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Ultra-short cyclic peptide Cy_(RL-QN15)acts as a TLR4 antagonist to expedite oral ulcer healing
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作者 Ze-Qiong Ru Yu-Tong Wu +18 位作者 Chong-Yu Yang Ya-Ting Yang Ya-Jie Li Min Liu Ying Peng Yu-Liu Yang Jun-Yuan Wang Qiu-Ye Jia Yuan-Sheng Li Zhe Fu Mei-Feng Yang Jing Tang Yan Fan Cheng-Xing Liu Wen-Rou Su Nai-Xin Liu Li He Ying Wang Xin-Wang Yang 《Zoological Research》 2025年第5期1187-1202,共16页
Oral ulcers(OUs)are among the most common lesions of the oral mucosa,typically associated with pain and burning sensations,and remain clinically challenging due to the scarcity of effective treatment options.Cy_(RL-QN... Oral ulcers(OUs)are among the most common lesions of the oral mucosa,typically associated with pain and burning sensations,and remain clinically challenging due to the scarcity of effective treatment options.Cy_(RL-QN15),a novel ultra-short cyclic heptapeptide recently shown to promote skin repair,diabetic wound healing,and follicle neogenesis,was evaluated for its therapeutic potential in mucosal repair.Using a rat OU model and a primary oral epithelial cell inflammation model,Cy_(RL-QN15)significantly accelerated wound closure through coordinated modulation of immune-epithelial crosstalk,including suppression of inflammatory cytokine release from macrophages and neutrophils,reduction of pro-inflammatory factor secretion by oral epithelial cells,and enhancement of their proliferation and migration.Mechanistic studies employing alanine scanning mutagenesis and microscale thermophoresis revealed that Cy_(RL-QN15)directly interacted with Toll-like receptor 4(TLR4)via a methionine-dependent binding interface(K_(d)=2.64μmol/L),thereby inhibiting downstream MyD88/NF-κB signaling.As the first ultra-short cyclic heptapeptide identified to antagonize TLR4,Cy_(RL-QN15)represents a mechanistically distinct immunomodulatory scaffold that restores mucosal homeostasis and offers a promising therapeutic candidate for TLR4-based OU intervention. 展开更多
关键词 ultra-short peptide Oral ulcer TLR4 antagonist Inflammation MyD88/NF-κB signaling pathway Macrophage polarization
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Theoretical analysis of ultra-short pulsed laser ablation of SiO_2 material based on a Coulomb explosion model
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作者 林晓辉 任维松 《Journal of Southeast University(English Edition)》 EI CAS 2011年第3期261-265,共5页
Based on the kinetic theoretical Vlasov-Poisson equation, a surface Coulomb explosion model of SiO2 material induced by ultra-short pulsed laser radiation is established. The non-equilibrium free electron distribution... Based on the kinetic theoretical Vlasov-Poisson equation, a surface Coulomb explosion model of SiO2 material induced by ultra-short pulsed laser radiation is established. The non-equilibrium free electron distribution resulting from the two mechanisms of multi-photon ionization and avalanche ionization is computed. A quantitative analysis is given to describe the Coulomb explosion induced by the self-consistent electric field, and the impact of the parameters of laser pulses on the surface ablation is also discussed. The results show that the electron relaxation time is not constant, but it is related to the microscopic state of the electrons, so the relaxation time approximation is not available on the femtosecond time scale. The ablation depths computed by the theoretical model are in good agreement with the experimental results in the range of pulse durations from 0 to 1 ps. 展开更多
关键词 ultra-short pulsed laser Coulomb explosion nonequilibrium distribution material ablation
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Ultra-Short Pulsed Laser Manufacturing and Surface Processing of Microdevices 被引量:5
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作者 Yongchao Yu Shi Bai +1 位作者 Shutong Wang Anming Hu 《Engineering》 SCIE EI 2018年第6期779-786,共8页
