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Vibration attenuation performance of wind turbine tower using a prestressed tuned mass damper under seismic excitation
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作者 Lei Zhenbo Liu Gang +1 位作者 Wang Hui Hui Yi 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2024年第2期511-524,共14页
With the rapid development of large megawatt wind turbines,the operation environment of wind turbine towers(WTTs)has become increasingly complex.In particular,seismic excitation can create a resonance response and cau... With the rapid development of large megawatt wind turbines,the operation environment of wind turbine towers(WTTs)has become increasingly complex.In particular,seismic excitation can create a resonance response and cause excessive vibration of the WTT.To investigate the vibration attenuation performance of the WTT under seismic excitations,a novel passive vibration control device,called a prestressed tuned mass damper(PS-TMD),is presented in this study.First,a mathematical model is established based on structural dynamics under seismic excitation.Then,the mathematical analytical expression of the dynamic coefficient is deduced,and the parameter design method is obtained by system tuning optimization.Next,based on a theoretical analysis and parameter design,the numerical results showed that the PS-TMD was able to effectively mitigate the resonance under the harmonic basal acceleration.Finally,the time-history analysis method is used to verify the effectiveness of the traditional pendulum tuned mass damper(PTMD)and the novel PS-TMD device,and the results indicate that the vibration attenuation performance of the PS-TMD is better than the PTMD.In addition,the PS-TMD avoids the nonlinear effect due to the large oscillation angle,and has the potential to dissipate hysteretic energy under seismic excitation. 展开更多
关键词 wind turbine tower prestressed tuned mass damper vibration control seismic excitation numerical simulation
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Tower crane path planning based on improved ant colony algorithm
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作者 HE Yumin HU Xiangyang +3 位作者 ZHANG Jinhua YAO Shipeng LIU Difang MEN Xinyan 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2024年第4期509-517,共9页
In order to solve the problem of path planning of tower cranes,an improved ant colony algorithm was proposed.Firstly,the tower crane was simplified into a three-degree-of-freedom mechanical arm,and the D-H motion mode... In order to solve the problem of path planning of tower cranes,an improved ant colony algorithm was proposed.Firstly,the tower crane was simplified into a three-degree-of-freedom mechanical arm,and the D-H motion model was established to solve the forward and inverse kinematic equations.Secondly,the traditional ant colony algorithm was improved.The heuristic function was improved by introducing the distance between the optional nodes and the target point into the function.Then the transition probability was improved by introducing the security factor of surrounding points into the transition probability.In addition,the local path chunking strategy was used to optimize the local multi-inflection path and reduce the local redundant inflection points.Finally,according to the position of the hook,the kinematic inversion of the tower crane was carried out,and the variables of each joint were obtained.More specifically,compared with the traditional ant colony algorithm,the simulation results showed that improved ant colony algorithm converged faster,shortened the optimal path length,and optimized the path quality in the simple and complex environment. 展开更多
