期刊文献+
共找到14,987篇文章
< 1 2 250 >
每页显示 20 50 100
Neutron‑gamma density measurement method using the mass attenuation coefficient function
1
作者 Jun‑Yan Chen Qiong Zhang 《Nuclear Science and Techniques》 2026年第1期180-192,共13页
Although traditional gamma-gamma density(GGD)logging technology is widely utilized,its potential environmental risks have prompted the development of more environmentally friendly neutron-gamma density(NGD)logging tec... Although traditional gamma-gamma density(GGD)logging technology is widely utilized,its potential environmental risks have prompted the development of more environmentally friendly neutron-gamma density(NGD)logging technology.However,NGD measurements are influenced by both neutron and gamma radiations.In the logging environment,variations in the formation composition indicate different elemental compositions,which affect the neutron-gamma reaction cross-sections and gamma generation.Compared to traditional gamma sources such as Cs-137,these changes significantly affect the generation and transport of neutron-induced inelastic gamma rays and hinder accurate measurements.To address this,a novel method is proposed that incorporates the mass attenuation coefficient function to account for the effects of various lithologies and pore contents on gamma-ray attenuation,thereby achieving more accurate density measurements by clarifying the transport processes of inelastic gamma rays with varying energies and spatial distributions in varied logging environments.The proposed method avoids the complex correction of neutron transport and is verified through Monte Carlo simulations for its applicability across various lithologies and pore contents,demonstrating absolute density errors that are less than 0.02 g/cm^(3)in clean formations and indicating good accuracy.This study clarifies the NGD mechanism and provides theoretical guidance for the application of NGD logging methods.Further studies will be conducted on extreme environmental conditions and tool calibration. 展开更多
关键词 Neutron-gamma density Mass attenuation coefficient Monte Carlo simulation
在线阅读 下载PDF
Attenuation imaging for hepatic steatosis in chronic hepatitis B vs metabolic dysfunction-associated steatotic liver disease 被引量:2
2
作者 Xue-Qi Li Guang-Wen Cheng +6 位作者 Iwaki Akiyama Xian-Jue Huang Jing Liang Li-Yun Xue Yi Cheng Masatoshi Kudo Hong Ding 《World Journal of Gastroenterology》 2025年第11期88-99,共12页
BACKGROUND Hepatic steatosis,characterized by fat accumulation in hepatocytes,can result from metabolic dysfunction-associated steatotic liver disease(MASLD),infections,alcoholism,chemotherapy,and toxins.MASLD is diag... BACKGROUND Hepatic steatosis,characterized by fat accumulation in hepatocytes,can result from metabolic dysfunction-associated steatotic liver disease(MASLD),infections,alcoholism,chemotherapy,and toxins.MASLD is diagnosed via imaging or biopsy with metabolic criteria and may progress to metabolic dysfunction–asso-ciated steatohepatitis,potentially leading to fibrosis,cirrhosis,or cancer.The coexistence of hepatic steatosis with chronic hepatitis B(CHB)is mainly related to metabolic factors and increases mortality and cancer risks.As a noninvasive method,attenuation imaging(ATI)shows promise in quantifying liver fat,demonstrating strong correlation with liver biopsy.AIM To investigate the disparity of ATI for assessing biopsy-based hepatic steatosis in CHB patients and MASLD patients.METHODS The study enrolled 249 patients who underwent both ATI and liver biopsy,including 78 with CHB and 171 with MASLD.Hepatic steatosis was classified into grades S0 to S3 according to the proportion of fat cells present.Liver fibrosis was staged from 0 to 4 according to the meta-analysis of histological data in viral hepatitis scoring system.The diagnostic performance of attenuation coefficient(AC)values across different groups was compared for each grade of steatosis.Factors associated with the AC values were determined through linear regression analysis.A multivariate logistic regression model was established to predict≥S2 within the MASLD group.RESULTS In both the CHB and the MASLD groups,AC values increased significantly with higher steatosis grade(P<0.001).In the CHB group,the areas under the curve(AUCs)of AC for predicting steatosis grades≥S1,≥S2 and S3 were 0.918,0.960 and 