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面向RISC-V适配开发的x86 built-in函数转换方法
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作者 丁志远 朱家鑫 +1 位作者 吴国全 王伟 《广西大学学报(自然科学版)》 CAS 北大核心 2024年第3期620-636,共17页
新兴架构RISC-V的生态建设需要将其他架构函数或软件包向RISC-V架构迁移适配。在研究GCC特定架构适配的built-in函数向RISC-V架构迁移时,提出一套x86到RISC-V的built-in函数转换方法,对于非扩展指令集(属非向量类型)built-in函数,采用RI... 新兴架构RISC-V的生态建设需要将其他架构函数或软件包向RISC-V架构迁移适配。在研究GCC特定架构适配的built-in函数向RISC-V架构迁移时,提出一套x86到RISC-V的built-in函数转换方法,对于非扩展指令集(属非向量类型)built-in函数,采用RISC-V架构下相同功能的built-in或标准库函数替代;对于SSE扩展指令集built-in函数,建立数据类型映射和向量函数操作映射实现向RISC-V架构向量扩展函数或标准库函数的迁移,其中RVV函数迁移方式占比67%。实验结果表明:方法迁移的程序功能正确,方法有效。本文方法对其他扩展指令集built-in函数的迁移提供了指导,且与现有工作相比,更易扩展、覆盖面更广。 展开更多
关键词 函数迁移 built-in函数 指令扩展集 RISC-V迁移
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Constructing Built-In Electric Fields with Semiconductor Junctions and Schottky Junctions Based on Mo-MXene/Mo-Metal Sulfides for Electromagnetic Response
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作者 Xiaojun Zeng Xiao Jiang +2 位作者 Ya Ning Yanfeng Gao Renchao Che 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第10期453-473,共21页
The exploration of novel multivariate heterostructures has emerged as a pivotal strategy for developing high-performance electromagnetic wave(EMW)absorption materials.However,the loss mechanism in traditional heterost... The exploration of novel multivariate heterostructures has emerged as a pivotal strategy for developing high-performance electromagnetic wave(EMW)absorption materials.However,the loss mechanism in traditional heterostructures is relatively simple,guided by empirical observations,and is not monotonous.In this work,we presented a novel semiconductor-semiconductor-metal heterostructure sys-tem,Mo-MXene/Mo-metal sulfides(metal=Sn,Fe,Mn,Co,Ni,Zn,and Cu),including semiconductor junctions and Mott-Schottky junctions.By skillfully combining these distinct functional components(Mo-MXene,MoS_(2),metal sulfides),we can engineer a multiple heterogeneous interface with superior absorption capabilities,broad effective absorption bandwidths,and ultrathin matching thickness.The successful establishment of semiconductor-semiconductor-metal heterostructures gives rise to a built-in electric field that intensifies electron transfer,as confirmed by density functional theory,which collaborates with multiple dielectric polarization mechanisms to substantially amplify EMW absorption.We detailed a successful synthesis of a series of Mo-MXene/Mo-metal sulfides featuring both semiconductor-semiconductor and semiconductor-metal interfaces.The achievements were most pronounced in Mo-MXene/Mo-Sn sulfide,which achieved remarkable reflection loss values of-70.6 dB at a matching thickness of only 1.885 mm.Radar cross-section calculations indicate that these MXene/Mo-metal sulfides have tremendous potential in practical military stealth technology.This work marks a departure from conventional component design limitations and presents a novel pathway for the creation of advanced MXene-based composites with potent EMW absorption capabilities. 展开更多
关键词 Semiconductor-semiconductor-metal heterostructure Semiconductor junctions Mott-Schottky junctions built-in electric field Electromagnetic wave absorption
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Modulating charge separation and transfer for high-performance photoelectrodes via built-in electric field