关键词 tower crane ant colony algorithm transition probability local path chunking strategy path planning
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Comparison between seismic analysis of twisting and regular 52-story towers considering soil-structure interaction
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作者 Mohamed Naguib Abouelsaad Mohammed Shaaban +1 位作者 Salah El Bagalaty Mohamed E.El Madawy 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2024年第3期663-675,共13页
A dynamic analysis of both twisting and regular towers is carried out to determine the results of considering soil-structure interaction(SSI)on high-rise buildings.In addition,the difference between the seismic perfor... A dynamic analysis of both twisting and regular towers is carried out to determine the results of considering soil-structure interaction(SSI)on high-rise buildings.In addition,the difference between the seismic performance of using twisting towers over regular ones is investigated.The twisting tower is a simulation of the Evolution Tower(Moscow).The towers’skeletons consist of RC elements and rest on a reinforced concrete piled-raft foundation.The soil model is considered as multi-layered with the same soil properties as the zone chosen for the analysis(New Mansoura City,Egypt).The only difference between both towers is their shape in elevation.The whole system is modelled and analyzed in a single step as one full 3D model,which is known as the direct approach in SSI.All analyses are carried out using finite-element software(Midas GTS NX).Dynamic output responses due to three records of seismic loads are proposed and presented in some graphs.Based on the results,it is concluded that SSI has a considerable effect on the dynamic response of tall buildings mainly because of the foundation flexibility,as it leads to lengthening the vibration period,increasing the story drift and the base shear for both cases. 展开更多
关键词 soil-structure interaction seismic analysis twisting towers base shear story drift finite element method Midas GTS NX
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Research on Transmission Line Tower Tilting and Foundation State Monitoring Technology Based onMulti-Sensor Cooperative Detection and Correction
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作者 Guangxin Zhang Minghui Liu +4 位作者 Shichao Cheng Minzhen Wang Changshun Zhao Hongdan Zhao Gaiming Zhong 《Energy Engineering》 EI 2024年第1期169-185,共17页
The transmission line tower will be affected by bad weather and artificial subsidence caused by the foundation and other factors in the power transmission.The tower’s tilt and severe deformation will cause the buildi... The transmission line tower will be affected by bad weather and artificial subsidence caused by the foundation and other factors in the power transmission.The tower’s tilt and severe deformation will cause the building to collapse.Many small changes caused the tower’s collapse,but the early staff often could not intuitively notice the changes in the tower’s state.In the current tower online monitoring system,terminal equipment often needs to replace batteries frequently due to premature exhaustion of power.According to the need for real-time measurement of power line tower,this research designed a real-time monitoring device monitoring the transmission