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Monte Carlo Method for the Uncertainty Evaluation of Spatial Straightness Error Based on New Generation Geometrical Product Specification 被引量:10
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作者 WEN Xiulan XU Youxiong +2 位作者 LI Hongsheng WANG Fenglin SHENG Danghong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第5期875-881,共7页
Straightness error is an important parameter in measuring high-precision shafts. New generation geometrical product speeifieation(GPS) requires the measurement uncertainty characterizing the reliability of the resul... Straightness error is an important parameter in measuring high-precision shafts. New generation geometrical product speeifieation(GPS) requires the measurement uncertainty characterizing the reliability of the results should be given together when the measurement result is given. Nowadays most researches on straightness focus on error calculation and only several research projects evaluate the measurement uncertainty based on "The Guide to the Expression of Uncertainty in Measurement(GUM)". In order to compute spatial straightness error(SSE) accurately and rapidly and overcome the limitations of GUM, a quasi particle swarm optimization(QPSO) is proposed to solve the minimum zone SSE and Monte Carlo Method(MCM) is developed to estimate the measurement uncertainty. The mathematical model of minimum zone SSE is formulated. In QPSO quasi-random sequences are applied to the generation of the initial position and velocity of particles and their velocities are modified by the constriction factor approach. The flow of measurement uncertainty evaluation based on MCM is proposed, where the heart is repeatedly sampling from the probability density function(PDF) for every input quantity and evaluating the model in each case. The minimum zone SSE of a shaft measured on a Coordinate Measuring Machine(CMM) is calculated by QPSO and the measurement uncertainty is evaluated by MCM on the basis of analyzing the uncertainty contributors. The results show that the uncertainty directly influences the product judgment result. Therefore it is scientific and reasonable to consider the influence of the uncertainty in judging whether the parts are accepted or rejected, especially for those located in the uncertainty zone. The proposed method is especially suitable when the PDF of the measurand cannot adequately be approximated by a Gaussian distribution or a scaled and shifted t-distribution and the measurement model is non-linear. 展开更多
关键词 uncertainty evaluation Monte Carlo method spatial straightness error quasi particle swarm optimization minimum zone solution geometrical product specification
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Geometric Approximation Searching Algorithm for Spatial Straightness Error Evaluation 被引量:1
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作者 Jishun Li Xianqing Lei +1 位作者 Yujun Xue Weimin Pan 《Modern Instrumentation》 2013年第1期1-6,共6页
Considering the characteristics of spatial straightness error, this paper puts forward a kind of evaluation method of spatial straightness error using Geometric Approximation Searching Algorithm (GASA). According to t... Considering the characteristics of spatial straightness error, this paper puts forward a kind of evaluation method of spatial straightness error using Geometric Approximation Searching Algorithm (GASA). According to the minimum condition principle of form error evaluation, the mathematic model and optimization objective of the GASA are given. The algorithm avoids the optimization and linearization, and can be fulfilled in three steps. First construct two parallel quadrates based on the preset two reference points of the spatial line respectively;second construct centerlines by connecting one quadrate each vertices to another quadrate each vertices;after that, calculate the distances between measured points and the constructed centerlines. The minimum zone straightness error is obtained by repeating comparing and reconstructing quadrates. The principle and steps of the algorithm to evaluate spatial straightness error is described in detail, and the mathematical formula and program flowchart are given also. Results show that this algorithm can evaluate spatial straightness error more effectively and exactly. 展开更多
关键词 ERROR Evaluation spatial straightness GEOMETRIC APPROXIMATION SEARCHING Algorithm Minimum ZONE
