were created for the enterprise.It can also provide a reference for similar enterprises to carry out related work. 展开更多
关键词 SLP Workshop layout Facilities layout OPTIMIZATION
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Numerical Simulation of M-Shaped Multi-Row Pile-Supported Foundation Pit Excavation Based on ABAQUS
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作者 Meng Chen Chuanteng Huang +3 位作者 Shuang Pu Jilun Cai Zuocai Li Yufu Huang 《Journal of World Architecture》 2025年第3期55-63,共9页
The M-shaped multi-row pile foundation retaining structure represents an enhanced version of conventional multi-row anti-sliding support systems.To date,the implementation of M-shaped pile configurations in foundation... The M-shaped multi-row pile foundation retaining structure represents an enhanced version of conventional multi-row anti-sliding support systems.To date,the implementation of M-shaped pile configurations in foundation pit excavations has not been extensively investigated,with particularly scant research focusing on their load-bearing mechanisms and stress redistribution characteristics.Furthermore,numerical modeling methodologies for such geometrically optimized pile networks remain underdeveloped compared to practical engineering applications,creating a notable research-practice gap in geotechnical engineering.A comparative finite element analysis was systematically conducted using ABAQUS software to establish three distinct excavation support configurations:single-row cantilever retaining structures,three-row cantilever configurations,and M-shaped multi-row pile foundation systems.Subsequent numerical simulations enabled quantitative comparisons of critical performance indicators,including pile stress distribution patterns,lateral displacement profiles,and bending moment diagrams across different structural typologies.The parametric investigation revealed characteristic mechanical responses associated with each configuration,establishing corresponding mechanical principles governing the interaction between pile topology and soil-structure behavior towers.The findings of this study provide critical references for the design optimization of M-shaped multi-row pile foundation retaining systems. 展开更多
关键词 M-shaped multi-row piles Foundation pit excavation Numerical simulation ABAQUS
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Investigating Techniques to Optimise the Layout of Turbines in a Windfarm Using a Quantum Computer
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作者 James Hancock Matthew Craven +1 位作者 Craig McNeile Davide Vadacchino 《Journal of Quantum Computing》 2025年第1期55-79,共25页
This paper investigatesWindfarmLayoutOptimization(WFLO),where we formulate turbine placement considering wake effects as a Quadratic Unconstrained Binary Optimization(QUBO)problem.Wind energy plays a critical role in ... This paper investigatesWindfarmLayoutOptimization(WFLO),where we formulate turbine placement considering wake effects as a Quadratic Unconstrained Binary Optimization(QUBO)problem.Wind energy plays a critical role in the transition toward sustainable power systems,but the optimal placement of turbines remains a challenging combinatorial problem due to complex wake interactions.With recent advances in quantum computing,there is growing interest in exploring whether hybrid quantum-classical methods can provide advantages for such computationally intensive tasks.We investigate solving the resulting QUBO problem using the Variational Quantum Eigensolver(VQE)implemented onQiskit’s quantum computer simulator,employing a quantum noise-free,gate-based circuit model.Three classical optimizers are discussed,with a detailed analysis of the two most effective approaches:Constrained Optimization BY Linear Approximation(COBYLA)and Bayesian Optimization(BO).We compare these simulated quantum results with two established classical optimization methods:Simulated Annealing(SA)and the Gurobi solver.The study focuses on 4×4 grid configurations(requiring 16 qubits),providing insights into near-term quantum algorithm applicability for renewable energy optimization. 展开更多
关键词 Quantum computing QUBO windfarm layout optimization VQE
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A Hierarchical Optimization Method for Deformation Force Monitoring Layout of Annular Parts
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作者 DAI Kaining LIU Changqing +3 位作者 WANG Enning ZHAO Zhiwei SALONITIS Konstantinos LI Yingguang 《Transactions of Nanjing University of Aeronautics and Astronautics》 2025年第3期275-286,共12页