Ultra-short laser pulses possess many advantages for materials processing.Ultrafast laser has a significantly low thermal effect on the areas surrounding the focal point;therefore,it is a promising tool for micro-and ... Ultra-short laser pulses possess many advantages for materials processing.Ultrafast laser has a significantly low thermal effect on the areas surrounding the focal point;therefore,it is a promising tool for micro-and submicro-sized precision processing.In addition,the nonlinear multiphoton absorption phenomenon of focused ultra-short pulses provides a promising method for the fabrication of various structures on transparent material,such as glass and transparent polymers.A laser direct writing process was applied in the fabrication of high-performance three-dimensional(3D)structured multilayer microsupercapacitors(MSCs)on polymer substrates exhibiting a peak specific capacitance of 42.6 mF·cm^-2 at a current density of 0.1 mA·cm^-12.Furthermore,a flexible smart sensor array on a polymer substrate was fabricated for multi-flavor detection.Different surface treatments such as gold plating,reducedgraphene oxide(rGO)coating,and polyaniline(PANI)coating were accomplished for different measurement units.By applying principal component analysis(PCA),this sensing system showed a promising result for flavor detection.In addition,two-dimensional(2D)periodic metal nanostructures inside 3D glass microfluidic channels were developed by all-femtosecond-laser processing for real-time surfaceenhanced Raman spectroscopy(SERS).The processing mechanisms included laser ablation,laser reduction,and laser-induced surface nano-engineering.These works demonstrate the attractive potential of ultra-short pulsed laser for surface precision manufacturing. 展开更多
关键词 ultra-short PULSED laser processing MICRODEVICES SUPERCAPACITOR Electronic TONGUE Surface-enhanced RAMAN spectroscopy
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Generation of time-dependent ultra-short optical pulse trains in the presence of self-steepening effect 被引量:1
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作者 钟先琼 向安平 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第2期624-629,共6页
Starting from the extended nonlinear Schrodinger equation in which the self-steepening effect is included, the evolution and the splitting processes of continuous optical wave whose amplitude is perturbed into time re... Starting from the extended nonlinear Schrodinger equation in which the self-steepening effect is included, the evolution and the splitting processes of continuous optical wave whose amplitude is perturbed into time related ultra-short optical pulse trains in an optical fibre are numerically simulated by adopting the split-step Fourier algorithm. The results show that the self-steepening effect can cause the characteristic of the pulse trains to vary with time, which is different from the self-steepening-free case where the generated pulse trains consist of single pulses which are identical in width, intensity, and interval, namely when pulses move a certain distance, they turn into the pulse trains within a certain time range. Moreover, each single pulse may split into several sub-pulses. And as time goes on, the number of the sub-pulses will decrease gradually and the pulse width and the pulse intensity will change too. With the increase of the self-steepening parameter, the distance needed to generate time-dependent pulse trains will shorten. In addition, for a large self-steepening parameter and at the distance where more sub-pulses appear, the corresponding frequency spectra of pulse trains are also wider. 展开更多
关键词 nonlinear optics self-steepening effect ultra-short optical pulse trains split-step Fourier algorithm optical perturbation
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Wavelength tunable ultra-short pulses based on a flat broadband spectrum generated in a nonlinear ytterbium-doped fiber amplifier 被引量:1
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作者 Run-Qin Xu Zi-Kai Dong +2 位作者 Jin-Rong Tian Ke-Xuan Li Yan-Rong Song 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第1期220-223,共4页