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Study of three-dimensional spatial diffuse discharge in contact electrode structure applied to air purification
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作者 Shuai XU Wenzheng LIU +3 位作者 Jiaying QIN Yiwei SUN Xitao JIANG Qi QI 《Plasma Science and Technology》 SCIE EI CAS CSCD 2024年第10期73-81,共9页
In this work,based on the role of pre-ionization of the non-uniform electric field and its effect of reducing the collisional ionization coefficient,a diffuse dielectric barrier discharge plasma is formed in the open ... In this work,based on the role of pre-ionization of the non-uniform electric field and its effect of reducing the collisional ionization coefficient,a diffuse dielectric barrier discharge plasma is formed in the open space outside the electrode structure at a lower voltage by constructing a three-dimensional non-uniform spatial electric field using a contact electrode structure.The air purification study is also carried out.Firstly,a contact electrode structure is constructed using a three-dimensional wire electrode.The distribution characteristics of the spatial electric field formed by this electrode structure are analyzed,and the effects of the non-uniform electric field and the different angles of the vertical wire on the generation of three-dimensional spatial diffuse discharge are investigated.Secondly,the copper foam contact electrode structure is constructed using copper foam material,and the effects of different mesh sizes on the electric field distribution are analyzed.The results show that as the mesh size of the copper foam becomes larger,a strong electric field region exists not only on the surface of the insulating layer,but also on the surface of the vertical wires inside the copper foam,i.e.,the strong electric field region shows a three-dimensional distribution.Besides,as the mesh size increases,the area of the vertical strong electric field also increases.However,the electric field strength on the surface of the insulating layer gradually decreases.Therefore,the appropriate mesh size can effectively increase the discharge area,which is conducive to improving the air purification efficiency.Finally,a highly permeable stacked electrode structure of multilayer wire-copper foam is designed.In combination with an ozone treatment catalyst,an air purification device is fabricated,and the air purification experiment is carried out. 展开更多
关键词 dielectric barrier discharge three-dimensional spatial discharge atmospheric pressure air diffusion discharge air purification
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Sparse three-dimensional imaging for forward-looking array SAR using spatial continuity
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作者 LIU Xiangyang ZHANG Bingpeng +1 位作者 CAO Wei XIE Wenjia 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2021年第2期417-424,共8页
For forward-looking array synthetic aperture radar(FASAR),the scattering intensity of ground scatterers fluctuates greatly since there are kinds of vegetations and topography on the surface of the ground,and thus the ... For forward-looking array synthetic aperture radar(FASAR),the scattering intensity of ground scatterers fluctuates greatly since there are kinds of vegetations and topography on the surface of the ground,and thus the signal-to-noise ratio(SNR)of its echo signals corresponding to different vegetations and topography also varies obviously.Owing to the reason known to all,the performance of the sparse reconstruction of compressed sensing(CS)becomes worse in the case of lower SNR,and the quality of the sparse three-dimensional imaging for FASAR would be affected significantly in the practical application.In this paper,the spatial continuity of the ground scatterers is introduced to the sparse recovery algorithm of CS in the threedimensional imaging for FASAR,in which the weighted least square method of the cubic interpolation is used to filter out the bad and isolated scatterer.The simulation results show that the proposed method can realize the sparse three-dimensional imaging of FASAR more effectively in the case of low SNR. 展开更多
关键词 forward-looking array synthetic aperture radar(FASAR) sparse three-dimensional imaging compressed sensing(CS) spatial continuity
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Integration system research and development for three-dimensional laser scanning information visualization in goaf 被引量:2
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作者 罗周全 黄俊杰 +2 位作者 罗贞焱 汪伟 秦亚光 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第7期1985-1994,共10页