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作者 Houyan Cheng Peng Liu +3 位作者 Yuntao Cui Ru Ya Yuxiang Hu Jinshu Wang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第5期1126-1146,共21页
Constructing a built-in electric field has emerged as a key strategy for enhancing charge separation and transfer,thereby improving photoelectrochemical performance.Recently,considerable efforts have been devoted to t... Constructing a built-in electric field has emerged as a key strategy for enhancing charge separation and transfer,thereby improving photoelectrochemical performance.Recently,considerable efforts have been devoted to this endeavor.This review systematically summarizes the impact of built-in electric fields on enhancing charge separation and transfer mechanisms,focusing on the modulation of built-in electric fields in terms of depth and orderliness.First,mechanisms and tuning strategies for built-in electric fields are explored.Then,the state-of-the-art works regarding built-in electric fields for modulating charge separation and transfer are summarized and categorized according to surface and interface depth.Finally,current strategies for constructing bulk built-in electric fields in photoelectrodes are explored,and insights into future developments for enhancing charge separation and transfer in high-performance photoelectrochemical applications are provided. 展开更多
关键词 photoelectrochemical water splitting bulk built-in electric field cation intercalation charge separation and transfer
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VSe_(2)/V_(2)C heterocatalyst with built-in electric field for efficient lithium-sulfur batteries:Remedies polysulfide shuttle and conversion kinetics
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作者 Yanwei Lv Lina Bai +7 位作者 Qi Jin Siyu Deng Xinzhi Ma Fengfeng Han Juan Wang Lirong Zhang Lili Wu Xitian Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期397-409,I0010,共14页
Lithium sulfur(Li-S)battery is a kind of burgeoning energy storage system with high energy density.However,the electrolyte-soluble intermediate lithium polysulfides(Li PSs)undergo notorious shuttle effect,which seriou... Lithium sulfur(Li-S)battery is a kind of burgeoning energy storage system with high energy density.However,the electrolyte-soluble intermediate lithium polysulfides(Li PSs)undergo notorious shuttle effect,which seriously hinders the commercialization of Li-S batteries.Herein,a unique VSe_(2)/V_(2)C heterostructure with local built-in electric field was rationally engineered from V_(2)C parent via a facile thermal selenization process.It exquisitely synergizes the strong affinity of V_(2)C with the effective electrocatalytic activity of VSe_(2).More importantly,the local built-in electric field at the heterointerface can sufficiently promote the electron/ion transport ability and eventually boost the conversion kinetics of sulfur species.The Li-S battery equipped with VSe_(2)/V_(2)C-CNTs-PP separator achieved an outstanding initial specific capacity of 1439.1 m A h g^(-1)with a high capacity retention of 73%after 100 cycles at0.1 C.More impressively,a wonderful capacity of 571.6 mA h g^(-1)was effectively maintained after 600cycles at 2 C with a capacity decay rate of 0.07%.Even under a sulfur loading of 4.8 mg cm^(-2),areal capacity still can be up to 5.6 m A h cm^(-2).In-situ Raman tests explicitly illustrate the effectiveness of VSe_(2)/V_(2)C-CNTs modifier in restricting Li PSs shuttle.Combined with density functional theory calculations,the underlying mechanism of VSe_(2)/V_(2)C heterostructure for remedying Li PSs shuttling and conversion kinetics was deciphered.The strategy of constructing VSe_(2)/V_(2)C heterocatalyst in this work proposes a universal protocol to design metal selenide-based separator modifier for Li-S battery.Besides,it opens an efficient avenue for the separator engineering of Li-S batteries. 展开更多