tower attitude tilting and foundation state based on the inertial sensor,the acceleration of 3 axis inertial sensor and angular velocity raw data to pole average filtering pre-processing,and then through the complementary filtering algorithm for comprehensive calculation of tilt angle,the system meets the demand for inclined online monitoring of power line poles and towers regarding measurement accuracy,with low cost and power consumption.The optimization multi-sensor cooperative detection and correction measured tilt angle result relative accuracy can reach 1.03%,which has specific promotion and application value since the system has the advantages of unattended and efficient calculation. 展开更多
关键词 Transmission line tower tilting MULTI-SENSOR foundation state monitoring collaborative detection
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Impact of Crosswind on Steady-State and Dynamic Performance of Natural Draft Dry Cooling Tower Group:A Numerical Analysis
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作者 Xuhui Jiang Xi Zhang +4 位作者 Song Wang Ruiqiong Wang Peng Zou Jingzhou Lu Xiaoxiao Li 《Frontiers in Heat and Mass Transfer》 EI 2024年第1期193-216,共24页
This study investigates the performance of a natural draft dry cooling tower group in crosswind conditions through numerical analysis.A comprehensive three-dimensional model is developed to analyze the steady-state an... This study investigates the performance of a natural draft dry cooling tower group in crosswind conditions through numerical analysis.A comprehensive three-dimensional model is developed to analyze the steady-state and dynamic behavior of the towers.The impact of wind speed and direction on heat rejection capacity and flow patterns is examined.Results indicate that crosswinds negatively affect the overall heat transfer capacity,with higher crosswind speeds leading to decreased heat transfer.Notably,wind direction plays a significant role,particularly at 0°.Moreover,tower response time increases with higher crosswind speeds due to increased turbulence and the formation of vortices.The response times are generally similar for wind directions of 45°and 90°,but differ when facing 0,where the leeward tower exhibits a shorter response time compared to the windward tower.These findings provide valuable insights into the performance of natural draft dry cooling tower groups under crosswind conditions,which can inform the design and operation of similar systems in practical applications. 展开更多
关键词 Natural draft dry cooling tower group CROSSWIND dynamic characteristics
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Design Optimization of a Lattice Tower: Structure and Foundations
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作者 Cossi Télesphore Nounangnonhou Guy Clarence Semassou +1 位作者 Kossoun Alain Tossa Noémie Sintondji 《Open Journal of Applied Sciences》 2024年第2期483-493,共11页
Produced in power plants, electrical energy is transported to places of consumption via the electricity network. At the heart of this network are the supports that allow electricity to be efficiently transported over ... Produced in power plants, electrical energy is transported to places of consumption via the electricity network. At the heart of this network are the supports that allow electricity to be efficiently transported over long distances, guaranteeing the security and supply of energy to the various centers of use. In the construction of a line, supports occupy an important part in terms of safety