An integration processing system of three-dimensional laser scanning information visualization in goaf was developed. It is provided with multiple functions, such as laser scanning information management for goaf, clo... An integration processing system of three-dimensional laser scanning information visualization in goaf was developed. It is provided with multiple functions, such as laser scanning information management for goaf, cloud data de-noising optimization, construction, display and operation of three-dimensional model, model editing, profile generation, calculation of goaf volume and roof area, Boolean calculation among models and interaction with the third party soft ware. Concerning this system with a concise interface, plentiful data input/output interfaces, it is featured with high integration, simple and convenient operations of applications. According to practice, in addition to being well-adapted, this system is favorably reliable and stable. 展开更多
关键词 GOAF laser scanning visualization integration system 1 Introduction The goaf formed through underground mining of mineral resources is one of the main disaster sources threatening mine safety production [1 2]. Effective implementation of goaf detection and accurate acquisition of its spatial characteristics including the three-dimensional morphology the spatial position as well as the actual boundary and volume are important basis to analyze predict and control disasters caused by goaf. In recent years three-dimensional laser scanning technology has been effectively applied in goaf detection [3 4]. Large quantities of point cloud data that are acquired for goaf by means of the three-dimensional laser scanning system are processed relying on relevant engineering software to generate a three-dimensional model for goaf. Then a general modeling analysis and processing instrument are introduced to perform subsequent three-dimensional analysis and calculation [5 6]. Moreover related development is also carried out in fields such as three-dimensional detection and visualization of hazardous goaf detection and analysis of unstable failures in goaf extraction boundary acquisition in stope visualized computation of damage index aided design for pillar recovery and three-dimensional detection
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Three-Dimensional Computed Tomography Assessment and Planning for Severe Lower Limb Deformities: A Case Report of Bilateral Fibular Hemimelia 被引量:2
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作者 Yoshiteru Kawasaki Mitsuhiko Takahashi Natsuo Yasui 《Open Journal of Orthopedics》 2013年第3期167-171,共5页
To correct a lower limb deformity, orthopedic surgeons must have an exact understanding of the deformity. In general, preoperative planning is carried out using anterior-posterior (AP) and lateral radiographs. However... To correct a lower limb deformity, orthopedic surgeons must have an exact understanding of the deformity. In general, preoperative planning is carried out using anterior-posterior (AP) and lateral radiographs. However, for severe cases with a combination of angular and rotational deformities of the lower limb, obtaining true AP and lateral radiographs is difficult and accurate calculation of the rotational deformity from radiographs is impossible. In this report, we propose to focus on preoperative assessment using three-dimensional (3D) reconstruction images of computed tomography (CT) scans for severe lower limb deformity in a patient with bilateral fibular hemimelia type II according to the Achterman- Kalamchi classification. She underwent bifocal deformity corrections of the bilateral tibiae using Taylor spatial frames in combination with the Ilizarov external fixator. Complete bony union was achieved, without angular deformity or limb length discrepancy. 展开更多
关键词 DEFORMITY Correction PREOPERATIVE PLANNING three-dimensional Computed Tomography FIBULAR Hemimelia TAYLOR spatial Frame
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Type Synthesis of Spatial Straight Line Mechanisms with only Revolute Joints
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作者 YANG Jia-lun GAO Feng +2 位作者 ZHU Kuan-jun LIU Bin SI Jia-ju 《Journal of Donghua University(English Edition)》 EI CAS 2012年第2期134-138,共5页
