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1.
Christian Soize Roger Ghanem 《International journal for numerical methods in engineering》2022,123(1):268-290
The probabilistic learning on manifolds (PLoM) introduced in 2016 has solved difficult supervised problems for the “small data” limit where the number N of points in the training set is small. Many extensions have since been proposed, making it possible to deal with increasingly complex cases. However, the performance limit has been observed and explained for applications for which N is very small and for which the dimension of the diffusion-map basis is close to N. For these cases, we propose a novel extension based on the introduction of a partition in independent random vectors. We take advantage of this development to present improvements of the PLoM such as a simplified algorithm for constructing the diffusion-map basis and a new mathematical result for quantifying the concentration of the probability measure in terms of a probability upper bound. The analysis of the efficiency of this extension is presented through two applications. 相似文献
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Donghai Xu Peng Feng Yang Wang Wanpeng Yang Yu Wang Shaoyan Sun 《American Institute of Chemical Engineers》2022,68(2):e17472
Corrosion and salt deposition problems severely restrict the industrialization of supercritical water oxidation. Transpiring wall reactor can effectively weaken these two problems by a protective water film. In this work, methanol was selected as organic matter, and the influences of vital structural parameters on water film properties and organic matter removal were studied via numerical simulation. The results indicate that higher than 99% of methanol conversion could be obtained and hardly affected by transpiration water layer, transpiring wall porosity and inner diameter. Increasing layer and porosity reduced reactor center temperature, but inner diameter's influence was lower relatively. Water film temperature reduced but coverage rate raised as layer, porosity, and inner diameter increased. Notably, the whole reactor was in supercritical state and coverage rate was only approximately 85% in the case of one layer. Increasing reactor length affected slightly the volume of the upper supercritical zone but enlarged the subcritical zone. 相似文献
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In recent years, the light field (LF) as a new imaging modality has attracted wide interest. The large data volume of LF images poses great challenge to LF image coding, and the LF images captured by different devices show significant differences in angular domain. In this paper we propose a view prediction framework to handle LF image coding with various sampling density. All LF images are represented as view arrays. We first partition the views into reference view (RV) set and intermediate view (IV) set. The RVs are rearranged into a pseudo sequence and directly compressed by a video encoder. Other views are then predicted by the RVs. To exploit the four dimensional signal structure, we propose the linear approximation prior (LAP) to reveal the correlation among LF views and efficiently remove the LF data redundancy. Based on the LAP, a distortion minimization interpolation (DMI) method is used to predict IVs. To robustly handle the LF images with different sampling density, we propose an Iteratively Updating depth image based rendering (IU-DIBR) method to extend our DMI. Some auxiliary views are generated to cover the target region and then the DMI calculates reconstruction coefficients for the IVs. Different view partition patterns are also explored. Extensive experiments on different types LF images also valid the efficiency of the proposed method. 相似文献
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国内研制的静态推靠式旋转导向钻井系统正全面开展现场试验及初步应用,该系统正常钻进时导向翼肋施加到井壁上的静态推靠力会产生较大的摩擦力,有可能影响钻压传递效率和钻井速度。为此,基于该系统的结构及工作原理,考虑井壁无台阶和有台阶两种情况,分别建立了钻压传递效率分析模型,模拟分析了钻压传递效率随名义钻压、井壁摩擦系数,以及导向翼肋推靠力和前倒角的变化规律。研究结果表明:(1)该旋转导向系统对名义钻压有最小值要求,适当提高名义钻压有助于提高钻压传递效率;(2)无论井壁是否有台阶,如果导向翼肋推靠力之和越大、井壁摩擦系数越大,那么钻压传递效率就越低,当井壁有台阶时钻压传递效率明显低于井壁无台阶时的对应值;(3)井壁有台阶时导向翼肋前倒角对钻压传递效率影响明显,前倒角越大则钻压传递效率越低(甚至自锁)。结论认为,该研究成果有助于指导钻井现场合理选择和调控钻压。 相似文献
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液压支架使用寿命是煤机综采设备寿命综合评价的要素之一。通过对先进的激光熔覆和内壁熔铜技术在液压支架上的应用进行介绍,综合对比了采用传统表面处理技术和先进的激光熔覆、内壁熔铜技术在液压支架上的综合性能、经济效益和社会效益等方面。结果表明:激光熔覆和内壁熔铜技术技术优势突出,能够显著提高液压支架的整体性能,延长支架使用寿命。 相似文献