0.987,respectively.In contrast,the MASLD group showed AUCs of 0.836,0.774,and 0.688 for the same steatosis grades.The diagnostic performance of AC for detecting≥S2 and S3 indicated significant differences between the two groups(both P<0.001).Multivariate linear regression analysis identified body mass index,trigly-cerides,and steatosis grade as significant factors for AC.When the steatosis grade is≥S2,it can progress to more serious liver conditions.A clinical model integrating blood biochemical parameters and AC was developed in the MASLD group to enhance the prediction of≥S2,achieving an AUC of 0.848.CONCLUSION The AC could effectively discriminate the degree of steatosis in both the CHB and MASLD groups.In the MASLD group,when combined with blood biochemical parameters,AC exhibited better predictive ability for moderate to severe steatosis. 展开更多
关键词 Metabolic dysfunction-associated steatotic liver disease Chronic hepatitis B Liver steatosis attenuation imaging attenuation coefficient
暂未订购
Multi-Scale Dilated Convolution Network for SPECT-MPI Cardiovascular Disease Classification with Adaptive Denoising and Attenuation Correction
3
作者 A.Robert Singh Suganya Athisayamani +1 位作者 Gyanendra Prasad Joshi Bhanu Shrestha 《Computer Modeling in Engineering & Sciences》 SCIE EI 2025年第1期299-327,共29页
Myocardial perfusion imaging(MPI),which uses single-photon emission computed tomography(SPECT),is a well-known estimating tool for medical diagnosis,employing the classification of images to show situations in coronar... Myocardial perfusion imaging(MPI),which uses single-photon emission computed tomography(SPECT),is a well-known estimating tool for medical diagnosis,employing the classification of images to show situations in coronary artery disease(CAD).The automatic classification of SPECT images for different techniques has achieved near-optimal accuracy when using convolutional neural networks(CNNs).This paper uses a SPECT classification framework with three steps:1)Image denoising,2)Attenuation correction,and 3)Image classification.Image denoising is done by a U-Net architecture that ensures effective image denoising.Attenuation correction is implemented by a convolution neural network model that can remove the attenuation that affects the feature extraction process of classification.Finally,a novel multi-scale diluted convolution(MSDC)network is proposed.It merges the features extracted in different scales and makes the model learn the features more efficiently.Three scales of filters with size 3×3 are used to extract features.All three steps are compared with state-of-the-art methods.The proposed denoising architecture ensures a high-quality image with the highest peak signal-to-noise ratio(PSNR)value of 39.7.The proposed classification method is compared with the five different CNN models,and the proposed method ensures better classification with an accuracy of 96%,precision of 87%,sensitivity of 87%,specificity of 89%,and F1-score of 87%.To demonstrate the importance of preprocessing,the classification model was analyzed without denoising and attenuation correction. 展开更多
关键词 SPECT-MPI CAD MSDC DENOISING attenuation correction classification
在线阅读 下载PDF
Three-dimensional time-domain full waveform inversion for sound speed and attenuation reconstruction in ultrasound computed tomography
4
作者 Zilong Liu Zhijian Tan +1 位作者 Songde Liu Chao Tian 《中国科学技术大学学报》 北大核心 2025年第6期11-20,10,I0001,共12页
Ultrasound computed tomography(USCT)is a noninvasive biomedical imaging modality that offers insights into acoustic properties such as the sound speed(SS)and acoustic attenuation(AA)of the human body,enhancing diagnos... Ultrasound computed tomography(USCT)is a noninvasive biomedical imaging modality that offers insights into acoustic properties such as the sound speed(SS)and acoustic attenuation(AA)of the human body,enhancing diagnostic accuracy and therapy planning.Full waveform inversion(FWI)is a promising USCT image reconstruction method that optimizes the parameter fields of a wave propagation model via gradient-based optimization.However,twodimensional FWI methods are limited by their inability to account for three-dimensional wave propagation in the elevation direction,resulting in image artifacts.To address this problem,we propose a three-dimensional time-domain full waveform inversion algorithm to reconstruct the SS and AA distributions on the basis of a fractional Laplacian wave equation,adjoint field formulation,and gradient descent optimization.Validated by two sets of simulations,the proposed algorithm has potential for generating high-resolution and quantitative SS and AA distributions.This approach holds promise for clinical USCT applications,assisting early disease detection,precise abnormality localization,and optimized treatment planning,thus contributing to better healthcare outcomes. 展开更多