Spatial straight line mechanisms are a class of spatial mechanisms whose end-effectors generate the trajectory with the form of exact straight lines,which have potential applications in many industrial sectors.This st... Spatial straight line mechanisms are a class of spatial mechanisms whose end-effectors generate the trajectory with the form of exact straight lines,which have potential applications in many industrial sectors.This study aims to synthesis the spatial straight line mechanisms with only revolute joints,meaning that no prismatic joints are included.According to the generalized function sets and the law of one dimensional rotation,the type of compositions of characteristic and the corresponding conditions are derived.Furthermore,some novel symmetrical and asymmetrical spatial straight line mechanisms are synthesized through assembling specific kinematic chains under the corresponding conditions.Finally,several synthesized spatial straight line mechanisms are illustrated to show the effectiveness of the synthesis methodology. 展开更多
关键词 spatial straight line mechanisms type synthesis generalized function set law of one dimensional rotation
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Three-dimensional(3D)parametric measurements of individual gravels in the Gobi region using point cloud technique
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作者 JING Xiangyu HUANG Weiyi KAN Jiangming 《Journal of Arid Land》 SCIE CSCD 2024年第4期500-517,共18页
Gobi spans a large area of China,surpassing the combined expanse of mobile dunes and semi-fixed dunes.Its presence significantly influences the movement of sand and dust.However,the complex origins and diverse materia... Gobi spans a large area of China,surpassing the combined expanse of mobile dunes and semi-fixed dunes.Its presence significantly influences the movement of sand and dust.However,the complex origins and diverse materials constituting the Gobi result in notable differences in saltation processes across various Gobi surfaces.It is challenging to describe these processes according to a uniform morphology.Therefore,it becomes imperative to articulate surface characteristics through parameters such as the three-dimensional(3D)size and shape of gravel.Collecting morphology information for Gobi gravels is essential for studying its genesis and sand saltation.To enhance the efficiency and information yield of gravel parameter measurements,this study conducted field experiments in the Gobi region across Dunhuang City,Guazhou County,and Yumen City(administrated by Jiuquan City),Gansu Province,China in March 2023.A research framework and methodology for measuring 3D parameters of gravel using point cloud were developed,alongside improved calculation formulas for 3D parameters including gravel grain size,volume,flatness,roundness,sphericity,and equivalent grain size.Leveraging multi-view geometry technology for 3D reconstruction allowed for establishing an optimal data acquisition scheme characterized by high point cloud reconstruction efficiency and clear quality.Additionally,the proposed methodology incorporated point cloud clustering,segmentation,and filtering techniques to isolate individual gravel point clouds.Advanced point cloud algorithms,including the Oriented Bounding Box(OBB),point cloud slicing method,and point cloud triangulation,were then deployed to calculate the 3D parameters of individual gravels.These systematic processes allow precise and detailed characterization of individual gravels.For gravel grain size and volume,the correlation coefficients between point cloud and manual measurements all exceeded 0.9000,confirming the feasibility of the proposed methodology for measuring 3D parameters of individual gravels.The proposed workflow yields accurate calculations of relevant parameters for Gobi gravels,providing essential data support for subsequent studies on Gobi environments. 展开更多
关键词 Gobi gravels three-dimensional(3D)parameters point cloud 3D reconstruction Random Sample Consensus(RANSAC)algorithm Density-Based spatial Clustering of Applications with Noise(DBSCAN)
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Three-Dimensional Shear Wave Velocity Structure of the Northeastern Brazilian Lithosphere
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作者 Jorge Luis de Souza Newton Pereira dos Santos Carlos da Silva Vilar 《International Journal of Geosciences》 2016年第6期849-872,共24页