and construction cost. It is therefore essential to optimize their use to reduce the cost of transmission lines. This work addresses this problem, which focuses on the optimal utilization of X-lattice towers in the construction of overhead power lines. The challenge is to reconcile the search for optimal cost and respect for the design, resistance and service constraints of the structure. To do this, a parameter having a strong correlation with the weight, foundation and construction cost of the X-lattice tower for 161 kV lines is determined as an important cost variable. This parameter is the wheelbase of the towers. The junction point between the structure and the foundations is obtained by measuring the forces at the base of the tower following the lowering of the loads. These efforts make it possible to size foundations which are of the inverted or isolated sole type. The results obtained reveal that from 8 meters in width, the wheelbase gradually changes until the optimum is obtained at 6.29 meters. With this wheelbase, the production cost is optimal. It clearly emerges from this study that the construction of lattice pylons with a wheelbase of approximately 6.29 meters makes it possible to optimize the cost of construction of 161 kV lines in the Republic of Benin. 展开更多
关键词 Lattice tower WHEELBASE COST OPTIMIZATION FOUNDATION
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Tower Semiconductor Acquisition: Advancing Intel’s Presence in the Global Market
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作者 CHEN Kangmin 《Management Studies》 2024年第1期33-41,共9页
This paper delves into the economic event surrounding Intel Corporation’s high-profile acquisition of Tower Corporation.It aims to investigate the reasons behind Intel’s decision to acquire Tower,employ the SWOT ana... This paper delves into the economic event surrounding Intel Corporation’s high-profile acquisition of Tower Corporation.It aims to investigate the reasons behind Intel’s decision to acquire Tower,employ the SWOT analysis method to evaluate the event,and examine its impact on relevant stakeholders.The findings indicate that Intel’s acquisition of Tower was driven by objectives such as strengthening business areas,expanding market share,technological innovation and development,and future development strategy.Through the application of SWOT analysis,it becomes evident that the advantages of the acquisition lie in strengthening technical capabilities and expanding business segments,while simultaneously facing challenges such as integration complexities and pressure.The significance of this paper lies in gaining a comprehensive understanding of the strategic motivations and potential impacts associated with corporate acquisitions,thereby providing valuable insights for decision-making processes.The innovation lies in the comprehensive utilization of SWOT analysis to holistically evaluate the acquisition event,enabling a thorough assessment of its various aspects.For government and policymakers,they should strength regulation of corporate takeovers to ensure fair and transparent market competition,provide support and incentives,and strength cooperation to develop common policies and norms.As for enterprises,it is advised that strategic planning and comprehensive consideration should be formulated and carried out when making acquisitions.Also,stakeholders should actively participate in and monitor the process of corporate acquisition discussion and decision-making,and strengthen cooperation to ensure fair competition,maximizing the interests of all parties. 展开更多