We present a nonlinear ytterbium-doped fiber amplifier based on enhanced nonlinear effects that can produce a flat broadband spectrum ranging from 1050–1225 nm with a maximum average output power of 7.8 W at 14 W pum... We present a nonlinear ytterbium-doped fiber amplifier based on enhanced nonlinear effects that can produce a flat broadband spectrum ranging from 1050–1225 nm with a maximum average output power of 7.8 W at 14 W pump power.Its repetition rate is 89 MHz. Using a pair of gratings and two knife edges as a filter, wavelength tunable picosecond pulses of tens to hundreds of milliwatts can be obtained in the broadband spectrum range. The output power, pulse width, and spectrum(center wavelength and linewidth) are adjusted by tuning the distance of the grating pair and/or the knife edges.Fixing the distance between the two gratings at 15 mm and keeping the output spectrum linewidth at approximately 20 nm,the shortest pulse width obtained is less than 1 ps centered at 1080 nm. The longest wavelength of the short pulses is around1200 nm, and its output power and pulse width are 40 m W and 5.79 ps, respectively. The generation of a flat broadband spectrum is also discussed in this paper. 展开更多
关键词 tunable ultra-short pulse broadband spectrum nonlinear amplifier
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A review on glass welding by ultra-short laser pulses 被引量:8
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作者 Kristian Cvecek Sarah Dehmel +1 位作者 Isamu Miyamoto Michael Schmidt 《International Journal of Extreme Manufacturing》 2019年第4期1-10,共10页
Glass welding by ultra-short pulsed(USP)lasers is a piece of technology that offers high strength joints with hermetic sealing.The joints are typically formed in glass that is transparent to the laser by exploiting no... Glass welding by ultra-short pulsed(USP)lasers is a piece of technology that offers high strength joints with hermetic sealing.The joints are typically formed in glass that is transparent to the laser by exploiting nonlinear absorption effects that occur under extreme conditions.Though the temperature reached during the process is on the order of a few 1000°C,the heat affected zone(HAZ)is confined to only tens of micrometers.It is this controlled confinement of the HAZ during the joining process that makes this technology so appealing to a multitude of applications because it allows the foregoing of a subsequent tempering step that is typically essential in other glass joining techniques,thus making it possible to effectively join highly heat sensitive components.In this work,we give an overview on the process,development and applications of glass welding by USP lasers. 展开更多
关键词 USP glass welding ultra-short pulsed laser processing brittle materials glass joining
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Taper Angle Correction in Cutting of Complex Micro-mechanical Contours with Ultra-Short Pulse Laser 被引量:5
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作者 J. Auerswald A. Ruckli +3 位作者 T. Gschwilm P. Weber D. Diego-Vallejo H. Schliiter 《Journal of Mechanics Engineering and Automation》 2016年第7期334-338,共5页
The objective of this work was to investigate the possibility of taper angle correction in cutting of complex micro-mechanical contours using a TruMicro ultra-short pulse laser in combination with the SCANLAB precSYS ... The objective of this work was to investigate the possibility of taper angle correction in cutting of complex micro-mechanical contours using a TruMicro ultra-short pulse laser in combination with the SCANLAB precSYS micro machining sub system. In a first step, the influence of the process parameters on the kerftaper angle of metallic alloys was systematically investigated without beam inclination. A set of base parameters was derived for the subsequent investigations. In a second step, the kerftaper angle was controlled by static beam inclination. In a third step, the same optics was used in its dynamic precession mode to fabricate micro-mechanical components of complex contours with perpendicular 0~ taper angles. It was found that taper angle adjustments of up to 7.5~ are possible with the used setup for cutting applications. Taper angle control is possible both in the static beam inclination mode and in the dynamic precession mode. The static mode could be interesting for contours with sharp inner radii and for achieving faster cutting times similar to results with fixed optics, but would require excellent synchronization of beam inclination and axis motion. The dynamic precession mode would allow an easier integration of the optics into a laser machine but will result in longer cutting times and limitations with respect to achievable inner radii. 展开更多
关键词 ultra-short pulse laser cutting kerf taper angle zero taper 5-axis micro machining.