关键词 full waveform inversion ultrasound computed tomography speed of sound acoustic attenuation inverse problems
在线阅读 下载PDF
Numerical analysis of dispersion,attenuation,and seismic effects in a porous rock saturated with three-phase immiscible fluids
5
作者 Xin Luo Xue-Hua Chen +2 位作者 Tong Li Gui-Rong Luo Peng Wang 《Petroleum Science》 2025年第7期2828-2850,共23页
Multiphase flow in porous rock is of great importance in the application of many industrial processes,including reservoir delineation,enhanced oil recovery,and CO_(2) sequestration.However,previous research typically ... Multiphase flow in porous rock is of great importance in the application of many industrial processes,including reservoir delineation,enhanced oil recovery,and CO_(2) sequestration.However,previous research typically investigated the dispersive behaviors when rock saturated with single or two-phase fluids and conducted limited studies on three-phase immiscible fluids.This study investigated the seismic dispersion,attenuation,and reflection features of seismic waves in three-phase immiscible fluidsaturated porous rocks.First,we proposed the calculation formulas of effective fluid modulus and effective fluid viscosity of multiphase immiscible fluids by taking into account the capillary pressure,reservoir wettability,and relative permeability simultaneously.Then,we analysed the frequencydependent behaviors of three-phase immiscible fluid-saturated porous rock under different fluid proportion cases using the Chapman multi-scale model.Next,the seismic responses are analysed using a four-layer model.The results indicate that the relative permeability,capillary pressure parameter,and fluid proportions are all significantly affect dispersion and attenuation.Comparative analyses demonstrate that dispersion and attenuation can be observed within the frequency range of seismic exploration for a lower capillary parameter a3 and higher oil content.Seismic responses reveal that the reflection features,such as travel time,seismic amplitude,and waveform of the bottom reflections of saturated rock and their underlying reflections are significantly dependent on fluid proportions and capillary parameters.For validation,the numerical results are further verified using the log data and real seismic data.This numerical analysis helps to further understand the wave propagation characteristics for a porous rock saturated with multiphase immiscible fluids. 展开更多
关键词 Multiphase immiscible fluids DISPERSION attenuation Relative permeability Capillary parameter Seismic responses
原文传递
A fast amplitude preserving three-parameter 3D parabolic Radon transform and its application on multiple attenuation
6
作者 Ji-Tao Ma Kai-Ge Zhao Zhen Liao 《Petroleum Science》 2025年第1期163-177,共15页
Seismic wavefields propagate through three-dimensional(3D)space,and their precise characterization is crucial for understanding subsurface structures.Traditional 2D algorithms,due to their limitations,are insufficient... Seismic wavefields propagate through three-dimensional(3D)space,and their precise characterization is crucial for understanding subsurface structures.Traditional 2D algorithms,due to their limitations,are insufficient to fully represent three-dimensional wavefields.The classic 3D Radon transform algorithm assumes that the wavefield's propagation characteristics are consistent in all directions,which often does not hold true in complex underground media.To address this issue,we present an improved 3D three-parameter Radon algorithm that considers the wavefield variation with azimuth and provides a more accurate wavefield description.However,introducing new parameters to describe the azimuthal varia-tion also poses computational challenges.The new Radon transform operator involves five variables and cannot be simply decomposed into