Obtaining residual stress is crucial for controlling the machining deformation in annular parts,and can directly influence the performance and stability of key components in advanced equipment.Since existing research ... Obtaining residual stress is crucial for controlling the machining deformation in annular parts,and can directly influence the performance and stability of key components in advanced equipment.Since existing research has achieved global residual stress field inference for components by using the deformation force-based method where the deformation force is monitored during the machining process,reliable acquisition of deformation force stll remains a significant challenge under complex machining conditions.This paper proposes a hierarchical optimization method for the layout of deformation force monitoring of annular parts.The proposed method establishes two optimization objectives by analyzing the relationship between the deformation force and the residual stress in annular parts,i.e.,equivalence and ilconditioning of solving process.Specifically,the equivalence of the monitored deformation force and residual stress in terms of effect on caused machining deformation is evaluated by local deformation,and the illconditioning is also optimized to enhance the stability of residual stress inference.Verification is implemented in both simulation and actual machining experiments,demonstrating effectiveness of the proposed layout optimization method in inferring residual stress field of annular parts with deformation force. 展开更多
关键词 residual stress annular part deformation force layout optimization
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Exploring Optimization Strategies for Island Power Grid Line Layout Oriented Towards Large-Scale Distributed Renewable Energy Integration
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作者 Zhenhuan Song Wenxin Liu 《Proceedings of Business and Economic Studies》 2025年第4期495-502,共8页
The construction of island power grids is a systematic engineering task.To ensure the safe operation of power grid systems,optimizing the line layout of island power grids is crucial.Especially in the current context ... The construction of island power grids is a systematic engineering task.To ensure the safe operation of power grid systems,optimizing the line layout of island power grids is crucial.Especially in the current context of large-scale distributed renewable energy integration into the power grid,conventional island power grid line layouts can no longer meet actual demands.It is necessary to combine the operational characteristics of island power systems and historical load data to perform load forecasting,thereby generating power grid line layout paths.This article focuses on large-scale distributed renewable energy integration,summarizing optimization strategies for island power grid line layouts,and providing a solid guarantee for the safe and stable operation of island power systems. 展开更多
关键词 Island power grid Line layout Optimization strategy Distributed renewable energy LARGE-SCALE
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Mixed integer programming modeling for the satellite three-dimensional component assignment and layout optimization problem
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作者 Yufeng XIA Xianqi CHEN +3 位作者 Zhijia LIU Weien ZHOU Wen YAO Zhongneng ZHANG 《Chinese Journal of Aeronautics》 2025年第6期427-447,共21页
Satellite Component Layout Optimization(SCLO) is crucial in satellite system design.This paper proposes a novel Satellite Three-Dimensional Component Assignment and Layout Optimization(3D-SCALO) problem tailored to en... Satellite Component Layout Optimization(SCLO) is crucial in satellite system design.This paper proposes a novel Satellite Three-Dimensional Component Assignment and Layout Optimization(3D-SCALO) problem tailored to engineering requirements, aiming to optimize satellite heat dissipation while considering constraints on static stability, 3D geometric relationships between components, and special component positions. The 3D-SCALO problem is a challenging bilevel combinatorial optimization task, involving the optimization of discrete component assignment variables in the outer layer and continuous component position variables in the inner layer,with both influencing each other. To address this issue, first, a Mixed