A large number of Rayleigh wave dispersion curves recorded at twenty three seismic stations was used to investigate the 3-D shear wave velocity structure of the northeastern Brazilian lithosphere. A simple procedure t... A large number of Rayleigh wave dispersion curves recorded at twenty three seismic stations was used to investigate the 3-D shear wave velocity structure of the northeastern Brazilian lithosphere. A simple procedure to generate a three-dimensional image of Mohorovicic;discontinuity was applied in northeastern Brazil and the Moho 3-D image was in agreement with several isolated crustal thicknesses obtained with different geophysical methods. A detailed 3-D S wave velocity model is proposed for the region. In the crust, our model is more realist than CRUST2.0 global model, because it shows more details either laterally or in depth than global model, i.e., clear lateral variation and gradual increase of S wave velocity in depth. Down to 100 km depth, the 3-D S wave velocity model in northeastern Brazil is dominated by low velocities and this is consistent either with heat flow measurements or with measurements of the flexural strength of the lithosphere developed in the South American continent. Our 3-D S wave velocity model was also used to obtain the lithosphere thickness in each cell of the northeastern Brazil and the results were consistent with global studies about the Lithosphere-Asthenosphere Boundary worldwide. 展开更多
关键词 Rayleigh Waves Group-Velocity Tomography three-dimensional Shear Wave Velocity LITHOSPHERE spatial Resolution Northeastern Brazil
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Spatially resolved transcriptomics: a comprehensive review of their technological advances, applications, and challenges 被引量:7
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作者 Mengnan Cheng Yujia Jiang +6 位作者 Jiangshan Xu Alexios-Fotios AMentis Shuai Wang Huiwen Zheng Sunil Kumar Sahu Longqi Liu Xun Xu 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2023年第9期625-640,共16页
The ability to explore life kingdoms is largely driven by innovations and breakthroughs in technology,from the invention of the microscope 350 years ago to the recent emergence of single-cell sequencing,by which the s... The ability to explore life kingdoms is largely driven by innovations and breakthroughs in technology,from the invention of the microscope 350 years ago to the recent emergence of single-cell sequencing,by which the scientific community has been able to visualize life at an unprecedented resolution.Most recently,the Spatially Resolved Transcriptomics(SRT)technologies have filled the gap in probing the spatial or even three-dimensional organization of the molecular foundation behind the molecular mysteries of life,including the origin of different cellular populations developed from totipotent cells and human diseases.In this review,we introduce recent progresses and challenges on SRT from the perspectives of technologies and bioinformatic tools,as well as the representative SRT applications.With the currently fast-moving progress of the SRT technologies and promising results from early adopted research projects,we can foresee the bright future of such new tools in understanding life at the most profound analytical level. 展开更多
关键词 spatially resolved transcriptomics Bioinformatic tools spatial single-cell Cell communications Tissue dissection three-dimensional organ
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Effect of the mineral spatial distribution heterogeneity on the tensile strength of granite:Insights from PFC3D-GBM numerical analysis 被引量:5
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作者 Tao Zhang Liyuan Yu +3 位作者 Yuxuan Peng Hongwen Jing Haijian Su Jiangbo Wei 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第5期1144-1160,共17页
The mechanical characteristics of crystalline rocks are affected by the heterogeneity of the spatial distribution of minerals.In this paper,a novel three-dimensional(3D)grain-based model(GBM)based on particle flow cod... The mechanical characteristics of crystalline rocks are affected by the heterogeneity of the spatial distribution of minerals.In this paper,a novel three-dimensional(3D)grain-based model(GBM)based on particle flow code(PFC),i.e.PFC3D-GBM,is proposed.This model can accomplish the grouping of mineral grains at the 3D scale and then filling them.Then,the effect of the position distribution,geometric size,and volume composite of mineral grains on the cracking behaviour and macroscopic properties of granite are examined by conducting Brazilian splitting tests.The numerical results show that when an external load is applied to a sample,force chains will form around each contact,and the orientation distribution of the force chains is uniform,which is independent of the external load