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51.
为提高地面驱动螺杆泵井的故障诊断效率,提出了一种将小波包与概率神经网络相结合的故障诊断方法.运用小波包技术提取有功功率信号的能量特征,与动液面、瞬时流量、井口回压共同作为特征参数,输入到概率神经网络进行故障诊断.为证明所提诊断方法的优越性,与BP神经网络、径向基神经网络进行对比,结果表明所提方法诊断效率更高、速度更快,更加满足故障诊断实时性的要求;故障诊断实例结果也进一步证明了该方法在地面驱动螺杆泵井故障诊断的可行性.  相似文献   
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Although remarkable development of titanate-based glasses has been achieved, challenge remains to elucidate the correlation between structure and glass-forming properties in these systems due to their complex structure that is inconsistent with the classic Zachariasen's model. In this work, we aim to correlate the structural evolution of titanate melts to their glass-forming ability (GFA). The prototypical material barium dititanate (BaTi2O5, BT2) melts with different GFA were rendered by controlled melting atmospheres, and the corresponding structural changes were determined using in situ high-energy synchrotron X-ray diffraction combined with empirical potential structure refinement and ab initio molecular dynamics. The results show that BT2 melt in reducing atmosphere shows poor GFA but that in oxidizing atmosphere presents good GFA. Structural analysis demonstrates the mean coordination number of [TiOm] polyhedra is analogous in the melt under two different atmospheres but an enhanced heterogeneous cations aggregation takes place in the melt under reducing atmosphere, which is closely related to oxygen-deficiencies. Furthermore, we reveal that the enhanced heterogeneous cations aggregation promotes crystallization (and therefore hinders glass formation) through disordering the distribution of [TiOm] and [BaOn] polyhedra, changing the connectivity between these polyhedra, creating more crystal-like Ti-Ti clusters, and decreasing topological disorder of BT2 melt. Our work provides a new viewpoint to understand the GFA of titanates melt from structural heterogeneity beyond the previous perspectives that only focus on [TiOm] polyhedra.  相似文献   
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充分考虑管网输配过程中水质稳定性对水厂工艺条件、出厂水水质指标的要求,从水厂-管网协同控制的水质安全保障理念,通过优化水厂布局、改善管网水力条件、构建应对多水源和季节性高藻的强适应性净水体系、强化出厂水水质化学稳定性和生物稳定性控制、持续管网及老旧小区更新改造等工程技术措施,提高南水北调水源进京后管网水质的稳定性.根据2014-2019年全市252个管网监测点的水质监测数据,发现管网水浊度整体呈季节性周期变化趋势,且逐年降低;构建的管网水质评价模型进一步证明了管网水浊度一级监测点数量显著增加,2019年一级和二级监测点数量达到总数的94%,管网监测点的浊度指标得到显著改善,水厂-管网协同控制技术的实施切实保障了北京市供水水质的稳定达标.  相似文献   
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Ge2Sb2Tes is the most widely utilized chalcogenide phase-change material for non-volatile photonic applications,which undergoes amorphous-cubic and cubic-hexagonal phase transition under external excitations.However,the cubic-hexagonal optical contrast is negligible,only the amorphous-cubic phase transition of Ge2Sb2Te5 is available.This limits the optical switching states of traditional active dis-plays and absorbers to two.We find that increasing structural disorder difference of cubic-hexagonal can increase optical contrast close to the level of amorphous-cubic.Therefore,an amorphous-cubic-hexagonal phase transition with high optical contrast is realized.Using this phase transition,we have developed display and absorber with three distinct switching states,improving the switching perfor-mance by 50%.Through the combination of first-principle calculations and experiments,we reveal that the key to increasing structural disorder difference of amorphous,cubic and hexagonal phases is to intro-duce small interstitial impurities(like N)in Ge2Sb2Tes,rather than large substitutional impurities(like Ag)previously thought.This is explained by the formation energy and lattice distortion.Based on the impurity atomic radius,interstitial site radius and formation energy,C and B are also potential suit-able impurities.In addition,introducing interstitial impurities into phase-change materials with van der Waals gaps in stable phase such as GeSb4Te7,GeSb2Te4,Ge3Sb2Te6,Sb2Te3 will produce high optical con-trast amorphous-metastable-stable phase transition.This research not only reveals the important role of interstitial impurities in increasing the optical contrast between metastable-stable phases,but also proposes varieties of candidate matrices and impurities.This provides new phase-change materials and design methods for non-volatile optical devices with multi-switching states.  相似文献   
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Given the continuing issues of environment and energy, methane dry reforming for syngas production have sparked interest among researchers, but struggled with the process immaturity owing to catalyst deactivation. This review summarizes the recent advances in the development of efficient and stable catalysts with strong resistance to coking and metal sintering, including the application of novel materials, the assessment of advanced characterizations and the compatibility to improved reaction system. One feasible option is the crystalline oxide catalysts (perovskite, pyrochlore, spinel and LDHs), which feature a fine metal dispersion and surface confinement effect via a metal exsolution strategy and exhibit superior reactivity and stability. Some new materials (h-BN, clays and MOFs) also extend the option because of their unique morphology and microstructure. It also is elaborated that progresses were achieved in advanced characterizations application, leading to success in the establishment of reaction mechanisms and attributions to the formed robust catalysts. In addition, the perspective described the upgrade of reaction system to a higher reaction efficiency and milder reaction conditions. The combination of efficient reaction systems and robust catalysts paves a way for a scaling-up application of the process.  相似文献   
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环境行为学作为建筑学专业的一门理论结合应用的课程,目的是帮助学生认知客观环境与人的行为,培养人性化设计思维.然而,传统的教学方法存在一些局限.将VR技术应用到环境行为学教学当中,形成以学生为主体的教学模式,实现教育科技化,对促进学科发展有重要意义.  相似文献   
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