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121.
为探究硫酸盐干湿循环作用下带冷缝混凝土受荷作用时的能量演化规律,制作了整浇和浇筑间隔0.25 d、0.5 d、1 d、7 d和28 d的带冷缝混凝土,基于单轴压缩实验及能量计算原理,研究了硫酸盐干湿循环对带冷缝混凝土强度和能量演化规律的影响。结果表明:带冷缝混凝土强度及损伤应力和峰值应力处弹性应变能与耗散能均随干湿循环呈先增大后减小的趋势,随着新混凝土与母体浇筑间隔的增加呈现减小的趋势;随着干湿循环次数的增加,损伤应力处储能水平Kad先减小后增加,说明损伤应力处储能水平越高,带冷缝混凝土越容易产生损伤,Kad可以作为混凝土破坏的预警指标。  相似文献   
122.
Solid particle erosion in industrial applications has been a serious problem in many engineering fields. Earlier studies on fiber-reinforced plastic (FRP) composites were mainly focusing on the erosive wear behavior at several different impact angles. However, the effect of fiber orientation on FRP composites has not been thoroughly investigated. Since fiber orientation is one of the important factors in which causing erosive wear damages to FRP composites, in order to understand the virtue of this problem, it is important to investigate the effect of fiber orientation at different impact angles. In this research, the effect of fiber orientation of unidirectional fiber-reinforced plastic composites on erosive wear behavior was studied. Sandblasting-type erosion tests were conducted on the FRP composites with fiber orientation ranging at three impact angles to clarify the relation between fiber orientation and erosive wear behavior. The Dyneema fiber (ductile material) and the carbon fiber (brittle material) were used for the reinforcement fiber in FRP. From the result, it is confirmed that CFRP composites with higher fiber orientation angle erode faster than the composites with lower fiber orientation angle. But the erosion characteristic of DFRP was almost the same regardless of the fiber orientation angle. The damaged surfaces of the FRP composites were then analyzed using scanning electron microscopy and the possible erosion wear mechanisms were investigated.  相似文献   
123.
随着极地的开发和利用,其所需的极地钢铁材料的腐蚀与防护问题越来越受到研究者的关注。本文以传统海洋环境腐蚀分区为参照,对极地特色的腐蚀环境进行了系统的分析,并将其归纳整理为极地大气区、极地冰水磨蚀区、极地海洋全浸区、极地海底泥土区等4个腐蚀区域。在对极地钢铁材料腐蚀与防护的研究进展进行梳理的基础上,从合金化、涂层技术和阴极保护技术3个方面介绍了极地钢铁材料的防护技术,并指出了极地钢铁材料未来研究的方向。  相似文献   
124.
The progressive change in the surface geometry of the component due to erosive wear affects the correct estimation of erosive wear performance and service life of the components handling particulate flows. The current study focuses on determining the change in the location of higher erosion on the bend surface during the pneumatic conveying of solids with continuous geometric modification due to erosive wear. Computational fluid dynamics (CFD) based erosion-coupled dynamic mesh methodology is adopted to simulate the time-dependent surface modification of the 90° bend geometry due to erosive wear. Available experimental data are used to validate the numerical results. Further, the erosion distribution and the location of the maximum erosion for different flow velocities, particle sizes, and bend radius ratios with the increase in solid throughput are investigated. It has been found that the modification in the bend geometry due to erosion influences the location of the maximum erosion. The increase in thickness loss due to erosion increases the variation in the location of the maximum erosion. Furthermore, an equation for predicting the location of maximum erosion of bend geometry is obtained based on the bend radius ratio and the thickness loss.  相似文献   
125.