level.Furthermore,the number of high-strength force chains is proportional to the external load level,and the main orientation distribution is consistent with the external loading direction.The main orientation of the cracks is vertical to that of the high-strength force chains.The geometric size of the mineral grains controls the mechanical behaviours.As the average grain size increases,the number of transgranular contacts with higher bonding strength in the region connecting both loading points increases.The number of high-strength force chains increases,leading to an increase in the stress concentration value required for the macroscopic failure of the sample.Due to the highest bonding strength,the generation of transgranular cracks in quartz requires a higher concentrated stress value.With increasing volume composition of quartz,the number of transgranular cracks in quartz distributed in the region connecting both loading points increases,which requires many high-strength force chains.The load level rises,leading to an increase in the tensile strength of the numerical sample. 展开更多
关键词 Rock mechanics Tensile strength spatial distribution of minerals three-dimensional(3D)grain-based model (GBM) Transgranular contact
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Spatial distribution modeling of subsurface bedrock using a developed automated intelligence deep learning procedure:A case study in Sweden 被引量:4
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作者 Abbas Abbaszadeh Shahri Chunling Shan +1 位作者 Emma Zall Stefan Larsson 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2021年第6期1300-1310,共11页
Due to associated uncertainties,modelling the spatial distribution of depth to bedrock(DTB)is an important and challenging concern in many geo-engineering applications.The association between DTB,the safety and econom... Due to associated uncertainties,modelling the spatial distribution of depth to bedrock(DTB)is an important and challenging concern in many geo-engineering applications.The association between DTB,the safety and economy of design structures implies that generating more precise predictive models can be of vital interest.In the present study,the challenge of applying an optimally predictive threedimensional(3D)spatial DTB model for an area in Stockholm,Sweden was addressed using an automated intelligent computing design procedure.The process was developed and programmed in both C++and Python to track their performance in specified tasks and also to cover a wide variety of diffe rent internal characteristics and libraries.In comparison to the ordinary Kriging(OK)geostatistical tool,the superiority of the developed automated intelligence system was demonstrated through the analysis of confusion matrices and the ranked accuracies of different statistical errors.The re sults showed that in the absence of measured data,the intelligence models as a flexible and efficient alternative approach can account for associated uncertainties,thus creating more accurate spatial 3D models and providing an appropriate prediction at any point in the subsurface of the study area. 展开更多
关键词 Automated intelligence system Predictive depth to bedrock(DTB)model three-dimensional(3D)spatial distribution
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A method of reconstructing 3D model from 2D geological cross-section based on self-adaptive spatial sampling:A case study of Cretaceous McMurray reservoirs in a block of Canada 被引量:1
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作者 WANG Lixin YIN Yanshu +6 位作者 WANG Hui ZHANG Changmin FENG Wenjie LIU Zhenkun WANG Pangen CHENG Lifang LIU Jiong 《Petroleum Exploration and Development》 CSCD 2021年第2期407-420,共14页
An orthogonal 2D training image is constructed from the geological analysis results of well logs and sedimentary facies;the 2 D probabilities in three directions are obtained through linear pooling method and then agg... An orthogonal 2D training image is constructed from the geological analysis results of well logs and sedimentary facies;the 2 D probabilities in three directions are obtained through linear pooling method and then aggregated by the logarithmic linear pooling to determine the 3 D multi-point pattern probabilities at the unknown points,to realize the reconstruction of a 3 D model from 2D cross-section.To solve the problems of reducing pattern variability in the 2 D training image and increasing sampling uncertainty,an adaptive spatial sampling method is introduced,and an iterative simulation