Integer Programming(MIP) model is proposed, which reformulates the original bilevel problem into a single-level optimization problem, enabling the exploration of a more comprehensive optimization space while avoiding iterative nested optimization. Then, to model the 3D geometric relationships between components within the MIP framework, a linearized 3D Phi-function method is proposed, which handles non-overlapping and safety distance constraints between cuboid components in an explicit and effective way. Subsequently, the Finite-Rectangle Method(FRM) is proposed to manage 3D geometric constraints for complex-shaped components by approximating them with a finite set of cuboids, extending the applicability of the geometric modeling approach. Finally, the feasibility and effectiveness of the proposed MIP model are demonstrated through two numerical examples"and a real-world engineering case, which confirms its suitability for complex-shaped components and real engineering applications. 展开更多
关键词 Mixed integer programming modeling Three-dimensional component assignment layout optimization Phi-function Finite-rectangle method
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A Bi-Level Optimization Model and Hybrid Evolutionary Algorithm for Wind Farm Layout with Different Turbine Types
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作者 Erping Song Zipin Yao 《Energy Engineering》 2025年第12期5129-5147,共19页
Wind farm layout optimization is a critical challenge in renewable energy development,especially in regions with complex terrain.Micro-siting of wind turbines has a significant impact on the overall efficiency and eco... Wind farm layout optimization is a critical challenge in renewable energy development,especially in regions with complex terrain.Micro-siting of wind turbines has a significant impact on the overall efficiency and economic viability of wind farm,where the wake effect,wind speed,types of wind turbines,etc.,have an impact on the output power of the wind farm.To solve the optimization problem of wind farm layout under complex terrain conditions,this paper proposes wind turbine layout optimization using different types of wind turbines,the aim is to reduce the influence of the wake effect and maximize economic benefits.The linear wake model is used for wake flow calculation over complex terrain.Minimizing the unit energy cost is taken as the objective function,considering that the objective function is affected by cost and output power,which influence each other.The cost function includes construction cost,installation cost,maintenance cost,etc.Therefore,a bi-level constrained optimization model is established,in which the upper-level objective function is to minimize the unit energy cost,and the lower-level objective function is to maximize the output power.Then,a hybrid evolutionary algorithm is designed according to the characteristics of the decision variables.The improved genetic algorithm and differential evolution are used to optimize the upper-level and lower-level objective functions,respectively,these evolutionary operations search for the optimal solution as much as possible.Finally,taking the roughness of different terrain,wind farms of different scales and different types of wind turbines as research scenarios,the optimal deployment is solved by using the algorithm in this paper,and four algorithms are compared to verify the effectiveness of the proposed algorithm. 展开更多
关键词 Bi-level optimization genetic algorithm differential evolution hybrid evolutionary algorithm wind farm layout
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SFFSlib:A Python library for optimizing attribute layouts from micro to macro scales in network visualization
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作者 Ke-Chao Zhang Sheng-Yue Jiang Jing Xiao 《Chinese Physics B》 2025年第5期124-138,共15页
