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941.
942.
Shijun YU Yingshun LIU Xiandeng LIANG 《Journal of Transportation Systems Engineering and Information Technology》2011,11(4):91-96
Because of the complex influencing factors, the research on transportation structure usually based on a simple combination of qualitative analysis and ratio-based relation, which lacks of objective quantitative evaluation. The paper applies the information entropy theory to quantitatively study the evolution and development law for regional transportation structure. First, the transport structure information entropy is proposed, and a balanced transportation structure and dominance indicators is proposed to measure the structure and evolution law. Based on that, the main driving-force factors are identified by principal component analysis with combination of gray relational method. The driving-force factors are: total investment in fixed assets, comprehensive factor and population. These may provide evidence for structural optimization of transportation decision-making theory. In the final section, Jiangsu province structural analysis is taken as an example to demonstrate the feasibility of the proposed method. 相似文献
943.
建国以来,我国兴建了大量的公路桥梁。由于长期服役的磨损及超载破坏等原因,这些已建桥梁部分存在可靠性问题,需对其进行可靠性评估。而在目前存在的多种可靠性评估的理论与方法中选用哪种方法更切实可行显得尤为重要。本文对桥梁评估的各种方法进行了综述,并对各种可靠性评估常用方法优缺点进行了分析阐述,以供科研人员与工程实践人员参考。 相似文献
944.
945.
都市圈产业结构演化表现为在发展过程中产业的内容和结构不断自我更新,向高级化和合理化演进。都市圈空间结构演化包括规模结构、地域结构和职能结构三方面的内容。本文从系统论的角度证明了都市圈产业结构演化和城市空间结构演变是一个互相促进、有着明显耦合性和协同性的协调发展系统,总结出系统演化的内部协调机理。 相似文献
946.
947.
一种新型管道机械接头密封分析 总被引:1,自引:0,他引:1
随着海洋石油事业的发展,尤其是在役多年的石油平台工艺管道长时间受腐蚀介质和海洋环境的影响容易发生泄漏,传统的管道焊接技术由于需要动火作业,在已投产的石油平台管道维修方面受油气易燃易爆等各种因素的制约,不适应海洋平台管道维修快速、环保、经济等新要求。文中利用ANSYS有限元软件对传统机械接头的结构进行优化分析,开发出一种新型管道机械连接接头。此种接头具有耐高压、耐腐蚀、节能、安全、安装快捷等显著优点,特别适用于海洋石油平台工艺管道的快速维修。着重分析了新型管道机械接头的基本结构、连接机理及影响其密封性能的主要因素,分析结果显示此种连接可靠。 相似文献
948.
949.
A series of physical experiments were performed in steady current to investigate the hydrodynamic interactions between the cylinder and nets which constitute a main part of offshore aquacultural platforms. The hydrodynamic characteristics of only the cylinder, only nets and combined cylinder-net structures are measured and analyzed systematically under different current velocities, inflow angles and solidity ratios of nets. Based on experimental data, fitted formulas for hydrodynamic coefficients of a single resin net are proposed and compared to previously published empirical formulas. It is observed that the existence of the cylinder brings an increment up to 9.2% to drag coefficient of net panels whose solidity ratios are higher than 0.347, whereas this effect is negligible for nets with lower solidity ratios and perpendicular to the inflow. For nets inclined with 45°, the increment of the drag coefficient of net panels due to the existence of the cylinder is more significant (up to 22.9%) than that for perpendicularly placed nets. Furthermore, the existence of nets also leads to a noticeable increase in the drag coefficient of the cylinder, up to 40.18% for a relatively large net solidity ratio of 0.458, representative of biofouling condition. The increment increases with the rise of the solidity ratio of nets and it is larger for nets placed perpendicularly to the inflow than inclined. Effects of the cylinder and nets on lift coefficients of each other are a bit complicated, leading to an increase or reduction of lift coefficients depending on the inflow velocity, inflow angle and net solidity ratios. Finally, it is worth noting that the hydrodynamic interaction between the cylinder and nets deserves to be considered in current practice of hybrid methods by combining potential flow theory, Morison and screen models for aquacultural structures, especially for biofouling conditions. 相似文献
950.
To investigate the catastrophic mechanism and pattern of water inrush in tunnels in sand-slate strata, this paper takes the Xinping Tunnel on China-Laos Railway as the study case, and through model tests, reproduces the catastrophic occurrence and evolution process of the water inrush in the progressive failure of slate aquifuge, so as to analyze the changing pattern of the stress-strain characteristics of surrounding rocks, seepage pressure and flow rate with the decreasing thickness of the aquifuge. The results show that: (1) The water inrush in the sand slate strata would experience three stages: seepage, inrush and attenuation, which is essentially a gradual evolution process where, under the action of excavation unloading and stress and seepage coupling, fractures in the weak parts of the aquifuge gradually expand and break through until inrush channels are formed and the stability of the aquifuge loses gradually; (2) The stress-strain curve of the surrounding rocks and the relationship between the seepage pressure and flow show significant precursor and stage characteristics, and their changing patterns reflect the breeding, devel⁃ opment and evolution process of the disaster; (3) A sudden change point exists in the changing process of the seep⁃ age pressure and flow rate, and this sudden change point can be seen as the characteristic point of degradation in the water-blocking capacity of the aquifuge. The aquifuge thickness reflected by this point can be seen as the critical safety thickness of the aquifuge. © 2023 Editorial By Modern Tunnelling Technology. All rights reserved. 相似文献