small matrices for efficient computation;instead,it requires large matrix multiplication and inversion operations,significantly increasing the computational load.To overcome this challenge,we have integrated the curvature and frequency parameters,simplifying all frequency operators to the same,thereby significantly improving computation efficiency.Furthermore,existing transform algorithms neglect the lateral variation of seismic amplitudes,leading to discrepancies between the estimated multiples and those in the data.To enhance the amplitude preservation of the algorithm,we employ orthogonal polynomial fitting to capture the amplitude spatial variation in 3D seismic data.Combining these improvements,we propose a fast,amplitude-preserving,3D three-parameter Radon transform algorithm.This algorithm not only enhances computational efficiency while maintaining the original wavefield characteristics,but also improves the representation of seismic data by increasing amplitude fidelity.We validated the algorithm in multiple attenuation using both synthetic and real seismic data.The results demonstrate that the new algorithm significantly improves both accuracy and computational efficiency,providing an effective tool for analyzing seismic wavefields in complex subsurface structures. 展开更多
关键词 Three-parameter 3D Radon Orthogonal polynomial Amplitude-preserving Multiple attenuation
原文传递
Analysis of seismic dispersion and attenuation for gas-hydrate formations in the South China Sea
7
作者 Zuo-Xiu He Feng Zhang +2 位作者 Pin-Bo Ding Xiang-Yang Li Hai-Feng Chen 《Petroleum Science》 2025年第8期3279-3292,共14页
Existing studies indicate that gas hydrate-bearing formations exhibit notable seismic velocity dispersion and attenuation. The Shenhu area of the South China Sea hold significant gas hydrate resource potential;however... Existing studies indicate that gas hydrate-bearing formations exhibit notable seismic velocity dispersion and attenuation. The Shenhu area of the South China Sea hold significant gas hydrate resource potential;however, the relationship between seismic velocity dispersion, attenuation properties, and gas-hydrate saturation remains insufficiently understood. Furthermore, a significant mismatch exists between the real seismic angle gather near a well and the synthetic angle gather generated using the convolution method, and this discrepancy may arise from the seismic velocity dispersion and attenuation characteristics of the gas hydrate-bearing formations. In this paper, we develop a rock physics model that integrates White's and Dvorkin's models, accounting for varied types of gas-hydrate occurrence states,specifically tailored to the gas hydrate-bearing formations in the Shenhu area. This model is calibrated with well log data and employed to investigate how gas-hydrate saturation influences seismic velocity dispersion and attenuation. Numerical analysis reveals the coexistence of two types of gas-hydrate occurrence states in the region: high gas-hydrate saturation formations are dominated by loadbearing-type gas hydrate, and formations containing both gas hydrate and free gas may exhibit either load-bearing or pore-filling types. The seismic velocity dispersion and attenuation properties vary significantly depending on the gas-hydrate occurrence state. We further apply the proposed model to generate seismic velocity and attenuation logs at various frequencies. These logs are used in seismic forward modeling employing both the convolution method and the propagator matrix method. Well tie analysis indicates that the synthetic angle gather incorporating attenuation via the propagator matrix method aligns more closely with the real seismic angle gather than the convolution method. This study provides valuable insights into frequency-dependent amplitude versus offset(AVO) analysis and the seismic interpretation of gas hydrate-bearing formations in the South China Sea. 展开更多
关键词 Gas hydrate-bearing formation Rock physics model Seismic velocity dispersion attenuation Occurrence state Seismic forward modeling
原文传递
Dispersion,attenuation,and bandgap of in-plane coupled Bloch waves in piezoelectric semiconductor phononic crystal with PN junction
8
作者 Zibo WEI Peijun WEI +1 位作者 Chunyu XU Xiao GUO 《Applied Mathematics and Mechanics(English Edition)》 2025年第5期813-830,共18页