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Cooling rate calibration and mapping of ultra-short pulsed laser modifications in fused silica by Raman and Brillouin spectroscopy 被引量:1
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作者 Michael Bergler Kristian Cvecek +3 位作者 Ferdinand Werr Martin Brehl Dominique De Ligny Michael Schmidt 《International Journal of Extreme Manufacturing》 2020年第3期161-172,共12页
This paper focuses on the preparation of a new extended set of calibrations of cooling rate(fictive temperature)in fused silica determined by inelastic light scattering and its subsequent use to characterize the local... This paper focuses on the preparation of a new extended set of calibrations of cooling rate(fictive temperature)in fused silica determined by inelastic light scattering and its subsequent use to characterize the local cooling rate distribution in ultra-short pulsed(USP)laser modification.In order to determine the thermal history(e.g.cooling rate and fictive temperature)of fused silica,high-resolution inelastic light-scattering experiments(Raman and Brillouin spectroscopy)were investigated.Calibrations were performed and compared to the existing literature to quantify structural changes due to a change of fictive temperature.Compared to existing calibrations,this paper provides an extension to lower and higher cooling rates.Using this new set of calibrations,we characterized a USP laser modification in fused silica and calculated the local fictive temperature distribution.An equation relating the fictive temperature(Tf)to cooling rates is given.A maximum cooling rate of 3000 K min-1 in the glass transition region around 1200℃ was deduced from the Raman analysis.The Brillouin observations are sensitive to both the thermal history and the residual stress.By comparing the Raman and Brillouin observations,we extracted the local residual stress distribution with high spatial resolution.For the first time,combined Raman and Brillouin inelastic light scattering experiments show the local distribution of cooling rates and residual stresses(detailed behavior of the glass structure)in the interior and the surrounding of an USP laser modified zone. 展开更多
关键词 glass structure ultra-short pulsed laser fused silica cooling rate fictive temperature Raman spectroscopy Brillouin spectroscopy
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Effect of Foil Target Thickness in Proton Acceleration Driven by an Ultra-Short Laser
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作者 路建新 兰小飞 +5 位作者 席晓峰 张海峰 张骥 王雷剑 汤秀章 王乃彦 《Plasma Science and Technology》 SCIE EI CAS CSCD 2015年第6期458-460,共3页
Proton acceleration experiments were carried out by a 1.2× 1018 W/cm2 ultra-short laser interaction with solid foil targets. The peak proton energy observed from an optimum target thickness of 7 μm in our experi... Proton acceleration experiments were carried out by a 1.2× 1018 W/cm2 ultra-short laser interaction with solid foil targets. The peak proton energy observed from an optimum target thickness of 7 μm in our experiments was 2.1 MeV. Peak proton energy and proton yield were investigated for different foil target thicknesses. It was shown that proton energy and conversion efficiency increased as the target became thinner, on one condition that the preplasma generated by the laser prepulse did not have enough shock energy and time to influence or destroy the target rear-surface. The existence of optimum foil thickness is due to the effect of the prepulse and hot electron transportation behavior on the foil target. 展开更多
