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1.
基于线上线下多种渠道的创意扩散研究是企业管理的新兴研究热点之一.为此,引入多重网络理论与传播动力学理论,考虑工作中线下沟通、工作中通过企业社交媒体在线沟通及非工作时间电子沟通三种渠道,构建多种渠道构成的多重网络中的创意扩散模型.研究创意在多重网络中持续扩散的阈值条件,并对创意在多重网络中的扩散过程进行仿真实验.结果表明:1)当员工在单位时间内通过以上各渠道沟通的平均次数较接近时,在多重网络中创意扩散的速度较快,创意扩散的范围较广;2)与匀质网络相比,当非工作时间电子沟通子网络是无标度网络时,在多重网络中创意扩散的速度较快,扩散的范围较广;3)增大子网络层间创意扩散的相互促进作用对整个多重网络中创意的有效扩散有积极影响.  相似文献   
2.
针对某聚氯乙烯厂精馏过程中氯乙烯产品纯度低、能耗高的问题,利用化工流程模拟软件Aspen Plus对氯乙烯精馏系统中的T-203塔进行模拟优化,选择适合氯乙烯体系的NRTL模型进行计算,确定理论板数为28块。根据灵敏度分析和正交试验得到最佳操作参数为:回流比为0.8,进料位置为第2块理论板,侧线采出位置为第18块理论板。产品中氯乙烯质量分数达到99.999%,低沸物质量分数小于1×10-6,高沸物质量分数小于5×10-6。同时对精馏系统提出两项节能降耗技术,其中循环水改造技术预计为企业带来经济效益1034.85万元/a,高效导向筛板技术可以有效提高分离效率和生产能力。  相似文献   
3.
在高海拔区域测制地形图,如青藏高原地区,所获取的遥感影像局部存在着大范围的高山阴影或云雪覆盖,造成立体观测地貌困难的现象,探讨应用SRTM数据对这类特殊区域地貌进行修测补绘。介绍了数据处理的作业过程,并对实验区SRTM与SPOT5影像立体测图成果进行实验对比分析,成果符合要求。  相似文献   
4.
评价Actigraph GT3X三轴加速度传感器测量中国男性人群典型体力互动信效度,开发基于中国人群步行活动模式的GT3X三轴加速度传感器能耗推算方程。方法受试对象包括青年组(21.92±1.14岁),老年组(55.5±4.52岁)。受试者佩戴GT3X三轴加速度传感器,在跑台上分别完成3km/h(慢走)、4.5km/h(正常步行)、4.5km/h10%(上坡步行)、6km/h(快走)以及7.5km/h(慢跑)速度的走跑运动各5min。受试者佩戴COSMED K4b2便携式代谢测试仪,并将GT3X三轴加速度传感器佩戴于髋部,同步采集心肺功能仪及加速度传感器数据。结果根据受试对象4种无坡度走跑运动推导出线性方程MET=0.000653*counts(Axis1)+2.345521以及线性方程MET=0.000689*counts(VM)+1.640721,但其相关系数不高;GT3X+三轴加速度传感器记录上坡步行(4.5km/h10%)运动与无坡度运动(4.5km/h)相比,三轴counts及VM均显示有差异性(P<0.05),但counts增加率远低于MET增加率;GT3X+三轴加速度传感器两次重复测试,pearson值高,即离散程度低。结论本研究推导垂直轴(Axis1)、三轴矢量和(VM)的线性方程,为中度相关,误差值较大,且上坡运动时的GT3X+三轴加速度传感器记录counts值与MET值呈非线性相关,提示Actigraph GT3X三轴加速度传感器能耗推算方程可根据不同运动方式、运动强度推算相对应方程;Actigraph GT3X三轴加速度传感器测量我国成年及老年男性人群步行活动其信度较高。  相似文献   
5.
马蹄寺石窟群地处河西走廊中部,气候条件十分恶劣。由于常年受到温度、湿度、酸碱盐等作用的影响,石窟岩体性能出现了不同程度的劣化现象。通过开展室内模拟试验,研究以上多种恶劣环境的循环作用对于岩体抗压强度、波速、质量的影响规律,同时使用X射线衍射仪(X-ray diffraction,XRD)、X射线荧光光谱(X-ray fluorescence,XRF)和扫描电子显微镜(scanning electron microscope,SEM)对循环作用过程中样品的矿物组分、元素含量和微观形貌进行分析研究。研究结果表明,循环作用使样品中的长石类矿物和方解石含量降低,黏土类矿物含量增加,胶结程度下降,孔隙逐渐发展成为横向微裂隙,导致样品的性能出现不同程度的劣化现象。循环作用对岩体性能的影响程度从大到小依次为冻融循环、耐盐循环、耐碱循环、耐酸循环和温湿循环。  相似文献   
6.