关键词 Li-S battery Shuttle effect Separator modifier VSe_(2)/V_(2)C heterostructure built-in electric field
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Bimetallic selenide heterostructure with directional built-in electricfield confined in N-doped carbon nanofibers for superior sodium storage with ultralong lifespan
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作者 Junying Weng Degui Zou +5 位作者 Wenyong Yuan Pengfei Zhou Minghui Ding Jin Zhou Hailin Cong Fangyi Cheng 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期407-416,共10页
Constructing heterostructure is considered as an effective strategy to address the sluggish electronic and ionic kinetics of anode materials for sodium ion batteries(SIBs).However,realizing the orientated growth and u... Constructing heterostructure is considered as an effective strategy to address the sluggish electronic and ionic kinetics of anode materials for sodium ion batteries(SIBs).However,realizing the orientated growth and uniform distribution of the heterostructure is still a great challenge.Herein,the regulated novel CoSe_(2)/NiSe_(2)heterostructure confined in N-doped carbon nanofibers(CoSe_(2)/NiSe_(2)@N-C)are prepared by using Co/Ni-ZIF template,in which,the CoSe_(2)/NiSe_(2)heterostructures realize uniform distribution on a micro level.Benefiting from the unique heterostructure and N-doped carbon nanofibers,the CoSe_(2)/NiSe_(2)@N-C deliveries superior rate capability and durable cycle lifespan with a reversible capacity of 400.5 mA h g^(-1)after 5000 cycles at 2 A g^(-1).The Na-ion full battery with CoSe_(2)/NiSe_(2)@N-C anode and layered oxide cathode displays a remarkable energy density of 563 W h kg^(-1)with 241.1 W kg^(-1)at 0.1 A g^(-1).The theoretical calculations disclose that the periodic and directional built-in electric-field along with the heterointerfaces of CoSe_(2)/NiSe_(2)@N-C can accelerate electrochemical reaction kinetics.The in(ex)situ experimental measurements reveal the reversible conversion reaction and stable structure of CoSe_(2)/NiSe_(2)@N-C during Na+insertion/extraction.The study highlights the potential ability of precisely controlled heterostructure to stimulate the electrochemical performances of advanced anode for SIBs. 展开更多
关键词 CoSe_(2)/NiSe_(2) heterostructure built-in electric-field Rate capability Ultralong lifespan Sodium ion batteries
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Interfacial built-in electric field and crosslinking pathways enabling WS_(2)/Ti_(3)C_(2)T_(x) heterojunction with robust sodium storage at low temperature
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作者 Jiabao Li Shaocong Tang +6 位作者 Jingjing Hao Quan Yuan Tianyi Wang Likun Pan Jinliang Li Shenbo Yang Chengyin Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期635-645,I0014,共12页