In this paper,the dispersion,attenuation,and bandgap characteristics of in-plane coupled Bloch waves in one-dimensional piezoelectric semiconductor(PSC)phononic crystals are investigated,emphasizing the influence of p... In this paper,the dispersion,attenuation,and bandgap characteristics of in-plane coupled Bloch waves in one-dimensional piezoelectric semiconductor(PSC)phononic crystals are investigated,emphasizing the influence of positive-negative(PN)junctions.Unlike piezoelectric phononic crystals,the coupled Bloch waves in PSC phononic crystals are attenuated due to their semiconductor properties,and thus the solution of Bloch waves becomes more complicated.The transfer matrix of the phononic crystal unit cell is obtained using the state transfer equation.By applying the Bloch theorem for periodic structures,the dispersion relation of the coupled Bloch waves is derived,and the dispersion,attenuation,and bandgap are obtained in the complex wave number domain.It is found that the influence of the PN junction cannot be neglected.Moreover,the effects of the PN junction under different apparent wave numbers and steady-state carrier concentrations are provided.This indicates the feasibility of adjusting the propagation characteristics of Bloch waves through the regulation of the PN heterojunction. 展开更多
关键词 piezoelectric semiconductor(PSC) phononic crystal positive-negative(PN)junction dispersion and attenuation carrier field transfer matrix
在线阅读 下载PDF
Research on vibration response and vibration attenuation model of comprehensive transportation hub under multiple-source excitations
9
作者 Wu Qiaoyun Zhang Qingdong +2 位作者 Sun Jubo Chen Xuyong Xie Weiping 《Earthquake Engineering and Engineering Vibration》 2025年第2期527-545,共19页
To investigate the vibration response of the comprehensive transportation hub structure under multiple-source excitations,an on-site vibration measurement was carried out at Wuhan Railway Station in China.The characte... To investigate the vibration response of the comprehensive transportation hub structure under multiple-source excitations,an on-site vibration measurement was carried out at Wuhan Railway Station in China.The characteristics of each floor vibration were obtained through the time domain and frequency domain analyses.Based on the vibration characteristic under multiple-source excitations,the proposed attenuation model was derived.In addition,a vibration comfort evaluation on the Wuhan Railway Station was conducted.The results show that the effect of the number of vibration sources on horizontal acceleration is more significant than that regarding vertical acceleration.When the structure is under the effects two vibration sources with different frequencies,a high-frequency vibration can amplify a low-frequency vibration.The derived attenuation model can precisely predict the vibration attenuation and reduce the subsequent vibration test workload.Based on the annoyance rate model result,the annoyance rate of Wuhan Railway Station is high,which is harmful to the staff of the station. 展开更多
关键词 comprehensive transportation hub multiple-source excitations Wuhan Railway Station vibration measurement vibration attenuation model comfort evaluation
在线阅读 下载PDF
Non-uniform electron density estimation based on electromagnetic wave attenuation in plasma
10
作者 Zhaoying Wang Lixin Guo +2 位作者 Maixia Fu Shaoshuai Guo Yinsheng Li 《Chinese Physics B》 2025年第1期381-386,共6页
The surface of a high-speed vehicle reentering the atmosphere is surrounded by plasma sheath.Due to the influence of the inhomogeneous flow field around the vehicle,understanding the electromagnetic properties of the ... The surface of a high-speed vehicle reentering the atmosphere is surrounded by plasma sheath.Due to the influence of the inhomogeneous flow field around the vehicle,understanding the electromagnetic properties of the plasma sheath can be challenging.Obtaining the electron density of the plasma sheath is crucial for understanding and achieving plasma stealth of vehicles.In this work,the relationship between electromagnetic wave attenuation and electron density is deduced theoretically.The attenuation distribution along the propagation path is found to be proportional to the integral of the plasma electron density.This result is used to predict the electron density profile.Furthermore,the average electron density is obtained using a back-propagation neural network algorithm.Finally,the spatial distribution of the electron density can be determined from the average electron density and the normalized derivative of attenuation with respect to the propagation depth.Compared to traditional probe measurement methods,the proposed approach not only improves efficiency but also preserves the integrity of the plasma environment. 展开更多