A broker in an open e-marketplace enables buyers and sellers to do business with each other. Although a broker plays an important role in e-marketplaces, theory and guidelines for matching between buyers and sellers in multi-attribute exchanges are limited. Therefore, a challenge for a broker’s responsibility is how to maximize a buyer’s total satisfaction degree as its goals under the consideration of trade-off between a buyer’s buying quantity and price paid to a seller, and other attributes. To solve this challenge, this paper proposes an economic model-based matching approach between a buyer’s requirements and a seller’s offers. The major contributions of this paper are that (i) a broker can model a seller’s price policy as per a buyer’s buying quantity through communication between a broker and a seller; (ii) due to each buyer’s different quantity demand, a broker models a buyer’s satisfaction degree as per a buyer’s buying quantity based on communication between a broker and a buyer; and (iii) to carry out a broker’s matching processes, an objective function and a set of constraints are generated to help a broker to maximize a buyer’s total satisfaction degree. Experimental results demonstrate the good performance of the proposed approach.  相似文献   
7.
Au@Cu_2O core-shell nanorods with tunable thickness of Cu_2O shell were synthesized and their linear and nonlinear optical responses were investigated. Two transverse plasmon resonance peaks were observed when the Au nanorods were coated with Cu_2O shells, which were adjusted by the Cu_2O shell thickness. The nonlinear absorption of the Au@Cu_2O nanorods is enhanced by 5 times at the longitudinal plasmon resonance wavelength compared with that of bare Au nanorods. More intriguingly, largely enhanced nonlinear refraction and suppressed nonlinear absorption at the transverse plasmon resonance wavelength were observed in the Au@Cu_2O nanorods. Our findings indicate the existence of strong local field enhancement at the interface between the Au core and the Cu_2O shell, which would provide a promising strategy in designing plasmonic nonlinear nanodevices with good nonlinear figures of merit.  相似文献   
8.
为研究钢筋屈服强度和混凝土抗压强度对钢筋混凝土(RC)框架边节点剪切性能的影响规律,基于修正斜压场理论(MCFT),对某框架边节点的剪切应力-应变骨架曲线进行数值模拟,并与试验结果进行对比.在验证MCFT算法的精度后,研究钢筋屈服强度和混凝土抗压强度两个参数变化对RC框架边节点剪切应力-应变骨架曲线和峰值剪切应力的影响规律.结果表明:基于MCFT可以较好地模拟RC框架边节点的剪切应力-应变关系曲线; RC框架边节点的峰值剪切应力对混凝土抗压强度的变化更为敏感,但当试件的钢筋(HRB400)屈服应力下降幅度超过16.45%时,对钢筋屈服应力的变化更为敏感;当试件的钢筋(HRB400)屈服应力下降幅度超过10%时,节点发生钢筋滑移破坏,此时峰值剪切应力会大幅下降.  相似文献   
9.
By far, the researches on how to distribute blood products among different departments in hospital have not been further studied, though the problem of blood shortage and wastage that caused by improper blood allocation is severe, which may endanger patient’s lives and impose considerable costs on hospitals. In order to solve this problem, this paper mainly studies on how to distribute the blood items among different departments within a hospital and investigates the allocation approach with the novel management method by centralizing the inventory of several different departments. By integrating the blood inventory requirements of some departments, the hospital could reduce the rate of blood shortage and wastage effectively, release the pressure of the occupancy of resources and reduce the bullwhip effect of blood products. This paper illustrates the centralization principle in hospital and formulates the mixed integer programming model to work out the optimal allocation network scheme and the optimal inventory setting for every department. And the results of the numerical example demonstrate that this centralization method could considerably reduce blood shortage and wastage in hospital by about 72% and 90% respectively. Furthermore, it could decrease the total cost by about 108,540 RMB a month on blood supply chain management in the hospital and improve the effect of some certain surgeries by transfusing the fresh blood to patients.  相似文献   
10.
Through molecular dynamics(MD)simulation,the dependencies of temperature,grain size and strain rate on the mechanical properties were studied.The simulation results demonstrated that the strain rate from 0.05 to 2 ns~(–1 )affected the Young’s modulus of nickel nanowires slightly,whereas the yield stress increased.The Young’s modulus decreased approximately linearly;however,the yield stress firstly increased and subsequently dropped as the temperature increased.The Young’s modulus and yield stress increased as the mean grain size increased from 2.66 to6.72 nm.Moreover,certain efforts have been made in the microstructure evolution with mechanical properties association under uniaxial tension.Certain phenomena such as the formation of twin structures,which were found in nanowires with larger grain size at higher strain rate and lower temperature,as well as the movement of grain boundaries and dislocation,were detected and discussed in detail.The results demonstrated that the plastic deformation was mainly accommodated by the motion of grain boundaries for smaller grain size.However,for larger grain size,the formations of stacking faults and twins were the main mechanisms of plastic deformation in the polycrystalline nickel nanowire.  相似文献   
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