Developing efficient energy storage for sodium-ion batteries(SIBs)by creating high-performance heterojunctions and understanding their interfacial interaction at the atomic/molecular level holds promise but is also ch... Developing efficient energy storage for sodium-ion batteries(SIBs)by creating high-performance heterojunctions and understanding their interfacial interaction at the atomic/molecular level holds promise but is also challenging.Besides,sluggish reaction kinetics at low temperatures restrict the operation of SIBs in cold climates.Herein,cross-linking nanoarchitectonics of WS_(2)/Ti_(3)C_(2)T_(x) heterojunction,featuring built-in electric field(BIEF),have been developed,employing as a model to reveal the positive effect of heterojunction design and BIEF for modifying the reaction kinetics and electrochemical activity.Particularly,the theoretical analysis manifests the discrepancy in work functions leads to the electronic flow from the electron-rich Ti_(3)C_(2)T_(x) to layered WS_(2),spontaneously forming the BIEF and“ion reservoir”at the heterogeneous interface.Besides,the generation of cross-linking pathways further promotes the transportation of electrons/ions,which guarantees rapid diffusion kinetics and excellent structure coupling.Consequently,superior sodium storage performance is obtained for the WS_(2)/Ti_(3)C_(2)T_(x) heterojunction,with only 0.2%decay per cycle at 5.0 A g^(-1)(25℃)up to 1000 cycles and a high capacity of 293.5 mA h g^(-1)(0.1A g^(-1)after 100 cycles)even at-20℃.Importantly,the spontaneously formed BIEF,accompanied by“ion reservoir”,in heterojunction provides deep understandings of the correlation between structure fabricated and performance obtained. 展开更多
关键词 WS_(2)/Ti_(3)C_(2)T_(x)heterojunction built-in electric field Ion reservoir Reaction kinetics Sodium storage performance at low temperature
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Construction of strong built-in electric field in binary metal sulfide heterojunction to propel high-loading lithium-sulfur batteries 被引量:1
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作者 Weiming Xiong Jiande Lin +6 位作者 Huiqun Wang Sha Li Junhao Wang Yuxiang Mao Xiao Zhan De-Yin Wu Li Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第6期492-501,I0011,共11页
The practical application of lithium-sulfur(Li-S)batteries is greatly hindered by soluble polysulfides shuttling and sluggish sulfur redox kinetics.Rational design of multifunctional hybrid materials with superior ele... The practical application of lithium-sulfur(Li-S)batteries is greatly hindered by soluble polysulfides shuttling and sluggish sulfur redox kinetics.Rational design of multifunctional hybrid materials with superior electronic conductivity and high electrocatalytic activity,e.g.,heterostructures,is a promising strategy to solve the above obstacles.Herein,a binary metal sulfide MnS-MoS_(2) heterojunction electrocatalyst is first designed for the construction of high-sulfur-loaded and durable Li-S batteries.The MnS-MoS_(2) p-n heterojunction shows a unique structure of MoS_(2) nanosheets decorated with ample MnS nanodots,which contributes to the formation of a strong built-in electric field at the two-phase interface.The MnS-MoS_(2) hybrid host shows strong soluble polysulfide affinity,enhanced electronic conductivity,and exceptional catalytic effect on sulfur reduction.Benefiting from the synergistic effect,the as-derived S/MnS-MoS_(2) cathode delivers a superb rate capability(643 m A h g^(-1)at 6 C)and a durable cyclability(0.048%decay per cycle over 1000 cycles).More impressively,an areal capacity of 9.9 m A h cm^(-2)can be achieved even under an extremely high sulfur loading of 14.7 mg cm^(-2)and a low electrolyte to sulfur ratio of 2.9μL mg^(-1).This work provides an in-depth understanding of the interfacial catalytic effect of binary metal compound heterojunctions on sulfur reaction kinetics. 展开更多