关键词 attenuation electromagnetic propagation PLASMA electron density
原文传递
The Acoustic Attenuation Prediction for Seafloor Sediment Based on in-situ Data and Machine Learning Methods
11
作者 WANG Jingqiang HOU Zhengyu +6 位作者 CHEN Yinglin LI Guanbao KAN Guangming XIAO Peng LI Zhenglin MO Dinghao HUANG Jingyi 《Journal of Ocean University of China》 2025年第1期95-102,共8页
Accurate acquisition and prediction of acoustic parameters of seabed sediments are crucial in marine sound propagation research.While the relationship between sound velocity and physical properties of sediment has bee... Accurate acquisition and prediction of acoustic parameters of seabed sediments are crucial in marine sound propagation research.While the relationship between sound velocity and physical properties of sediment has been extensively studied,there is still no consensus on the correlation between acoustic attenuation coefficient and sediment physical properties.Predicting the acoustic attenuation coefficient remains a challenging issue in sedimentary acoustic research.In this study,we propose a prediction method for the acoustic attenuation coefficient using machine learning algorithms,specifically the random forest(RF),support vector machine(SVR),and convolutional neural network(CNN)algorithms.We utilized the acoustic attenuation coefficient and sediment particle size data from 52 stations as training parameters,with the particle size parameters as the input feature matrix,and measured acoustic attenuation as the training label to validate the attenuation prediction model.Our results indicate that the error of the attenuation prediction model is small.Among the three models,the RF model exhibited the lowest prediction error,with a mean squared error of 0.8232,mean absolute error of 0.6613,and root mean squared error of 0.9073.Additionally,when we applied the models to predict the data collected at different times in the same region,we found that the models developed in this study also demonstrated a certain level of reliability in real prediction scenarios.Our approach demonstrates that constructing a sediment acoustic characteristics model based on machine learning is feasible to a certain extent and offers a novel perspective for studying sediment acoustic properties. 展开更多
关键词 in-situ measurement attenuation seafloor sediment machine learning methods
在线阅读 下载PDF
Theoretical Study on the Wave Attenuation Performance of Floating Breakwater with a Rectangular Cross-Section
12
作者 WANG Yan-zhao JI Chun-yan +1 位作者 XU Sheng MAO Run-ze 《China Ocean Engineering》 2025年第2期244-255,共12页
The wave attenuation performance of a floating breakwater is important in engineering applications.On the basis of potential flow theory,the analytical and simplified solutions of the transmission coefficient of a flo... The wave attenuation performance of a floating breakwater is important in engineering applications.On the basis of potential flow theory,the analytical and simplified solutions of the transmission coefficient of a floating breakwater are deduced via velocity potential decompositions and eigenfunction expansions.The effects of the floating breakwater configuration,working sea state and motion response on the wave attenuation performance are described,facilitating a deeper investigation into the wave attenuation mechanism of the breakwater.The results indicate that the width and draft of the breakwater,incident wavelength,and motion response significantly affect the transmission coefficient of the breakwater.The wave passability rate,α1(α1=0.5−2B/L),is defined to qualitatively explain why long-period waves are difficult to control and attenuate.The radiation effect caused by the motion of the floating breakwater on the transmission coefficient is relatively complex,and the wave attenuation efficiency of the breakwater can be improved by optimizing the motion response.The incident wavelength and breakwater width are selected as the control parameters,and transmission coefficient charts of the floating breakwater for two-dimensional conditions are drawn,providing technical guidance for the configuration selection and design of the floating breakwater. 展开更多