关键词 intel corporation tower corporation ACQUISITION strategic motivation potential impacts SWOT analysis COOPERATION
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Evaluation of Driver-Induced Human Errors in Smart Construction Tower Crane Operations Based on DEMATEL-ISM-MICMAC
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作者 Jiahao Wang Wen Si 《Journal of Applied Mathematics and Physics》 2024年第4期1541-1556,共16页
With the advent of Industry 4.0, smart construction sites have seen significant development in China. However, accidents involving digitized tower cranes continue to be a persistent issue. Among the contributing facto... With the advent of Industry 4.0, smart construction sites have seen significant development in China. However, accidents involving digitized tower cranes continue to be a persistent issue. Among the contributing factors, human unsafe behavior stands out as a primary cause for these incidents. This study aims to assess the human reliability of tower crane operations on smart construction sites. To proactively enhance safety measures, the research employs text mining techniques (TF-IDF-Truncated SVD-Complement NB) to identify patterns of human errors among tower crane operators. Building upon the SHEL model, the study categorizes behavioral factors affecting human reliability in the man-machine interface, leading to the establishment of the Performance Shaping Factors (PSFs) system. Furthermore, the research constructs an error impact indicator system for the intelligent construction site tower crane operator interface. Using the DEMATEL method, it analyzes the significance of various factors influencing human errors in tower crane operations. Additionally, the ISM-MICMAC method is applied to unveil the hierarchical relationships and driving-dependent connections among these influencing factors. The findings indicate that personal state, operating procedures, and physical environment directly impact human errors, while personal capability, technological environment, and one fundamental organizational management factor contribute indirectly. . 展开更多
关键词 Text Mining DEMATEL-ISM-MICMAC Performance Shaping Factors Smart Construction tower Crane Operator
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A robust protocol to compute wind load coefficients of telecommunication towers and antennas using numerical simulation for risk and resilience assessment
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作者 Mohanad Khazaali Liyang Ma +2 位作者 Keivan Rokneddin Matteo Mazzotti Paolo Bocchini 《Resilient Cities and Structures》 2024年第1期66-83,共18页
An accurate estimation of wind loads on telecommunication towers is crucial for design,as well as for perform-ing reliability,resilience,and risk assessments.In particular,drag coefficient and interference factor are ... An accurate estimation of wind loads on telecommunication towers is crucial for design,as well as for perform-ing reliability,resilience,and risk assessments.In particular,drag coefficient and interference factor are the most significant factors for wind load computations.Wind tunnel tests and computational fluid dynamics(CFD)are the most appropriate methods to estimate these parameters.While wind tunnel tests are generally preferred in practice,they require dedicated facilities and personnel,and can be expensive if multiple configurations of tower panels and antennas need to be tested under various wind