Complex network modeling characterizes system relationships and structures,while network visualization enables intuitive analysis and interpretation of these patterns.However,existing network visualization tools exhib... Complex network modeling characterizes system relationships and structures,while network visualization enables intuitive analysis and interpretation of these patterns.However,existing network visualization tools exhibit significant limitations in representing attributes of complex networks at various scales,particularly failing to provide advanced visual representations of specific nodes and edges,community affiliation attribution,and global scalability.These limitations substantially impede the intuitive analysis and interpretation of complex network patterns through visual representation.To address these limitations,we propose SFFSlib,a multi-scale network visualization framework incorporating novel methods to highlight attribute representation in diverse network scenarios and optimize structural feature visualization.Notably,we have enhanced the visualization of pivotal details at different scales across diverse network scenarios.The visualization algorithms proposed within SFFSlib were applied to real-world datasets and benchmarked against conventional layout algorithms.The experimental results reveal that SFFSlib significantly enhances the clarity of visualizations across different scales,offering a practical solution for the advancement of network attribute representation and the overall enhancement of visualization quality. 展开更多
关键词 complex network visualization layout algorithm signed network fuzzy community structure social bot network
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Probabilistic Graphical Model-Based Operational Reliability-Centric Design of Offshore Wind Farm Feeder Layouts
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作者 Qiuyu Lu Yunqi Yan +4 位作者 Yang Liu Ying Chen Yinguo Yang Tannan Xiao Guobing Wu 《Energy Engineering》 2025年第12期4799-4814,共16页
The rapid expansion of offshore wind energy necessitates robust and cost-effective electrical collector system(ECS)designs that prioritize lifetime operational reliability.Traditional optimization approaches often sim... The rapid expansion of offshore wind energy necessitates robust and cost-effective electrical collector system(ECS)designs that prioritize lifetime operational reliability.Traditional optimization approaches often simplify reliability considerations or fail to holistically integrate them with economic and technical constraints.This paper introduces a novel,two-stage optimization framework for offshore wind farm(OWF)ECS planning that systematically incorporates reliability.The first stage employs Mixed-Integer Linear Programming(MILP)to determine an optimal radial network topology,considering linearized reliability approximations and geographical constraints.The second stage enhances this design by strategically placing tie-lines using a Mixed-Integer Quadratically Constrained Program(MIQCP).This stage leverages a dynamic-aware adaptation of Multi-Source Multi-Terminal Network Reliability(MSMT-NR)assessment,with its inherent nonlinear equations successfully transformed into a solvable MIQCP form for loopy networks.A benchmark case study demonstrates the framework’s efficacy,illustrating how increasing the emphasis on reliability leads to more distributed and interconnected network topologies,effectively balancing investment costs against enhanced system resilience. 展开更多
关键词 Offshore wind farm feeder layout optimization network reliability nonlinear optimization probabilistic graphical model
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Indoor space layout research based on redirection algorithm
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作者 Qizhao WANG 《虚拟现实与智能硬件(中英文)》 2025年第6期618-638,共21页
Background Advancements in computer science and knowledge have made the incorporation of control theory,graphics processing,and mathematical models increasingly important for urban design planning.However,challenges r... Background Advancements in computer science and knowledge have made the incorporation of control theory,graphics processing,and mathematical models increasingly important for urban design planning.However,challenges remain in aligning virtual reality(VR)environments with real-world spatial and preparation requirements,particularly in indoor urban spaces.Methods This study investigates the application of VR technology to urban design,focusing on the growth and assessment of the redirection of the space-tree sorter algorithm(STSA).It outlines various assessment indicators,organization of the VR-based system architecture,and construction of 3D urban models and databases.This research also examined methods for the interactive adjustment of indoor space layout plans within a VR environment.Results This research study involved developing and demonstrating the creation and simulation of urban indoor spaces and cityscapes in VR and implementing an experimental setup to test layout modifications and system interactivity.The results indicated enhanced alignment between the virtual and physical spatial configurations.The analysis highlights the strengths and limitations of current VR systems for urban design and identifies key areas for optimization and refinement.Conclusion High congruence between virtual simulations and real-world urban spaces is necessary for effective VR-driven urban planning.This study contributes to a clearer understanding of how 3D modeling,interactive layout design,and reproduction technology can be efficiently employed to support urban increase initiatives. 展开更多