关键词 ultra-short laser PROTON thin foil target target normal sheath acceleration
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Study on Ultra-Short Laser Pulse Ablation of Metals by Molecular Dynamics Simulation
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作者 刘璇 王扬 赵丽杰 《Journal of Beijing Institute of Technology》 EI CAS 2006年第4期406-410,共5页
The dynamical progresses involved in ultra-short laser pulse ablation of face-centered cubic metals under stress confinement condition are described completely using molecular dynamics method. The laser beam absorptio... The dynamical progresses involved in ultra-short laser pulse ablation of face-centered cubic metals under stress confinement condition are described completely using molecular dynamics method. The laser beam absorption and thermal energy turning into kinetics energy of. atoms are taken into account to give a detailed picture of laser metal interaction. Superheating phenomenon is observed, and the phase change from solid to liquid is characterized by a destroyed atom configuration and a decreased number density. The steep velocity gradients are found in the systems of Cu and Ni after pulse in consequence of located heating and exponential decrease of fluences following the Lambert-Beer expression. The shock wave velocities are predicted to be about 5 000 m/s in Cu and 7 200 m/s in Ni. The higher ablation rates are obtained from simulations compared with experimental data as a result of a well-defined crystalline surface irradiated by a single pulse. Simulation results show that the main mechanisms of ablation are evaporation and thermoelastic stress due to located heating. 展开更多
关键词 molecular dynamics simulation ultra-short laser pulse ablation potential function face-centered cubic metal
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Differential protein expression during colonic adaptation in ultra-short bowel rats
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作者 Hai-Ping Jiang Tao Chen +1 位作者 Guang-Rong Yan Dan Chen 《World Journal of Gastroenterology》 SCIE CAS CSCD 2011年第20期2572-2579,共8页
AIM: To investigate the proteins involved in colonic adaptation and molecular mechanisms of colonic adapration in rats with ultra-short bowel syndrome (USBS). METHODS: Sprague Dawley rats were randomly as- signed ... AIM: To investigate the proteins involved in colonic adaptation and molecular mechanisms of colonic adapration in rats with ultra-short bowel syndrome (USBS). METHODS: Sprague Dawley rats were randomly as- signed to three groups: USBS group (10 rats) undergoing an approximately 90%-95% small bowel resection; sham-operation group (10 rats) undergoing small bowel transaction and anastomosis; and control group (ten normal rats). Colon morphology and differential protein expression was analyzed after rats were given postsurgical enteral nutrition for 21 d. Protein expression in the colonic mucosa was analyzed by two-dimensional electrophoresis (2-DE) in all groups. Differential protein spots were detected by ImageMaster 2D Platinum soft-ware and were further analyzed with matrix-assisted laser desorption/ionization-time-of-flight/time-of-flightmass spectrometric (MALDI-TOF/TOF-MS) analysis. RESULTS: The colonic mucosal thickness significantly increased in the USBS group compared with the control group (302.1 ± 16.9 um vs 273.7 ± 16.0 um, P 〈 0.05). There was no statistically significant difference between the sham-operation group and control group (P 〉 0.05). The height of colon plica markedly improved in USBS group compared with the control group (998.4 ± 81.2 um vs 883.4 ± 39.0 um, P 〈 0.05). There