directions(e.g.,fragility curve development for system resilience analysis).This paper provides a simple,robust,and easily accessible CFD protocol with widespread applicability,offering a practical solution in situations where wind tunnel testing is not feasible,such as complex tower configurations or cases where the cost of running experiments for all the tower-antennas configurations is prohibitively high.Different turbulence models,structural and fluid boundary conditions and mesh types are tested to provide a streamlined CFD modeling strategy that shows good convergence and balances accuracy,computational time,and robustness.The protocol is calibrated and validated with experimental studies available in the literature.To demonstrate the capabilities of the protocol,three lattice tower panels and antennas with different configurations are analyzed as examples.The protocol successfully estimates the drag and lateral wind loads and their coefficients under different wind directions.Noticeable differences are observed between the esti-mated wind loads with this protocol and those computed by a simple linear superposition used in most practical applications,indicating the importance of tower-antenna interaction.Also,as expected,the wind loads recom-mended by design codes overestimate the simulated results.More importantly,the telecommunication design codes inadequately identify the most favorable wind directions that are associated with the lowest wind loads,while the results of the proposed protocol align with observations from experimental studies.This information may be used to select the tower orientation before construction.The findings of this study are of importance for the telecommunication industry,which seeks reliable results with minimal computational efforts.In addition,it enhances the fragility analysis of telecommunication towers under strong winds,and the portfolio risk and resilience assessment of telecommunication systems. 展开更多
关键词 Generalized CFD protocol Lattice tower tower panel Microwave antenna Wind coefficients tower-antenna interaction
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地铁车站围护结构耦合埋管换热系统运行策略研究
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作者 余元波 夏继豪 +2 位作者 刘俊 车轮飞 陈玉远 《暖通空调》 2025年第1期120-124,共5页
以某地铁车站为研究对象,模拟了其全年动态负荷,确定了地源热泵参数,建立了估算热泵出力及耗电量的参数模型,结合建立的动态换热模型得到了地源热泵系统-埋管阻容耦合仿真模型。以10年为运行周期,计算了埋管出水温度和换热量,分析了不... 以某地铁车站为研究对象,模拟了其全年动态负荷,确定了地源热泵参数,建立了估算热泵出力及耗电量的参数模型,结合建立的动态换热模型得到了地源热泵系统-埋管阻容耦合仿真模型。以10年为运行周期,计算了埋管出水温度和换热量,分析了不同工况下的换热性能,提出了热泵机组联合冷却塔辅助换热的运行策略。结果显示:围护结构耦合埋管换热系统在长期运行工况下存在机组停机或机组出力不足的情况,当负荷为计算负荷的80%时,可以保证热泵机组出力满足需求;冷却塔联合运行策略在制冷季可以有效降低埋管出水温度,在过渡季冷却塔的免费冷量可以降低埋管出水温度1~2℃,在长期运行工况下具有较好的地温恢复效果。 展开更多
关键词 地铁车站 地源热泵 埋管 围护结构 冷却塔 换热性能 出水温度
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基于Meteodyn WT的复杂地形测风塔布置
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作者 张照煌 计新宇 肖彧 《可再生能源》 北大核心 2025年第1期69-75,共7页
风资源分析对于风电场的建立至关重要,而测风数据的获取是风资源分析的重要前提。测风塔的布置方案直接影响了测风数据获取的准确性。文章以复杂地形下某风电场为例,基于计算流体力学(CFD)方法,使用Meteodyn WT软件对该风电场的风资源... 风资源分析对于风电场的建立至关重要,而测风数据的获取是风资源分析的重要前提。测风塔的布置方案直接影响了测风数据获取的准确性。文章以复杂地形下某风电场为例,基于计算流体力学(CFD)方法,使用Meteodyn WT软件对该风电场的风资源情况进行了模拟。从不同数量、位置测风塔布置方案下的测风塔风速和风电场年发电量两方面进行对比分析。分析结果表明:复杂地形下测风塔所能代表的范围极小,选取代表性测风塔时,须要对不同地形进行分区,建议使用多塔综合的方式;特殊地形下的测风塔不能作为整个风电场的代表性选择,但当出现遮挡或者跨地形的情况时,须要在该位置单独设立一座测风塔从而降低误差。该结果可为复杂地形下的测风塔选址和数量提供参考,从而提高风资源分析的准确性和合理性。 展开更多
关键词 Meteodyn WT 测风塔布置 复杂地形 发电量计算
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库岸塔柱状危岩的压裂耦合损伤-突变失稳预测
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作者 唐红梅 宋刚 +2 位作者 杨健 毛柯洁 周福川 《三峡大学学报(自然科学版)》 CAS 北大核心 2025年第1期28-36,共9页