关键词 Lithium-sulfur battery MnS-MoS_(2)heterojunction built-in electric field Sulfur reaction kinetics High sulfur loading
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Optimally arranged TiO_(2)@MoS_(2) heterostructures with effectively induced built-in electric field for high-performance lithium-sulfur batteries 被引量:1
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作者 Jeongyoub Lee Changhoon Choi +12 位作者 Jung Been Park Seungho Yu Jinho Ha Hyungsoo Lee Gyumin Jang Young Sun Park Juwon Yun Hayoung Im Subin Moon Soobin Lee Jung-Il Choi Dong-Wan Kim Jooho Moon 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第8期496-508,I0012,共14页
To overcome the serious technological issues affecting lithium-sulfur(Li-S) batteries,such as sluggish sulfur redox kinetics and the detrimental shuttle effect,heterostructure engineering has been investigated as a st... To overcome the serious technological issues affecting lithium-sulfur(Li-S) batteries,such as sluggish sulfur redox kinetics and the detrimental shuttle effect,heterostructure engineering has been investigated as a strategy to effectively capture soluble lithium polysulfide intermediates and promote their conversion reaction by integrating highly polar metal oxides with catalytically active metals sulfides.However,to fully exploit the outstanding properties of heterostructure-based composites,their detailed structure and interfacial contacts should be designed rationally.Herein,optimally arranged TiO_(2)and MoS_(2)-based heterostructures(TiO_(2)@MoS_(2)) are fabricated on carbon cloth as a multifunctional interlayer to efficiently trap polysulfide intermediates and accelerate their redox kinetics.Owing to the synergistic effects between TiO_(2)and MoS_(2)and the uniform heterointerface distribution that induces the ideally oriented built-in electric field,Li-S batteries with TiO_(2)@MoS_(2)interlayers exhibit high rate capability(601 mA h g^(-1)at 5 C),good cycling stability(capacity-fade rate of 0.067% per cycle over 500 cycles at2 C),and satisfactory areal capacity(5.2 mA h cm^(-2)) under an increased sulfur loading of 5.2 mg cm^(-2).Moreover,by comparing with a MoS_(2)@TiO_(2)interlayer composed of reversely arranged heterostructures,the effect of the built-in electric field’s direction on the electrocatalytic reactions of polysulfide intermediates is thoroughly investigated for the first time.The superior electrocatalytic activities of the rationally arranged TiO_(2)@MoS_(2)interlayer demonstrate the importance of optimizing the built-in electric field of heterostructures for producing high-performance Li-S batteries. 展开更多
关键词 Lithium-sulfur batteries Shuttle effect TiO_(2)-MoS_(2)heterostructure engineering built-in electric field Multifunctional interlayers
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Research on Energy Efficiency Characteristics of Mining Shovel Hoisting and Slewing System Driven by Hydraulic-Electric Hybrid System
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作者 Xiangyu Wang Lei Ge +1 位作者 Yunhua Li Long Quan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第6期197-211,共15页