关键词 floating breakwater wave attenuation performance motion response design chart
在线阅读 下载PDF
Effects of multi-scale wave-induced fluid flow on seismic dispersion,attenuation and frequency-dependent anisotropy in periodic-layered porous-cracked media
13
作者 Zhao-Yun Zong Yan-Wen Feng +1 位作者 Fu-Bin Chen Guang-Zhi Zhang 《Petroleum Science》 2025年第2期684-696,共13页
The wave-induced fluid flow(WIFF) occurring in the ubiquitous layered porous media(e.g.,shales)usually causes the appreciable seismic energy dissipation,which further leads to the frequency dependence of wave velocity... The wave-induced fluid flow(WIFF) occurring in the ubiquitous layered porous media(e.g.,shales)usually causes the appreciable seismic energy dissipation,which further leads to the frequency dependence of wave velocity(i.e.,dispersion) and elastic anisotropy parameters.The relevant knowledge is of great importance for geofluid discrimination and hydrocarbon exploration in the porous shale reservoirs.We derive the wave equations for a periodic layered transversely isotropy medium with a vertical axis of symmetry(VTI) concurrently with the annular cracks(PLPC medium) based on the periodic-layered model and anisotropic Biot's theory,which simultaneously incorporate the effects of microscopic squirt fluid flow,mesoscopic interlayer fluid flow and macroscopic global fluid flow.Notably,the microscopic squirt shorten fluid flow emerges between the annular-shaped cracks and stiff pores,which generates one attenuation peak.Specifically,we first establish the stress-strain relationship and pore fluid pressure in a PLPC medium,and then use them to derive the wave equations by means of the Newton's second law.The plane analysis is implemented on the wave equations to yield the analytic solutions for phase velocities and attenuation factors of four waves,namely,fast P-wave,slow P-wave,SV-wave and SH-wave,and the anisotropy parameters can be therefore computed.Simulation results show that P-wave velocity have three attenuation peaks throughout the full frequency band,which respectively correspond to the influences of interlayer flow,the squirt flow and the Biot flow.Through the results of seismic velocity dispersion and attenuation at different incident angles,we find that the WIFF mechanism also has a significant impact on the dispersion characteristics of elastic anisotropy parameters within the low-mid frequency band.Moreover,it is shown that several poroelastic parameters,such as layer thickness ratio,crack aspect ratio and crack density have notable influence on seismic dispersion and attenuation.We compare the proposed modeled velocities with that given by the existing theory to confirm its validity.Our formulas and result can provide a better understanding of wave propagation in PLPC medium by considering the unified impacts of micro-,meso-and macro-scale WIFF mechanisms,which potentially lays a theoretical basis of rock physics for seismic interpretation. 展开更多
关键词 Wave-induced fluid flow Multi-scale wave equations ANISOTROPY Dispersion and attenuation
原文传递
Impact attenuation mechanism of single/double-layer potting structures of MEMS devices under continuous double-pulse impact
14
作者 Hao'nan Guo Yunbo Shi +4 位作者 Rui Zhao Yu'nan Chen Peng Zhang Liang Chen Tao Guo 《Defence Technology(防务技术)》 2025年第6期104-114,共11页
High-overload shocks are very likely to cause damage to the microstructure of MEMS devices, especially the continuous multiple high-overload shocks generated by the penetration of the multilayer target environment pos... High-overload shocks are very likely to cause damage to the microstructure of MEMS devices, especially the continuous multiple high-overload shocks generated by the penetration of the multilayer target environment pose more stringent challenges to its protective structure. In this study, the kinetic response model of the protective structure under single-pulse and continuous double-pulse impact is established,and a continuous double-pulse high overload impact test impact platform based on the