strategy is adopted,in which sample points from the region with higher reliability of the previous simulation results are extracted to be additional condition points in the following simulation to improve the pattern probability sampling stability.The comparison of lateral accretion layer conceptual models shows that the reconstructing algorithm using self-adaptive spatial sampling can improve the accuracy of pattern sampling and rationality of spatial structure characteristics,and accurately reflect the morphology and distribution pattern of the lateral accretion layer.Application of the method in reconstructing the meandering river reservoir of the Cretaceous McMurray Formation in Canada shows that the new method can accurately reproduce the shape,spatial distribution pattern and development features of complex lateral accretion layers in the meandering river reservoir under tide effect.The test by sparse wells shows that the simulation accuracy is above 85%,and the coincidence rate of interpretation and prediction results of newly drilled horizontal wells is up to 80%. 展开更多
关键词 geological modeling two-dimensional cross-section three-dimensional model probability aggregation lateral accretion layer multiple-point geostatistics self-adaptive spatial sampling
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Stochastic analysis of excavation-induced wall deflection and box culvert settlement considering spatial variability of soil stiffness
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作者 Ping Li Shiwei Liu +2 位作者 Jian Ji Xuanming Ding Mengdie Bao 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第12期3256-3270,共15页
In this study, a three-dimensional (3D) finite element modelling (FEM) analysis is carried out to investigate the effects of soil spatial variability on the response of retaining walls and an adjacent box culvert due ... In this study, a three-dimensional (3D) finite element modelling (FEM) analysis is carried out to investigate the effects of soil spatial variability on the response of retaining walls and an adjacent box culvert due to a braced excavation. The spatial variability of soil stiffness is modelled using a variogram and calibrated by high-quality experimental data. Multiple random field samples (RFSs) of soil stiffness are generated using geostatistical analysis and mapped onto a finite element mesh for stochastic analysis of excavation-induced structural responses by Monte Carlo simulation. It is found that the spatial variability of soil stiffness can be described by an exponential variogram, and the associated vertical correlation length is varied from 1.3 m to 1.6 m. It also reveals that the spatial variability of soil stiffness has a significant effect on the variations of retaining wall deflections and box culvert settlements. The ignorance of spatial variability in 3D FEM can result in an underestimation of lateral wall deflections and culvert settlements. Thus, the stochastic structural responses obtained from the 3D analysis could serve as an effective aid for probabilistic design and analysis of excavations. 展开更多
关键词 three-dimensional(3D) Geostatistical analysis Random finite element modelling(FEM) spatial variability of soil stiffness
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综采工作面整体三维空间直线度评估研究
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作者 刘堃 宋宇科 +3 位作者 谢嘉成 王丽杰 王学文 王永峰 《工矿自动化》 北大核心 2025年第10期69-77,共9页
现有综采工作面直线度评估方法采用平面直线度,通过液压支架或刮板输送机单一装备信息描述直线度,且未考虑外部因素和装备间的相对关系,无法准确、全面反映实际工况下综采工作面的直线度情况。针对上述问题,提出了一种综采工作面整体三... 现有综采工作面直线度评估方法采用平面直线度,通过液压支架或刮板输送机单一装备信息描述直线度,且未考虑外部因素和装备间的相对关系,无法准确、全面反映实际工况下综采工作面的直线度情况。针对上述问题,提出了一种综采工作面整体三维空间直线度评估方法。在三维空间条件下,基于三级坐标体系,利用刮板输送机、液压支架群自身轨迹与自身直线度基线的偏差程度评估单一综采装备直线度,在此基础上,融合煤层曲面与装备偏差、浮动连接机构推进误差,完成对综采工作面整体三维空间直线度的评估。该方法采用三维空间直线度,相较二维平面直线度可减小误差,有效消除平面投影导致的形态失真效应;采用整体装备直线度,可以有效解决单一装备直线度无法全面表达综采工作面整体情况的问题;考虑煤层装备耦合关系、刮板输送机窜动量,可使直线度求解与评估更接近实际工况,显著提高直线度求解与评估的精度。实验结果表明,采用所提方法得到的直线度评估结果与标准差方法较为接近,验证了其准确性,此外,通过多方面偏差评估,可实时动态分析某时刻可能对直线度造成影响的因素所在并及时调整。 展开更多
关键词 综采工作面 综采装备 三维空间直线度 整体装备直线度 整体空间直线度
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基于自适应金豺狼算法的空间直线度误差评定
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作者 潘亚娟 黎秀宇 +1 位作者 胡义华 张蓉 《机械设计》 北大核心 2025年第5期138-143,共6页
为提高空间直线度误差评定精度,文中提出了空间直线度误差评定的自适应金豺狼算法(AGJO)。首先,建立了空间直线度误差评定数学模型,在符合最小区域条件的基础上给出了误差评定目标函数;其次,针对金豺狼算法(GJO)性能受猎物逃脱能量的影... 为提高空间直线度误差评定精度,文中提出了空间直线度误差评定的自适应金豺狼算法(AGJO)。首先,建立了空间直线度误差评定数学模型,在符合最小区域条件的基础上给出了误差评定目标函数;其次,针对金豺狼算法(GJO)性能受猎物逃脱能量的影响较大,设计了一种自适应逃脱能量策略,得到了自适应金豺狼优化算法,3个基准函数测试结果表明:AGJO在收敛精度、速度上具有一定优势;最后,通过两个空间直线度误差评定实例进行了测试和对比分析。结果表明:AGJO相对于变步长天牛须算法、改进鲸鱼算法和差分蜂群算法在实例1上的计算精度上分别提高了8.98%,10.17%和2.52%,在实例2上的计算精度分别提高了55.13%,60.67%和30.00%,且均具有更快的收敛速度。 展开更多