位于三峡库区巫峡段消落带的塔柱状危岩,其底部多损伤因素的耦合作用下常呈压裂诱发座溃整体失稳模式,危岩底部耦合损伤至突变机制是研究该类库岸危岩体失稳预警的关键科学问题.以三峡库区库岸巫峡段箭穿洞塔柱状危岩体为例,将危岩体简... 位于三峡库区巫峡段消落带的塔柱状危岩,其底部多损伤因素的耦合作用下常呈压裂诱发座溃整体失稳模式,危岩底部耦合损伤至突变机制是研究该类库岸危岩体失稳预警的关键科学问题.以三峡库区库岸巫峡段箭穿洞塔柱状危岩体为例,将危岩体简化为中上部非劣化区和下部劣化区的二元地质力学模型,基于应变等价原理获得其危岩体下部劣化区的荷载效应、溶蚀效应、干湿循环弱化效应的耦合损伤本构模型和总损伤度演化方程,根据地质力学模型概化为等效弹簧模型转化为力-位移的耦合损伤本构方程;基于能量平衡原理和突变理论建立了塔柱状危岩的耦合损伤-折叠突变模型,获取了其失稳判据和临界位移的表达式.通过案例分析结果表明:该危岩体突变失稳时的系统控制变量为-0.0073,预测模型计算理论的突变起点垂向位移为42.2mm,终止点位移为60.5mm,当监测数据危岩体最大垂向累积位移为26.2mm时,小于突变起始位移时就采用及时治理措施,与危岩未失稳的状态吻合.其研究成果可为三峡库区灰岩地区库岸塔柱状压溃型危岩的监测预警与防治提供重要的理论支撑. 展开更多
关键词 库岸塔柱状危岩 压溃失稳型 耦合损伤 突变模型
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输电塔半刚性连接钢管构件轴压稳定性能研究
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作者 李正良 唐正奇 +3 位作者 杨靖波 俞登科 冯衡 郭莹 《工程力学》 北大核心 2025年第1期174-188,共15页
为了研究输电塔半刚性连接钢管构件的轴压稳定性能,对60根钢管试件进行了轴压试验,分析了其失稳破坏模式和稳定承载力,并与现行设计规范计算的承载力进行了对比;建立了半刚性连接钢管构件的有限元模型,经与试验结果对比验证后开展了参... 为了研究输电塔半刚性连接钢管构件的轴压稳定性能,对60根钢管试件进行了轴压试验,分析了其失稳破坏模式和稳定承载力,并与现行设计规范计算的承载力进行了对比;建立了半刚性连接钢管构件的有限元模型,经与试验结果对比验证后开展了参数分析,研究了初始转动刚度、径厚比、材料强度以及初始缺陷对半刚性连接钢管构件的稳定系数-长细比曲线的影响;基于有限元分析的结果提出了半刚性连接钢管构件的轴压稳定计算公式。研究结果表明:半刚性连接构件的试验稳定承载力均大于铰接构件的试验稳定承载力,在所有试验工况中两者的相对差距最小为5.6%;中国和美国现行设计规范计算得到的钢管构件稳定承载力总体偏保守,分别约为试验结果的0.78倍和0.89倍;影响半刚性连接钢管构件稳定承载力的主要因素为长细比、初始转动刚度以及边界条件;提出的半刚性连接钢管构件轴压稳定计算公式能准确地预测其稳定系数并具有良好的适用性,可为实际工程提供参考。 展开更多
关键词 输电塔 钢管构件 半刚性连接 轴压试验 稳定承载力 有限元分析
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特高压长悬臂输电塔横担结构竖向地震易损性分析
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作者 李正良 聂元晨 +1 位作者 王涛 吴凤波 《湖南大学学报(自然科学版)》 北大核心 2025年第1期84-92,共9页
800 kV特高压长悬臂输电塔横担结构属于高位水平长悬挑结构,对竖向地震作用比较敏感,亟须开展横担结构的竖向地震易损性分析研究.鉴于此,提出一个考虑多重性能水准的特高压长悬臂输电塔横担结构竖向地震易损性分析框架.首先,以某特高压... 800 kV特高压长悬臂输电塔横担结构属于高位水平长悬挑结构,对竖向地震作用比较敏感,亟须开展横担结构的竖向地震易损性分析研究.鉴于此,提出一个考虑多重性能水准的特高压长悬臂输电塔横担结构竖向地震易损性分析框架.首先,以某特高压长悬臂输电塔为研究对象建立有限元模型,分析了结构的竖向动力特性;其次,根据横担结构根部主材的应力比建立横担结构轻微、中度和严重破坏时的多重性能水准;最后,基于概率地震需求模型对横担结构开展竖向地震易损性分析.分析结果表明:长悬臂输电塔在竖向地震作用下受高阶振型影响显著,对结构竖向响应贡献显著的前三阶竖向模态依次为第16、26和29阶模态;在竖向地震作用下,横担根部主材是横担结构的主要受力杆件;与考虑横担结构根部拉弯主材强度破坏相比,在给定竖向地震动强度下,考虑压弯主材失稳破坏的横担结构失效概率明显较大. 展开更多
关键词 特高压长悬臂输电塔 横担结构 竖向地震动 多重性能水准 竖向地震易损性
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Tower节点集上的极小次数牛顿基 被引量:2
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作者 陈涛 董天 张树功 《吉林大学学报(理学版)》 CAS CSCD 北大核心 2007年第6期932-934,共3页
将关于张量积格点的lower子集上Lagrange插值问题的极小次数牛顿基推广到tower节点子集上.解决了二元Lagrange插值牛顿基问题,把tower节点集的概念推广到任意多维情形,以三维为例给出了相应的Lagrange插值极小次数牛顿基,并给出了计算三... 将关于张量积格点的lower子集上Lagrange插值问题的极小次数牛顿基推广到tower节点子集上.解决了二元Lagrange插值牛顿基问题,把tower节点集的概念推广到任意多维情形,以三维为例给出了相应的Lagrange插值极小次数牛顿基,并给出了计算三维tower节点集合消逝理想的约化Grbner基的快速算法. 展开更多
关键词 tower节点集 多元多项式插值 极小次数牛顿基
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Adsorption Properties of Adsorption Tower Filled with Calcium Superphosphate on NH_3 Emitted from Composting System of Animal Wastes 被引量:2
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作者 吕丹丹 种云霄 +4 位作者 吴启堂 吴根义 贺德春 丘锦荣 许振成 《Agricultural Science & Technology》 CAS 2012年第9期1982-1985,1990,共5页