Mining shovel is a crucial piece of equipment for high-efficiency production in open-pit mining and stands as one of the largest energy consumption sources in mining.However,substantial energy waste occurs during the ... Mining shovel is a crucial piece of equipment for high-efficiency production in open-pit mining and stands as one of the largest energy consumption sources in mining.However,substantial energy waste occurs during the descent of the hoisting system or the deceleration of the slewing platform.To reduce the energy loss,an innovative hydrau-lic-electric hybrid drive system is proposed,in which a hydraulic pump/motor connected with an accumulator is added to assist the electric motor to drive the hoisting system or slewing platform,recycling kinetic and potential energy.The utilization of the kinetic and potential energy reduces the energy loss and installed power of the min-ing shovel.Meanwhile,the reliability of the mining shovel pure electric drive system also can be increased.In this paper,the hydraulic-electric hybrid driving principle is introduced,a small-scale testbed is set up to verify the feasibil-ity of the system,and a co-simulation model of the proposed system is established to clarify the system operation and energy characteristics.The test and simulation results show that,by adopting the proposed system,compared with the traditional purely electric driving system,the peak power and energy consumption of the hoisting electric motor are reduced by 36.7%and 29.7%,respectively.Similarly,the slewing electric motor experiences a significant decrease in peak power by 86.9%and a reduction in energy consumption by 59.4%.The proposed system expands the application area of the hydraulic electric hybrid drive system and provides a reference for its application in over-sized and super heavy equipment. 展开更多
关键词 Mining shovel hoisting and slewing system Hydraulic-electric hybrid drive Energy saving
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Design of Rotor Magnetic Barrier Structure of Built-in Permanent Magnet Motor Based on Taguchi Method
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作者 Shengnan Wu Xianwen Pang +1 位作者 Wenming Tong Yingcong Yao 《CES Transactions on Electrical Machines and Systems》 CSCD 2023年第2期193-201,共9页
In this paper,a 20kW vehicle built-in permanent magnet synchronous motor is taken as an example,and a magnetic barrier structure is added to the rotor of the motor to solve the uneven saturation problem of the rotor s... In this paper,a 20kW vehicle built-in permanent magnet synchronous motor is taken as an example,and a magnetic barrier structure is added to the rotor of the motor to solve the uneven saturation problem of the rotor side magnetic bridge.This structure improves the air-gap flux density waveform of the motor by influencing the internal magnetic flux path of the motor rotor,thus improving the sine of the no-load back EMF waveform of the motor and reducing the torque ripple of the motor.At the same time,Taguchi method is used to optimize the structural parameters of the added magnetic barrier.In order to facilitate the analysis of its uneven saturation phenomenon and improve the optimization effect,a simple equivalent magnetic network(EMN)model considering the uneven saturation of rotor magnetic bridge is established in this paper,and the initial values of optimization factors are selected based on this model.Finally,the no-load back EMF waveform distortion rate,torque ripple and output torque of the optimized motor are compared and analyzed,and the influence of magnetic barrier structure parameters on the electromagnetic performance of the motor is also analyzed.The results show that the optimized motor can not change the output torque of the motor as much as possible on the basis of reducing the waveform distortion rate of no-load back EMF and torque ripple. 展开更多