关键词 Virtual reality(VR) Indoor space layout 3D visualization Space-Trek Sorter algorithm Redirection algorithm
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Fuzzy Logic Based Evaluation of Hybrid Termination Criteria in the Genetic Algorithms for the Wind Farm Layout Design Problem
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作者 Salman A.Khan Mohamed Mohandes +2 位作者 Shafiqur Rehman Ali Al-Shaikhi Kashif Iqbal 《Computers, Materials & Continua》 2025年第7期553-581,共29页
Wind energy has emerged as a potential replacement for fossil fuel-based energy sources.To harness maximum wind energy,a crucial decision in the development of an efficient wind farm is the optimal layout design.This ... Wind energy has emerged as a potential replacement for fossil fuel-based energy sources.To harness maximum wind energy,a crucial decision in the development of an efficient wind farm is the optimal layout design.This layout defines the specific locations of the turbines within the wind farm.The process of finding the optimal locations of turbines,in the presence of various technical and technological constraints,makes the wind farm layout design problem a complex optimization problem.This problem has traditionally been solved with nature-inspired algorithms with promising results.The performance and convergence of nature-inspired algorithms depend on several parameters,among which the algorithm termination criterion plays a crucial role.Timely convergence is an important aspect of efficient algorithm design because an inefficient algorithm results in wasted computational resources,unwarranted electricity consumption,and hardware stress.This study provides an in-depth analysis of several termination criteria while using the genetic algorithm as a test bench,with its application to the wind farm layout design problem while considering various wind scenarios.The performance of six termination criteria is empirically evaluated with respect to the quality of solutions produced and the execution time involved.Due to the conflicting nature of these two attributes,fuzzy logic-based multi-attribute decision-making is employed in the decision process.Results for the fuzzy decision approach indicate that among the various criteria tested,the criterion Phi achieves an improvement in the range of 2.44%to 32.93%for wind scenario 1.For scenario 2,Best-worst termination criterion performed well compared to the other criteria evaluated,with an improvement in the range of 1.2%to 9.64%.For scenario 3,Hitting bound was the best performer with an improvement of 1.16%to 20.93%. 展开更多
关键词 Wind energy wind farm layout design performance evaluation genetic algorithms fuzzy logic multi-attribute decision-making
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Enhancing agricultural sustainability:Optimizing crop planting structures and spatial layouts within the water-land-energy-economy-environment-food nexus
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作者 Haowei Wu Zhihui Li +1 位作者 Xiangzheng Deng Zhe Zhao 《Geography and Sustainability》 2025年第3期223-239,共17页
In the new phase of sustainable development,agriculture is seeking sustainable management of the water-land-energy-economy-environment-food nexus.At present,there are few studies on optimizing crop planting structure ... In the new phase of sustainable development,agriculture is seeking sustainable management of the water-land-energy-economy-environment-food nexus.At present,there are few studies on optimizing crop planting structure and analyzing its spatial layout with consideration of natural and socio-economic factors.Herein,we proposed a framework for addressing this issue.In this framework,the NSGA-II algorithm was used to construct the multi-objective optimization model of crop planting structures with consideration of water and energy consumption,greenhouse gas(GHG)emissions,economic benefits,as