This paper aims on evaluating the erosion wear behavior of epoxy composites reinforced with ramie fibers. The possibility of reinforcing ramie fiber to improvise the wear resistance of epoxy is investigated in this study. Composites are fabricated by reinforcing multiple layers of woven ramie fiber mats into epoxy resin using conventional wet lay-up technique and erosion wear trials are conducted using solid particle erosion test setup. Taguchi analysis is done to assess the relative significance of each of the factors influencing the erosion rate using L16 orthogonal array. The analysis reveals that the impact velocity followed by impingement angle are the most significant control factors affecting the erosion wear rate of ramie-epoxy composites. Steady state erosion analysis is done to ascertain the effect of each of the significant factors while keeping other factors fixed. Further, an analytical and predictive model based on the principle of neural computation is used to predict the rate of erosion wear of the composites and the obtained results are compared with the experimental outcomes. The worn morphologies of the eroded surfaces of the composites are studied and analyzed to identify possible mechanisms causing wear.  相似文献   
126.
针对目前各种大规模地形建模的优缺点,并结合目前流行的地形建模方法,提出一种较为真实的地形建模方案。为达到更真实的模拟,对地形泥土腐蚀现象做了研究,提出了一种基于细胞自动机的腐蚀模拟方法。  相似文献   
127.
高压管汇冲蚀磨损的多相流仿真   总被引:1,自引:0,他引:1  
建立试验弯管和节流管汇2个高压管汇实体模型.基于CFD方法,采用离散相模型计算不同半径粒子的轨道和岩屑对高压管壁的冲蚀.计算结果与试验数据较为吻合,能预测节流管汇磨损严重部位,为指导节流管汇的设计和定期检测提供参考.  相似文献   
128.
A hidden Markov model (HMM) with a special structure that captures the ‘semi’-property of hidden semi-Markov models (HSMMs) is considered. The proposed model allows arbitrary dwell-time distributions in the states of the Markov chain. For dwell-time distributions with finite support the HMM formulation is exact while for those that have infinite support, e.g. the Poisson, the distribution can be approximated with arbitrary accuracy. A benefit of using the HMM formulation is that it is easy to incorporate covariates, trend and seasonal variation particularly in the hidden component of the model. In addition, the formulae and methods for forecasting, state prediction, decoding and model checking that exist for ordinary HMMs are applicable to the proposed class of models. An HMM with explicitly modeled dwell-time distributions involving seasonality is used to model daily rainfall occurrence for sites in Bulgaria.  相似文献   
129.
重叠细胞图像分离算法的设计   总被引:31,自引:2,他引:29  
在实际的细胞图像中,经常会遇到重叠现象(又称为聚堆),即多个细胞聚一起的情形,这给后续的分析处理带来了困难,因此需要设计一个有效的算法,能够将这些重叠在一起的细胞群分离为单个的细胞,文中针对二值化的图像,提出了一个基于形态学的算法,该方法首先利用腐蚀操作,以确定聚堆细胞最终分离为单个细胞的个数,然后再根据腐蚀后的结果,在原妈的二值图像上找到了分离点,从而最终有效地将重叠细胞分离为单个细胞,文中主要  相似文献   
130.
Disruption damage conditions for future large tokamaks like ITER are nearly impossible to simulate on current tokamaks. The electrothermal plasma source SIRENS has been designed, constructed, and operated to produce high density (> 1025/m3), low temperature (1–3 eV) plasma formed by the ablation of the insulator with currents of up to 100 kA (100 s pulse length) and energies up to 15 kJ. The source heat fluence (variable from 0.2 to 7 MJ/m2) is adequate for simulation of the thermal quench phase of plasma disruption in future fusion tokamaks. Different materials have been exposed to the high heat flux in SIRENS, where comparative erosion behavior was obtained. Vapor shield phenomena has been characterized for different materials, and the energy transmission factor through the shielding layer is obtained. The device is also equipped with a magnet capable of producing a parallel magnetic field (up to 16 T) over a 8 msec pulse length. The magnetic field is produced to decrease the turbulent energy transport through the vapor shield, which provides further reduction of surface erosion (magnetic vapor shield effect).  相似文献   
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