关键词 built-in permanent magnet synchronous motor Magnetic barrier Taguchi method Equivalent magnetic network model Finite element analysis
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基于深度学习与机器视觉的起重机吊装安全监测方法 被引量:1
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作者 薛志钢 许晨旭 +1 位作者 巫波 闻东东 《科技创新与应用》 2024年第2期1-5,共5页
随着我国经济的快速发展,各类大型工程层出不穷,对起重机吊装作业的需求不断增加。然而,吊装作业过程中依然存在众多的安全隐患,极易造成人员伤亡等安全事故。因此,该文提出一种基于深度学习和机器视觉的起重机吊装安全监测方法。将深... 随着我国经济的快速发展,各类大型工程层出不穷,对起重机吊装作业的需求不断增加。然而,吊装作业过程中依然存在众多的安全隐患,极易造成人员伤亡等安全事故。因此,该文提出一种基于深度学习和机器视觉的起重机吊装安全监测方法。将深度学习与机器视觉相结合对监控图像中的被吊物和工人进行识别和定位,同时可自主判断工人是否佩戴安全帽。根据监测模型的识别和定位信息,获得工人与被吊物之间的空间关系,为起重机吊装过程提供安全预警信息。为了提高所提方法的实用性和便携性,开发一个起重机吊装安全智能监测系统,不仅可以实时显示监控图像的识别结果,而且能够输出场景的语义描述、发出安全预警信号。 展开更多
关键词 深度学习 机器视觉 吊装监测 智能监测 安全预警
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基于动态贝叶斯网络的装配式建筑吊装施工安全风险分析 被引量:2
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作者 杨文安 李佳欣 《安全与环境学报》 CAS CSCD 北大核心 2024年第4期1328-1336,共9页
针对装配式建筑吊装施工期间风险影响因素多、不确定性高及风险状态随时间动态变化等问题,提出基于动态贝叶斯网络的装配式建筑吊装施工安全风险动态分析方法。首先,根据装配式建筑吊装施工特点和事故致因理论,从“人、物、环、管”4个... 针对装配式建筑吊装施工期间风险影响因素多、不确定性高及风险状态随时间动态变化等问题,提出基于动态贝叶斯网络的装配式建筑吊装施工安全风险动态分析方法。首先,根据装配式建筑吊装施工特点和事故致因理论,从“人、物、环、管”4个方面建立风险指标体系。其次,引入时间维度建立动态贝叶斯网络模型,利用模糊理论和专家打分法量化网络节点的概率,并结合Leaky Noisy-or Gate扩展模型修正条件概率。最后,利用动态贝叶斯网络的双向推理功能对装配式建筑吊装施工安全风险进行动态风险分析。由实例分析得到某装配式建筑吊装施工安全风险的时序变化曲线,通过反向推理得到导致吊装事故发生的关键风险因素。研究成果可为分析和有效控制装配式建筑吊装施工安全风险提供新思路。 展开更多
关键词 安全工程 装配式建筑 吊装施工 动态贝叶斯网络(DBN) 风险分析
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装配式建筑吊装施工安全关键风险分析的改进DEMATEL方法 被引量:2
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作者 李红兵 夏瑶徽 +1 位作者 谢定坤 胡军 《安全与环境学报》 CAS CSCD 北大核心 2024年第4期1314-1327,共14页
为了解决装配式建筑吊装施工安全风险评估体系缺失、演化路径不清的共性问题,提高施工安全科学管理水平,提出了一种基于改进决策试验与实验室评估法(Decision Making Trial and Evaluation Laboratory,DEMATEL)的关键风险识别与演化路... 为了解决装配式建筑吊装施工安全风险评估体系缺失、演化路径不清的共性问题,提高施工安全科学管理水平,提出了一种基于改进决策试验与实验室评估法(Decision Making Trial and Evaluation Laboratory,DEMATEL)的关键风险识别与演化路径分析方法。基于扎根理论构建装配式建筑吊装施工安全风险评价指标体系,利用基于组合数有序加权算子(Combination Ordered Weighted Averaging,C-OWA)改进直接影响矩阵,建立DEMATEL模型决策矩阵,并通过因果关系图识别关键风险因素,探究关键风险演化路径,以武汉市某工程项目为背景开展实证研究。结果表明:该项目存在X_(1)(工人的专业水平与素质差)、X_(5)(工人的技能培训与安全教育不到位)、X_(15)(人员没有进行定期的安全培训)、X_(18)(现场施工安全管理水平低)、X_(19)(风险意识缺乏)等关键风险因素;在4条基础路径和2条复合路径中,复合路径的权重高于基础路径,随着关键风险之间直接和间接作用的复杂化,发生风险事件的可能性将逐步增加;复合路径除了通过基础路径与关键风险耦合得到以外,还可以通过基础路径的相互作用演化得到。 展开更多
关键词 安全工程 装配式建筑 塔吊施工 决策试验与实验室评估法(DEMATEL) 关键风险 演化路径
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FBG传感器在起重机械局部损伤监测中的应用研究
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作者 尚歌 王雁飞 《传感技术学报》 CAS CSCD 北大核心 2024年第7期1285-1289,共5页
光纤布拉格光栅(Fiber Bragg Grating,FBG)传感器自身应变传递特性和敏感范围波动较大,在应用过程中缺少结合被测结构性能和FBG传感器本身结构特点的应用方法。为此,研究FBG传感器在起重机械局部损伤监测中的应用。根据起重机械的内部... 光纤布拉格光栅(Fiber Bragg Grating,FBG)传感器自身应变传递特性和敏感范围波动较大,在应用过程中缺少结合被测结构性能和FBG传感器本身结构特点的应用方法。为此,研究FBG传感器在起重机械局部损伤监测中的应用。根据起重机械的内部振动状况构建损伤模型,在FBG传感器光纤的同一位置放置两个不同的Bragg光栅,并根据波长变化采集局部损伤数据,将采集到的数据输入自回归滑动平均模型(Autoregressive Moving Average Model,ARMA)中,提取损伤状态,完成起重机械局部损伤监测。实验结果表明,所提方法的反馈时间低于0.25 ms,监测到的应变数据与实际应变数据差距相近,监测的损伤部位与设定损伤部位一致,证明该方法监测反馈效率和监测精度高,监测效果好,适用于各种环境下的起重机械局部监测工作。 展开更多
关键词 FBG传感器 局部损伤监测 BRAGG光栅 起重机械 ARMA模型 内部振动
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基于SAPAD-QFD的施工升降机驾驶室设计研究