well as food,land,and water security constraints,while the model for planting spatial layout optimization was established with consideration of crop suitability using the MaxEnt model and the improved Hungarian algorithm.This framework was further applied in the Black Soil Region of Northeast China(BSRNC)for analyzing optimized crop planting structures and spatial layouts of three main crops(rice,maize,and soybean)under various scenarios.This study showed that the sown area of rice in the BSRNC decreased by up to 40.73%and 35.30%in the environmental priority scenario and economic-environmental balance scenario,respectively,whereas that of soybean increased by up to 112.44%and 63.31%,respectively.In the economic priority scenario,the sown area of rice increased by up to 93.98%.Expanding the sown area of soybean was effective in reducing GHG emissions.On the contrary,rice production led to greater environmental costs though it provided higher economic returns.Among the three crops,maize exhibited an advantage in balancing environmental and economic benefits.Hegang-Jixi area in the northeast of the BSRNC was identified as the key area with the most intense crop planting transfer among different scenarios.Overall,this framework provides a new methodology for optimizing crop planting structures and spatial layouts with con-sideration of the nexus of various factors.Moreover,the case study demonstrates the applicability and expansion potential of the framework in the fields of sustainable agricultural development and food security assurance. 展开更多
关键词 Planting structure optimization Crop spatial layout Multi-objective genetic algorithm Food security Agricultural sustainability Water-land-energy-economy-environment-food nexus
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多高层模块化建筑布局智能生成技术
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作者 刘界鹏 王俐强 +4 位作者 夏毅 齐宏拓 陈杰 李江 李嘉琛 《建筑科学与工程学报》 北大核心 2026年第1期1-13,共13页
针对模块化建筑布局设计中人工设计困难和自动化程度低等问题,提出了多高层模块化建筑智能布局设计方法,实现了多样性布局方案的高效与自动生成。首先针对模块化建筑图纸进行自动信息提取与建筑区域分组,完成建筑初始二维图纸信息到标... 针对模块化建筑布局设计中人工设计困难和自动化程度低等问题,提出了多高层模块化建筑智能布局设计方法,实现了多样性布局方案的高效与自动生成。首先针对模块化建筑图纸进行自动信息提取与建筑区域分组,完成建筑初始二维图纸信息到标准信息格式的转换。基于深度强化学习对多高层模块化建筑进行布局方案智能生成,通过模块单元总数、房间调整值和房间调整量等奖励值的协同作用,实现模块单元布局方案的优化与评估;最后,为了提升工程实用性和操作便捷性,集成建筑信息提取、建筑布局设计、布局方案可视化等功能模块,搭建了模块化建筑智能布局设计平台。以立新湖学校项目为案例,采用所提出方法的3种预设规格的模块单元进行了布局方案的生成,评估了生成方案的模块单元总数、房间调整量、房间调整值3个指标以及归一化后的总指标值。结果表明:所提出的方法可以高效生成适用于不同场景的模块方案,提升了模块化建筑设计的自动化与智能化水平,为工程实践提供了技术支撑。 展开更多
关键词 模块化建筑 深度强化学习 模块布局 生成式设计 平台开发
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我国水运网的价值与发展路径探讨
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作者 吴澎 王桃 +2 位作者 曹凤帅 刘晓玲 董宇轩 《水运工程》 2026年第1期1-11,共11页
经过多年建设,我国内河水运发展已取得较大成效,在区域综合交通运输体系和沿线地区经济社会发展中发挥了不可替代的作用。系统梳理新中国成立以来我国水运网建设发展历程,分析内河水运量及构成发展变化阶段特征,总结内河水运在区域经济... 经过多年建设,我国内河水运发展已取得较大成效,在区域综合交通运输体系和沿线地区经济社会发展中发挥了不可替代的作用。系统梳理新中国成立以来我国水运网建设发展历程,分析内河水运量及构成发展变化阶段特征,总结内河水运在区域经济社会发展中的重要支撑作用;结合与发达国家和地区的对比,深刻剖析我国水运网发展仍然存在的问题,并基于低值大宗货、中值大宗货、高值精尖货等不同类型货物特征,从提高航道运行效率、延伸航道布局两大维度,提出提高过闸准点率和过闸效率、打通内河高等级航道局部瓶颈、加强水利水运水电“三网”融合、推动内河高等级航道高效连接海港等系列发展路径。针对中西部地区市场需求巨大的高坝通航建筑物建设技术,概要提出亟需突破的关键技术瓶颈为输水系统技术、船闸水工结构、闸门与阀门设计、中间渠道与通航隧洞技术等。 展开更多
关键词 水运网 价值 航道运行效率 航道布局 高坝通航建筑物
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电动汽车乘员舱空调送出风方式设计
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作者 赵兰萍 吴国敏 +1 位作者 徐鑫 杨志刚 《同济大学学报(自然科学版)》 北大核心 2026年第2期285-295,共11页
基于流场结构与车内热环境相关性,提出5种不同于传统方式的新型空调送出风方式。采用计算流体力学(CFD)仿真结合人体热调节模型,分析不同送出风方式下车内热环境特点。利用等效均匀温度(EHT)热舒适性评价法对各送出风方式进行评估。结... 基于流场结构与车内热环境相关性,提出5种不同于传统方式的新型空调送出风方式。采用计算流体力学(CFD)仿真结合人体热调节模型,分析不同送出风方式下车内热环境特点。利用等效均匀温度(EHT)热舒适性评价法对各送出风方式进行评估。结果表明,平均辐射温度和平均风速对驾乘人员热感觉的影响大于车内平均温度;顶送顶出方式和2种混合送出风方式具有最好和最差综合性能,而传统送出风方式下乘员舱热舒适均匀性和能耗性能均较差。 展开更多
关键词 乘员舱热环境 送出风方式 等效均匀温度(EHT) 热舒适性 冷负荷
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国家战略腹地建设与重大生产力布局优化——基于国家安全能力和区域协调发展的视角
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作者 王丹莉 王曙光 《党政研究》 北大核心 2026年第1期13-24,M0003,共13页
国家战略腹地建设是一个与中国工业化和现代化进程息息相关的重大命题,因为构建国家安全体系、优化重大生产力布局是大国经济治理的核心内容之一。党的二十届四中全会审议通过的《中共中央关于制定国民经济和社会发展第十五个五年规划... 国家战略腹地建设是一个与中国工业化和现代化进程息息相关的重大命题,因为构建国家安全体系、优化重大生产力布局是大国经济治理的核心内容之一。党的二十届四中全会审议通过的《中共中央关于制定国民经济和社会发展第十五个五年规划的建议》明确提出要“推进国家战略腹地建设和关键产业备份”。本文结合历史与现实的梳理深入讨论了国家战略腹地建设对于提升国家安全能力和区域协调发展的重要意义,并对新时代以来我国腹地建设呈现出的特征进行了探讨。维护能源与贸易的战略通道安全、实现区域之间的联动发展、加速关键产业备份和腹地的产业升级是新时代以来腹地建设的三个突出特点,而这也正是十五五规划建议强调的重点。未来的中国将为内陆腹地打造更加市场化、法治化和国际化的发展环境,推动内陆腹地成为新的经济增长极和发展前沿,为国家安全能力建设和区域协调战略奠定坚实基础。 展开更多
关键词 国家战略腹地 国家安全 重大生产力布局 区域协调发展 “十五五”
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