was no statistically significant difference between the shamoperation and control groups (P 〉 0.05). A total of 141 differential protein spots were found in the USBS group. Forty-nine of these spots were down-regulated while 92 protein spots were up-regulated by over 2-folds. There were 133 differential protein spots in USBS group. Thirty of these spots were down-regulated and 103 were upregulated. There were 47 common differential protein spots among the three groups, including 17 down- regulated protein spots and 30 up-regulated spots. Among 47 differential spots, eight up-regulated proteins were identified by MALDI-TOF/TOF-MS. These proteins were previously reported to be involved in sugar and fat metabolism, protein synthesis and oxidation reduction, which are associated with colonic adaption. CONCLUSION: Eight proteins found in this study play important roles in colonic compensation and are associated with sugar and fat metabolism, protein synthesis, and molecular chaperoning 展开更多
关键词 ultra-short bowel syndrome Enteral nutrition Colon adaptation PROTEOMICS
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The extending length calculation of hydraulic drive non-metallic completion screen pipe running into ultra-short radius horizontal well
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作者 BI Yansen XIAN Baoan +1 位作者 SHI Xiaolei GAO Deli 《Petroleum Exploration and Development》 CSCD 2022年第4期942-954,共13页
Focusing on the extending length restriction of the completion screen pipe resistance running into ultra-short radius horizontal well,this paper proposed technology of hydraulic drive completion tubular string running... Focusing on the extending length restriction of the completion screen pipe resistance running into ultra-short radius horizontal well,this paper proposed technology of hydraulic drive completion tubular string running into ultra-short radius horizontal well.Innovative hydraulic drive tools and string structure are designed,which are composed of guide tubing,hydraulic drive tubing and non-metallic completion screen pipe from inside to outside.A novel mechanical-hydraulic coupling model is established.Based on the wellbore structure of an ultra-short radius horizontal well for deep coalbed methane,the numerical calculations of force and hydraulic load on tubular strings were accomplished by the mechanical-hydraulic coupling model.The results show that the extending length of completion tubular string with the hydraulic drive is 17 times that of conventional completion technology under the same conditions.The multi-factor orthogonal design is adopted to analyze the numerical calculations,and the results show that the extending length of the completion tubular string is mainly affected by the completion tubular string structure and the friction coefficient between the non-metallic composite continuous screen pipe and the wellbore.Two series of hydraulic drive completion tubular string structures suitable for ultra-short radius horizontal wells under different conditions are optimized,with the extending limits of 381 m and 655 m,respectively.These researches will provide theoretical guidance for design and control of hydraulic drive non-metallic composite continuous completion screen pipe running into ultra-short radius horizontal wells. 展开更多
关键词 ultra-short radius horizontal well screen pipe completion hydraulic drive technology non-metallic composite continuous screen pipe screen pipe extending length
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Rolling Generation Dispatch Based on Ultra-short-term Wind Power Forecast