关键词 空间直线度 金豺狼优化算法 自适应逃脱能量 误差评定
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恶意模型下信息论安全的空间平行直线距离保密计算协议
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作者 高汇泽 刘新 +1 位作者 张雨晨 贾利凯 《内蒙古科技大学学报》 2025年第3期294-300,共7页
针对现有空间平行直线距离保密计算协议效率较低、只能抗被动攻击等问题,基于不定方程组中解的无限性思想和随机数混淆方法,分别设计半诚实模型和恶意模型下的空间平行直线距离保密计算协议,并对协议进行正确性分析和安全性证明。最后,... 针对现有空间平行直线距离保密计算协议效率较低、只能抗被动攻击等问题,基于不定方程组中解的无限性思想和随机数混淆方法,分别设计半诚实模型和恶意模型下的空间平行直线距离保密计算协议,并对协议进行正确性分析和安全性证明。最后,通过复杂性分析和实验仿真,协议执行效率得到了显著提高。此外,协议均不使用任何公钥加密算法,且在无限计算资源下也无法获取隐私信息,达到了信息论安全,在航空、物联网等领域具有重要的理论意义和应用价值。 展开更多
关键词 安全多方计算 空间平行直线距离 信息论安全 恶意模型
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Characterization and function of particulate organic matter:Evidence from lakes undergoing ecological restoration
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作者 Letian Zhang Wenqiang Zhang +2 位作者 Hao Guo Baoqing Shan Dongyang Wei 《Journal of Environmental Sciences》 2025年第4期91-103,共13页
Particulate organic matter(POM)plays a crucial role in the organic composition of lakes;however,its characteristics remain poorly understood.This study aimed to characterize the structure and composition of POM in Lak... Particulate organic matter(POM)plays a crucial role in the organic composition of lakes;however,its characteristics remain poorly understood.This study aimed to characterize the structure and composition of POM in Lake Baiyangdian usingmany kinds of techniques and investigate the effects of different extracted forms of POM on water quality.The suspended particulatematter in the lake had complex compositions,with its components primarily derived from aquatic plants and their detritus.The organic matter content of the suspended particulatematterwas relatively high(organic carbon content 27.29–145.94 g/kg)for the sum of three extractable states(water-extracted organic matter[WEOM],humic acid,and fulvic acid)and one stable bound state(humin).Spatial distribution analysis revealed that the POM content in the water increased from west to east,which was consistent with the water flow pattern influenced by the Baiyangdian water diversion project.Fluorescence spectroscopy analysis of the WEOM showed three prominent peaks with excitation/emission wavelengths similar to those of dissolved organic matter peaks.These peaks were potentially initial products of POM conversion into dissolved organic matter.Furthermore,the intensity of the WEOM fluorescence peak(total fluorescence peak intensity)was negatively correlated with the inorganic nitrogen concentration in water(p<0.01),while the intensity of the HA fluorescence peak showed a positive correlation with the inorganic nitrogen concentration(p<0.01).This suggested that exogenous organic matter inputs led to the diffusion of alkaline dissolved nitrogen from sediment intowater,while degradation processes of aquatic plant debris contributed to the decrease in inorganic nitrogen concentrations in the water column.These findings enhance our understanding of POM characteristics in shallow lakes and the role of POM in shallow lake ecosystems. 展开更多
关键词 Lake baiyangdian Particulate organic matter Physical structure spatial distribution three-dimensional fluorescence SPECTROSCOPY
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空间直线拟合的整体最小二乘算法 被引量:68
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作者 姚宜斌 黄书华 +1 位作者 孔建 何军泉 《武汉大学学报(信息科学版)》 EI CSCD 北大核心 2014年第5期571-574,共4页
提出了一种基于整体最小二乘的空间直线拟合方法。首先,对空间直线的标准式方程进行变换,并附加参数转换的过程,将6个参数简化为4个;然后,将方程改写为矩阵形式,由此巧妙地将空间直线拟合的问题转化为整体最小二乘的参数求解问题,利用TL... 提出了一种基于整体最小二乘的空间直线拟合方法。首先,对空间直线的标准式方程进行变换,并附加参数转换的过程,将6个参数简化为4个;然后,将方程改写为矩阵形式,由此巧妙地将空间直线拟合的问题转化为整体最小二乘的参数求解问题,利用TLS迭代法求得转换后的空间直线拟合的4个参数,再通过参数回代的方法恢复空间直线的6个基本参数。通过算例比较验证了该方法的可行性和有效性。 展开更多
关键词 空间直线 整体最小二乘 SVD 拟合
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基于三维最小二乘方法的空间直线度误差评定 被引量:19
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作者 王炳杰 赵军鹏 王春洁 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2014年第10期1477-1480,共4页
空间直线度误差是评定机械产品精度的一项重要指标,实际工程中对空间直线度误差评定算法的精度要求越来越高.为了准确评定空间直线度误差,参照国家标准(GB/T 11336—2004),采用三维最小二乘方法建立了空间直线拟合的数学模型,并给出了... 空间直线度误差是评定机械产品精度的一项重要指标,实际工程中对空间直线度误差评定算法的精度要求越来越高.为了准确评定空间直线度误差,参照国家标准(GB/T 11336—2004),采用三维最小二乘方法建立了空间直线拟合的数学模型,并给出了该数学模型的精确解.基于最小二乘拟合中线,采用空间投影、坐标变换和格点法求得最小二乘中线包容圆柱面直径.采用数值算例验证了新方法的有效性.提出的空间直线度误差评定方法精度高、鲁棒性好且易于编程实现. 展开更多
关键词 空间直线度误差 空间直线拟合 空间投影 坐标变换 三维最小二乘法
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