[Objective] This study aimed to investigate the adsorption properties of the adsorption tower filled with calcium superphosphate on ammonia volatilized with aer- ation. [Method] Adsorption tower filled with calcium su... [Objective] This study aimed to investigate the adsorption properties of the adsorption tower filled with calcium superphosphate on ammonia volatilized with aer- ation. [Method] Adsorption tower filled with calcium superphosphate was adopted as experimental apparatus, which was constructed by poly vinyl chloride (PVC) circular tubes. With hartshorn as the source of ammonia volatilization, the effect of different ratios of height to diameter of the tower filled with equal amount of calcium super-phosphate on ammonia adsorption was investigated. In addition, adsorption tower with height-diameter ratio of 9.9 was selected to adsorb the ammonia emitted from the composting systems of pig manure and chicken manure with optimized and reg- ulated carbon-nitrogen ratio. [Result] Under certain volatilization rate, calcium super- phosphate particles in the adsorption tower could effectively adsorb the ammonia, and the adsorption efficiency was enhanced with the increase of height-diameter ra-tio, which could reach above 90% with height-diameter ratio of more than 1.1; the ammonia emitted from composting systems of pig manure and chicken manure with optimized and regulated carbon-nitrogen ratio could be completely absorbed using adsorption tower with height-diameter ratio of 9.9 filled with calcium superphosphate accounting for about 8% of the weight of composting materials. [Conclusion] Experi- mental results of this study provided reference for the application of adsorption tower filled with calcium superphosphate in the treatment of waste gas emitted from com- posting materials. 展开更多
关键词 Calcium superphosphate COMPOST AMMONIA Adsorption tower
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运用Sawyer Tower电路测试薄膜铁电性能 被引量:1
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作者 张涛 马宏伟 +2 位作者 李敏 张鹏利 赵省贵 《西安科技大学学报》 CAS 2012年第1期124-126,共3页
声表面波煤矿瓦斯传感器是一种新型瓦斯传感器,PZT基高压电铁电薄膜是该类传感器制备的理想功能材料,铁电性作为PZT基铁电薄膜的另一个重要性能对传感器的工作特点和稳定性具有重要影响。因而,测试并掌握具有高压电性铁电薄膜的铁电性... 声表面波煤矿瓦斯传感器是一种新型瓦斯传感器,PZT基高压电铁电薄膜是该类传感器制备的理想功能材料,铁电性作为PZT基铁电薄膜的另一个重要性能对传感器的工作特点和稳定性具有重要影响。因而,测试并掌握具有高压电性铁电薄膜的铁电性也是器件材料表征的一项重要工作。采用Sawyer Tower电路原理,自主设计铁电测试电路,制备PZT基铁电薄膜,并利用该电路测试薄膜的铁电性。由实验结果可知,自主设计的Sawyer Tower电路能简便、有效、准确和直观的测试薄膜的铁电性能,有望广泛应用于薄膜铁电性能测试及研究。 展开更多
关键词 PZT 铁电薄膜 Sawyer tower电路 铁电性能
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Tower支持下的App混合式学习研究——以“学习科学与技术”课程为例 被引量:9
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作者 王云 苑新美 《现代教育技术》 CSSCI 2016年第6期60-66,共7页
文章从Tower支持创建团队、发布任务、协作讨论等功能出发,以"学习科学与技术"课程为例,构建了Tower支持下的App混合式学习模式,设计了基于该模式的教学实施流程,验证了Tower支持下的App混合式学习能有效地促进教学和学习,为... 文章从Tower支持创建团队、发布任务、协作讨论等功能出发,以"学习科学与技术"课程为例,构建了Tower支持下的App混合式学习模式,设计了基于该模式的教学实施流程,验证了Tower支持下的App混合式学习能有效地促进教学和学习,为相关领域的理论和实践研究提供了借鉴。 展开更多
关键词 tower APP 混合式学习 学习科学与技术
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“Problem of Towers of Hanoi”仿真软件的设计 被引量:1
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作者 周斌 《实验室研究与探索》 CAS 北大核心 2011年第7期61-63,71,共4页
"Problem of Towers of Hanoi",用递归的方法能很容易地解决问题,不用递归的方法将会是比较困难,因为随着参与盘子数的不断增多,计算时间和复杂度将会不断增多。运用仿真软件能清晰地勾勒出每个盘子的移动轨迹并给出详细的移... "Problem of Towers of Hanoi",用递归的方法能很容易地解决问题,不用递归的方法将会是比较困难,因为随着参与盘子数的不断增多,计算时间和复杂度将会不断增多。运用仿真软件能清晰地勾勒出每个盘子的移动轨迹并给出详细的移动步骤,这将会使此问题能更形象、更直观的解决。 展开更多
关键词 PROBLEM of towerS of HANOI 递归 仿真软件
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基于Hanoi Tower算法的对等组认证模型研究 被引量:1
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作者 乐光学 《计算机工程》 EI CAS CSCD 北大核心 2005年第11期142-145,共4页
运用对称密码体制、公钥体制和数字签名技术,针对基于中间服务器架构的P2P网络,提出了一个公平且不可抵赖的HanoiTower安全认证协议算法,给出了协议模型实现的算法描述,然后对协议算法的性能和安全性进行了分析,并以某大型企业设计所“... 运用对称密码体制、公钥体制和数字签名技术,针对基于中间服务器架构的P2P网络,提出了一个公平且不可抵赖的HanoiTower安全认证协议算法,给出了协议模型实现的算法描述,然后对协议算法的性能和安全性进行了分析,并以某大型企业设计所“基于P2P网络构建的产品开发协同工作系统”为背景,分析了模型实现的若干关键技术问题。 展开更多
关键词 P2P(Peer to Peer) HANOI tower算法 不可抵赖 安全认证协议
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