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作者 Qiushi Xu Changhong Deng 《Energy and Power Engineering》 2013年第4期630-635,共6页
The power systems economic and safety operation considering large-scale wind power penetration are now facing great challenges, which are based on reliable power supply and predictable load demands in the past. A roll... The power systems economic and safety operation considering large-scale wind power penetration are now facing great challenges, which are based on reliable power supply and predictable load demands in the past. A rolling generation dispatch model based on ultra-short-term wind power forecast was proposed. In generation dispatch process, the model rolling correct not only the conventional units power output but also the power from wind farm, simultaneously. Second order Markov chain model was utilized to modify wind power prediction error state (WPPES) and update forecast results of wind power over the remaining dispatch periods. The prime-dual affine scaling interior point method was used to solve the proposed model that taken into account the constraints of multi-periods power balance, unit output adjustment, up spinning reserve and down spinning reserve. 展开更多
关键词 Wind POWER GENERATION POWER System ROLLING GENERATION DISPATCH ultra-short-term Forecast Markov Chain Model Prime-dual AFFINE Scaling Interior Point Method
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Mechanical properties and optimization of deflecting drills with ultra-short radius flexible drill pipes
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作者 Qiang Guo Qiang Sun +4 位作者 Lin Chai Peng Yang Shuo Wu Delong Zhang Wei Weng 《Natural Gas Industry B》 2024年第2期185-195,共11页
To improve the drill pipe fracture failure phenomenon in deflecting drills with ultra-short radius flexible drill pipes,this study establishes a mechanical model of a deflecting drill with an ultra-short radius flexib... To improve the drill pipe fracture failure phenomenon in deflecting drills with ultra-short radius flexible drill pipes,this study establishes a mechanical model of a deflecting drill with an ultra-short radius flexible drill pipe,numerically simulates the mechanical characteristics of the flexible drill pipe under the conventional drilling process using the finite element analysis method,performs mechanical performance tests on the flexible drill pipe,and optimizes and improves its structure.The results show that,with the gradual increase in the bending angle of the flexible drill pipe unit section,the upper drilling pressure of the flexible drill pipe unit section decreases rapidly and its friction increases approximately linearly.The tensile strength of the optimized ultra-short radius flexible drill pipe is increased by 24.7%,and the minimum threshold of its torsional strength is doubled.This effectively improves the overall strength of the ultra-short radius flexible drill pipe and provides a theoretical basis for downhole drilling stability studies of flexible drill pipes. 展开更多
关键词 ultra-short radius Flexible drill pipe Mechanical properties Finite element analysis Optimized design
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Method and Evaluation Method of Ultra-Short-Load Forecasting in Power System
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作者 Jiaxiang Ou Songling Li +1 位作者 Junwei Zhang Chao Ding 《国际计算机前沿大会会议论文集》 2018年第2期23-23,共1页
关键词 Electric load forecasting ultra-short-termLinear EXTRAPOLATION KALMAN filter methodTime series METHOD Artificial neural networksSupport vector machine algorithm