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作者 张玉萍 杨甜甜 +1 位作者 杨一 罗晓庆 《包装工程》 CAS 北大核心 2024年第2期88-98,117,共12页
目的 为提高施工升降机驾驶员工作效率,改善其工作体验,设计出满足驾驶员实际需求的施工升降机驾驶室。方法 以SAPAD理论和QFD理论为理论框架,梳理出用户需求及与其对应的设计特征,并在此基础上开展设计实践。首先,通过观察法和访谈法... 目的 为提高施工升降机驾驶员工作效率,改善其工作体验,设计出满足驾驶员实际需求的施工升降机驾驶室。方法 以SAPAD理论和QFD理论为理论框架,梳理出用户需求及与其对应的设计特征,并在此基础上开展设计实践。首先,通过观察法和访谈法来获取驾驶员日常行为信息,根据SAPAD理论完成“行为-产品-意义”的映射分析,并借助聚类分析法获取用户需求;其次,利用AHP法对用户需求进行权重分析并计算权重值;最后,根据QFD理论构建施工升降机驾驶室的质量屋,将各项用户需求转化为设计特征,指导设计实践。结果 根据研究结果,提出一种符合驾驶员实际需求的施工升降机驾驶室设计方案。结论 SAPAD理论与QFD理论的综合应用,一方面可以挖掘出用户的核心需求,另一方面增加了设计方案的科学性,在优化施工升降机驾驶室用户体验的同时,也为其他工业产品设计提供了有价值的参考。 展开更多
关键词 SAPAD理论 QFD理论 施工升降机驾驶室设计 用户行为
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基于WSR-IM的装配式预制构件吊装施工安全评价
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作者 武乾 胡剑峰 《土木工程与管理学报》 2024年第2期48-54,共7页
装配式建筑预制构件吊装施工相较于传统建筑吊装作业的施工安全风险更加具有多样性和复杂性,为准确有效的评估装配式建筑预制构件吊装施工的安全风险状态,识别出关键风险因素,在多因素耦合视角下构建预制构件吊装施工安全事故致因模型... 装配式建筑预制构件吊装施工相较于传统建筑吊装作业的施工安全风险更加具有多样性和复杂性,为准确有效的评估装配式建筑预制构件吊装施工的安全风险状态,识别出关键风险因素,在多因素耦合视角下构建预制构件吊装施工安全事故致因模型。基于施工单位责任视角,首先采用WSR方法论从“物理-事理-人理”三个层面识别并筛选出预制构件吊装施工安全风险影响因素20个,其次利用可以削弱主观因素影响的C-OWA算子构建改进相互作用矩阵进行风险耦合分析,最后用实例验证该方法实用性。结果表明:该项目整体风险等级偏强,项目管理者应该重视预制构件吊装风险的预防和管控,通过采取有效的防御措施,对施工过程中的高权重风险因素进行控制,降低发生重大安全事故的概率。 展开更多
关键词 装配式建筑 吊装施工 风险耦合 相互作用矩阵 风险评价
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大跨径刚性悬链桁架桥不带加劲弦顶推施工技术
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作者 廖菲 《施工技术(中英文)》 CAS 2024年第4期114-120,共7页
针对悬链形上加劲连续钢桁梁桥建造,提出不带加劲弦多点同步顶推施工技术,在边跨设置拼装平台,在中跨设置临时墩,分段拼装,顶推钢桁梁,最后吊装合龙加劲弦。在施工中,设置大临结构,以减小钢桁梁的悬臂长度,适应了钢桁梁拼装及顶推装置... 针对悬链形上加劲连续钢桁梁桥建造,提出不带加劲弦多点同步顶推施工技术,在边跨设置拼装平台,在中跨设置临时墩,分段拼装,顶推钢桁梁,最后吊装合龙加劲弦。在施工中,设置大临结构,以减小钢桁梁的悬臂长度,适应了钢桁梁拼装及顶推装置布置的要求;采用同步控制系统与纠偏装置,解决了多点同步顶推与钢桁梁线性控制的难题;通过有限元仿真分析,验证了顶推过程的可行性;采用落梁法,解决了钢桁主梁合龙及加劲弦合龙的难题。 展开更多
关键词 桥梁工程 钢桁梁 加劲弦 顶推 落梁法 施工技术
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千万吨级主井高速大载重提升技术研究与应用
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作者 李浩宇 徐长磊 +3 位作者 韩瑞军 施士虎 杜贵文 徐广译 《中国矿山工程》 2024年第1期53-59,共7页
以千万吨级“双超”矿山——思山岭铁矿主井提升系统建设为背景,从主井提升系统方案、竖井提升运行安全间隙研究、大型化提升技术装备应用、大型主井井塔布置等方面综合论述了主井提升系统参数确定所开展的研究工作以及设计建设采用的... 以千万吨级“双超”矿山——思山岭铁矿主井提升系统建设为背景,从主井提升系统方案、竖井提升运行安全间隙研究、大型化提升技术装备应用、大型主井井塔布置等方面综合论述了主井提升系统参数确定所开展的研究工作以及设计建设采用的新技术、新装备。思山岭铁矿主井提升系统的建设将对我国类似矿山竖井高速大载重提升系统的建设实施具有较强的标杆示范意义。 展开更多
关键词 千万吨级 高速 大载重 安全间隙 主井提升
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多绳摩擦提升机多连杆锁绳装置的设计与优化
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作者 寇保福 陈天奇 +2 位作者 王永帅 苏浩 郝锐杰 《机械设计》 CSCD 北大核心 2024年第S01期97-102,共6页
针对现有锁绳装置锁绳低效、松绳困难、锁绳力不足等问题,设计出一种能够实现在各种载荷工况(尤其重载)下安全、高效地进行锁绳作业的提升钢丝绳锁紧装置(简称锁紧装置)。使用SolidWorks对锁绳装置进行三维建模,采用ANSYS对锁绳装置进... 针对现有锁绳装置锁绳低效、松绳困难、锁绳力不足等问题,设计出一种能够实现在各种载荷工况(尤其重载)下安全、高效地进行锁绳作业的提升钢丝绳锁紧装置(简称锁紧装置)。使用SolidWorks对锁绳装置进行三维建模,采用ANSYS对锁绳装置进行有限元分析;然后对锁绳装置关键部位第一连杆进行优化设计,采用中间复合材料设计方法获得初始优化数据组,并且使用Kriging模型建立响应面模型;最后采用多目标遗传算法进行优化。优化结果显示:第一连杆变形量减小17.46%,最大等效应力减小16.18%,显著提高了锁绳装置的综合性能,为矿井的安全、高效生产提供了保障。 展开更多
关键词 多绳摩擦提升机 锁绳装置 响应面法 多目标优化
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PLC在螺杆式启闭机预防螺杆压弯保护中的应用
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作者 何云轩 李扬 +2 位作者 陈宇潮 沈炜皓 张歆 《江苏水利》 2024年第4期66-69,共4页
螺杆式启闭机在日常使用下降过程中螺杆被压弯的现象时有发生,其主要原因是水闸门槽或闸室底板有较大坚硬异物一般不易被运行管理人员察觉,若异物没有被及时清理,会导致闸门运行缓慢甚至停滞。现有的保护系统很难做到及时、精准的动作,... 螺杆式启闭机在日常使用下降过程中螺杆被压弯的现象时有发生,其主要原因是水闸门槽或闸室底板有较大坚硬异物一般不易被运行管理人员察觉,若异物没有被及时清理,会导致闸门运行缓慢甚至停滞。现有的保护系统很难做到及时、精准的动作,可能会造成螺杆被不同程度地压弯。通过直接跟踪闸门实时位移速度这一途径,利用PLC快速精准测量速度,并在螺杆启闭机发生异常时及时断电停机,可有效避免上述现象的发生。 展开更多
关键词 螺杆启闭机 PLC控制 脉冲测速 中断程序
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