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基于多尺度特征融合的超短期风电功率预测
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作者 高鹭 庄庆泽 +2 位作者 张飞 秦岭 邬锡麟 《电子测量技术》 北大核心 2026年第1期166-175,共10页
鉴于风电在能源结构中的重要性及其间断性带来的挑战,本文提出了一种基于异常值处理和多尺度特征融合的端到端超短期风电功率多步预测组合模型,旨在提高超短期风电功率预测的精确度与稳定性,进而为电力系统调度与运行的准确性与稳定性... 鉴于风电在能源结构中的重要性及其间断性带来的挑战,本文提出了一种基于异常值处理和多尺度特征融合的端到端超短期风电功率多步预测组合模型,旨在提高超短期风电功率预测的精确度与稳定性,进而为电力系统调度与运行的准确性与稳定性提供有力支撑。首先,通过RobustTSF方法处理时间序列异常,为预测模型的鲁棒性提供有力的保障,减少了异常时间序列预测和噪声标签学习之间的差异。其次,融合空间金字塔匹配映射策略、Levy飞行策略以及自适应t分布变异策略对蜣螂优化算法进行改进,显著提高了全局搜索能力和收敛效率。同时,利用多策略蜣螂优化算法优化改进的TimeMixer模型的超参数,以获得最优的模型性能。最后使用CATimeMixer模型,实现了多尺度季节特征和趋势特征的融合和预测。实验结果表明,相较于基准模型多层感知机的MAE、RMSE、MSE分别下降了49.71%、41.26%、65.50%,同时R2提高了4.49%,能够有效降低预测误差,为超短期风电功率的准确预测提供了一种新的方法和思路。 展开更多
关键词 超短期风电功率多步预测 异常值处理 多尺度特征融合 多策略蜣螂优化算法
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超短波、立体动态干扰电疗结合运动疗法治疗肩袖损伤的临床疗效观察
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作者 李英 陆逸沁 +4 位作者 余方辉 褚晓彦 周丽艳 何天峰 缪新群 《上海医药》 2026年第1期39-42,共4页
目的:观察超短波、立体动态干扰电疗结合运动疗法对肩袖损伤的临床疗效。方法:将72例肩袖损伤患者分成对照组和观察组,各36例。对照组给予超短波联合立体动态干扰电疗,观察组在此基础上结合运动疗法干预,治疗周期为12周。比较两组治疗... 目的:观察超短波、立体动态干扰电疗结合运动疗法对肩袖损伤的临床疗效。方法:将72例肩袖损伤患者分成对照组和观察组,各36例。对照组给予超短波联合立体动态干扰电疗,观察组在此基础上结合运动疗法干预,治疗周期为12周。比较两组治疗前后肩关节Constant-Murley量表评分、美国肩肘医师协会(ASES)评分变化情况,并对其疼痛视觉模拟量表(VAS)评分部分进行单独分析。结果:治疗后,观察组ASES评分、Constant-Murley量表评分高于对照组,VAS评分低于对照组(P<0.001)。结论:超短波、立体动态干扰电疗结合运动疗法治疗可有效改善肩袖损伤患者肩关节功能,减轻疼痛,具有较好的临床疗效。 展开更多
关键词 肩袖损伤 超短波 立体动态干扰电疗 运动疗法 肩关节功能
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大庆油田基于多技术协同的剩余油高效提产技术
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作者 杨智光 齐悦 +3 位作者 王春华 许云龙 张振华 钟晖 《石油钻探技术》 北大核心 2026年第1期16-22,共7页
大庆油田已进入高采出率、高含水率的开发后期,面临着剩余油高度零散分布、水淹严重、套损井比例攀升,以及不停注、不降压条件下钻井施工风险高等问题。为解决这些问题,通过攻关超短半径水平井技术、调整井控压钻井技术和控水套损防治技... 大庆油田已进入高采出率、高含水率的开发后期,面临着剩余油高度零散分布、水淹严重、套损井比例攀升,以及不停注、不降压条件下钻井施工风险高等问题。为解决这些问题,通过攻关超短半径水平井技术、调整井控压钻井技术和控水套损防治技术,构建了该3项技术协同应用的“剩余油靶向挖潜—低成本加密调整—水窜动态抑制—套损长效防控”全链条剩余油高效提产技术。超短半径水平井技术通过地质工程一体化、随钻测控和高造斜柔性钻具等技术,实现老井侧钻,精准连通分散的剩余油富集区域,扩大泄油面积,显著提高单井产量,并可用于恢复套损井产能。调整井控压钻井技术基于精确的地层压力预测模型,应用精细控压钻井系统,在“边注边采边钻”条件下,实现井筒压力的精准、自动调控,保障在不关井或有限关井条件下的钻井安全与固井质量。控水套损防治技术包括全封固井水泥面控制技术、长胶筒封隔器技术、自增压式双卡高压层固井技术及中空结构双层套管技术,可有效抑制高压层流体溢出、提高固井质量,并通过建立缓冲间隙减缓地层蠕变对套管的直接作用力,从而预防和控制套管损坏。大庆油田在地层压力系数1.8~2.0的117口井中应用了多技术协同剩余油高效提产技术,实现了在不关井或有限关井条件下的安全钻完井,固井质量显著提升(优质率提高35.8百分点),平均套损率同比下降9.0百分点,并延长了油井使用年限,累计增产油量11.25×10^(4)t。多技术协同剩余油高效提产技术为大庆油田乃至同类高含水老油田的稳产增效提供了技术支撑。 展开更多
关键词 剩余油 超短半径水平井 调整井 控压钻井 套管损坏防治
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紫外皮秒激光单晶硅微孔加工研究
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作者 刘建 张全利 傅玉灿 《机械制造与自动化》 2026年第1期7-12,共6页
单晶硅是目前微芯片、微传感器和光伏发电系统制造中应用最广泛的材料。超短脉冲激光加工硬脆材料时具有重铸层少、裂纹小、边缘平整等特点,在超精细的微孔加工中有着明显的优势。针对在硅片表面制作微通孔的实际需求,采用紫外皮秒激光... 单晶硅是目前微芯片、微传感器和光伏发电系统制造中应用最广泛的材料。超短脉冲激光加工硬脆材料时具有重铸层少、裂纹小、边缘平整等特点,在超精细的微孔加工中有着明显的优势。针对在硅片表面制作微通孔的实际需求,采用紫外皮秒激光器在单晶硅片上进行微孔加工,需研究激光环形钻孔中激光参数与微孔质量的依赖关系。选择激光功率、扫描速度、扫描次数作为独立的过程变量,进行相应的单因素实验和正交实验,并根据入孔直径、出孔直径、深度、锥度及表面质量对钻孔过程进行评价。最后基于优选的工艺参数,加工得到所需深度的微通孔。 展开更多
关键词 单晶硅 超短脉冲激光 微孔 激光加工
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冰下脉冲噪声下的基于首达径时延估计的超短基线定位算法
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作者 程相威 李宇 +1 位作者 刘崇磊 张扬帆 《应用声学》 北大核心 2026年第1期146-155,共10页
冰层的散射和冰下脉冲噪声会影响超短基线系统时延估计精度,进而影响超短基线系统的定位性能。针对这一问题,该文提出一种基于首达径时延估计抗冰下脉冲噪声的超短基线定位算法。该算法利用了极地半声道下稳健的首达径时延结构,采用自... 冰层的散射和冰下脉冲噪声会影响超短基线系统时延估计精度,进而影响超短基线系统的定位性能。针对这一问题,该文提出一种基于首达径时延估计抗冰下脉冲噪声的超短基线定位算法。该算法利用了极地半声道下稳健的首达径时延结构,采用自适应调整阈值的Huber损失函数来抵抗脉冲噪声带来的异常点,通过对信号残差不断进行匹配更新,逐步寻找不同的到达径时延,最终得到首达径时延的估计,实现目标的坐标估计。冰下仿真实验表明,所提算法能有效抵抗脉冲噪声带来的干扰,同时具有较强的鲁棒性,显著提高了冰下超短基线定位的精度。 展开更多
关键词 超短基线 冰下 时延估计 脉冲噪声
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