sleeve-type bullet is constructed, and the protective performance of the multi-layer structure under multi-pulse is analyzed based on the acceleration decay ratio, and the results show that the protective performance of the structure has a positive correlation with its thickness, and it is not sensitive to the change of the load of the first impact;the first impact under double-pulse impact will cause damage to the microstructure through the superposition of the second impact. The first impact under double-pulse impact will cause an increase in the overload amplitude of the second impact through superposition;compared with the single-layer structure, the acceleration attenuation ratio of the double-layer structure can be increased by up to 26.13%, among which the epoxy-polyurethane combination has the best protection performance, with an acceleration attenuation ratio of up to 44.68%. This work provides a robust theoretical foundation and experimental basis for the reliable operation of MEMS devices, as well as for the design of protective structures in extreme environments. 展开更多
关键词 Continuous double pulse Protective structure attenuation ratio MEMS devices
在线阅读 下载PDF
鸡传染性喉气管炎弱毒株FJ19株的关键基因遗传演化分析及作为候选疫苗株的安全性、有效性评价
15
作者 王晨燕 张巍嘉 +4 位作者 柳珊 李亚杰 赵丽霞 刘云涛 侯博 《畜牧兽医学报》 北大核心 2026年第2期994-1007,共14页
本研究旨在分析鸡传染性喉气管炎病毒(ILTV)弱毒株FJ19株的部分关键抗原基因及毒力基因的遗传演化特点,评估FJ19株对SPF鸡的安全性和免疫原性,为ILTV FJ19株弱毒活疫苗的开发提供参考依据。通过将FJ19株进行多次尿囊腔途径接种适应后,... 本研究旨在分析鸡传染性喉气管炎病毒(ILTV)弱毒株FJ19株的部分关键抗原基因及毒力基因的遗传演化特点,评估FJ19株对SPF鸡的安全性和免疫原性,为ILTV FJ19株弱毒活疫苗的开发提供参考依据。通过将FJ19株进行多次尿囊腔途径接种适应后,对其关键抗原和毒力基因进行测序分析,点眼或口服接种14日龄SPF鸡观察其安全性,并且通过点眼或口服途径免疫14日龄SPF鸡21 d后用ILTV强毒株攻毒评价保护效果,测定免疫持续期等验证FJ19株作为弱毒活疫苗的潜力。结果显示:将FJ19株在10日龄SPF鸡胚以尿囊腔途径接种连续传代适应后,收获P0、P1、P2、P3代病毒液的EID50分别为10^(5.0)、10^(6.5)、10^(6.9)、10^(6.5)·mL^(-1)。核酸序列分析结果表明:FJ19株主要免疫原性基因gB-gC-gD-UL32和毒力相关基因gE-gI-TK-ICP4-gG-gH-gK-gL-gM-gN与弱毒株K317、Nobilis Laringovac®、LT Blen、Poulvac ILT®、Laryngo Vac和我国2009年分离株LJS09株、2012年分离株ck/CH/LHLJ/120305株、2019年分离强毒株WF03的亲缘关系较近。安全性试验显示,FJ19株以104.0EID50·羽-1的剂量(10羽份)点眼接种14日龄SPF鸡后有40%出现轻度眼炎症状,而口服接种SPF鸡未表现出明显的临床症状;当以104.0EID50·羽-1的剂量气管途径接种21日龄SPF鸡时有30%鸡出现一过性的呼吸道反应,未发生严重的ILTV感染典型症状。免疫后强毒攻毒结果显示,FJ19株以0.2羽份或1羽份的剂量点眼或口服途径免疫14日龄SPF鸡21d后,采用ILTV强毒株以104.0EID50·只-1的剂量气管攻毒后,所有免疫组的鸡均获得了至少90%的保护,未观察到明显的临床症状,而未免疫攻毒组至少有90%的鸡出现了严重的ILTV感染典型症状,FJ19株免疫后的免疫持续期至少可达6个月。ILTV FJ19株采用尿囊腔途径接种可获得高滴度病毒含量,其主要抗原基因和毒力基因与我国早期分离株和疫苗株相比未发生明显变异,通过动物试验证实点眼或口服该弱毒株对14日龄SPF鸡具有良好的安全性和免疫有效性,且免疫持续期可达6个月,通过口服接种不影响其安全性和免疫有效性。因此,ILTV弱毒株FJ19株不仅适应尿囊腔接种途径收获病毒,且具备良好的安全性和免疫有效性,还可适应口服接种途径进行免疫,是一株理想的具有潜力的弱毒疫苗候选毒株。 展开更多
关键词 传染性喉气管炎 弱毒株 遗传进化 安全性 有效性
在线阅读 下载PDF
掺镱光纤激光器伽马辐照响应特性
16
作者 陶蒙蒙 谌鸿伟 +6 位作者 王亚民 王科 邵冲云 李哲 李生武 李乔木 叶景峰 《物理学报》 北大核心 2026年第3期185-194,共10页
光纤激光器在太空、反应堆、大型加速器等辐射环境中应用时,辐射与光纤的相互作用会给光纤参数带来较大变化,从而影响激光器的输出性能.本文对掺镱光纤激光器的伽马辐照响应特性开展了实验和仿真研究.实验对比了无源光纤、泵浦合束器、... 光纤激光器在太空、反应堆、大型加速器等辐射环境中应用时,辐射与光纤的相互作用会给光纤参数带来较大变化,从而影响激光器的输出性能.本文对掺镱光纤激光器的伽马辐照响应特性开展了实验和仿真研究.实验对比了无源光纤、泵浦合束器、光纤光栅、增益光纤等不同光纤器件在辐照环境下的性能变化,通过对比分析明确了增益光纤是激光器系统中对辐射最为敏感的光纤器件.实验研究了泵浦方式、增益光纤长度对掺镱光纤激光器辐射响应特性的影响,并通过理论模拟对实验结果进行了分析验证;结果表明,后向泵浦方式和更短的增益光纤有助于降低光纤激光器系统的辐射敏感性.相关研究结果可为光纤激光器抗辐射优化设计提供技术参考,支撑激光器在辐射环境中的安全使用. 展开更多
关键词 辐致损耗 掺镱光纤激光器 伽马辐照
在线阅读 下载PDF
基于多道卡尔曼滤波神经网络的无监督微地震去噪方法
17
作者 张岩 张永雪 +4 位作者 魏子心 董宏丽 韩非 张林军 汪靖哲 《地球物理学报》 北大核心 2026年第1期353-365,共13页
微地震数据中有效信号的振幅、频率,及噪声具有显著的时变特征,当前微地震去噪方法中基于卡尔曼滤波方法高度依赖经验调参而影响应用效率,深度学习方法往往需要大量有效样本监督学习.针对以上问题,提出一种结合卡尔曼滤波与循环神经网... 微地震数据中有效信号的振幅、频率,及噪声具有显著的时变特征,当前微地震去噪方法中基于卡尔曼滤波方法高度依赖经验调参而影响应用效率,深度学习方法往往需要大量有效样本监督学习.针对以上问题,提出一种结合卡尔曼滤波与循环神经网络的无监督微地震数据去噪方法.首先,建立多道微地震数据的卡尔曼滤波状态预测与更新方程,充分利用多道相关性提高卡尔曼滤波参数的表征能力;其次,设计多道卡尔曼滤波状态预测与更新的RNN运算算子,通过链式梯度自动求取方式优化卡尔曼滤波的参数,构建基于循环神经网络模式的多道卡尔曼网络去噪;再次,结合无监督的微地震去噪训练方法,实现卡尔曼参数自动优化,避免有效数据标签的过度依赖;最后,通过理论正演与实际微地震数据的实验结果表明,本文方法在微地震去噪准确性与效率上优于传统卡尔曼滤波与变分自编码器等同类方法. 展开更多
关键词 微地震数据处理 卡尔曼滤波 循环神经网络 噪声压制 无监督网络
在线阅读 下载PDF
弱化·重构·消解·新建:西方当代音乐的曲式演变路径
18
作者 陈鸿铎 《星海音乐学院学报》 北大核心 2026年第2期48-72,共25页
对于西方当代音乐中的曲式演进,一直以来个案研究较多,而整体性研究较为缺乏。针对这一现状,文章以弱化、重构和消解三个角度,从整体上就西方当代音乐曲式创新的演变路径进行深入探讨,提出并分析了“一体化结构”“偶然结构”“循环相... 对于西方当代音乐中的曲式演进,一直以来个案研究较多,而整体性研究较为缺乏。针对这一现状,文章以弱化、重构和消解三个角度,从整体上就西方当代音乐曲式创新的演变路径进行深入探讨,提出并分析了“一体化结构”“偶然结构”“循环相位结构”与“时段结构”等四种新的结构类型。 展开更多
关键词 曲式范式 弱化 重构 消解 演变路径 过程曲式
在线阅读 下载PDF
High-precision frequency attenuation analysis and its application 被引量:9
19
作者 熊晓军 贺锡雷 +2 位作者 蒲勇 贺振华 林凯 《Applied Geophysics》 SCIE CSCD 2011年第4期337-343,372,共8页
Based on seismic attenuation theory in a fluid-filled porous medium, we improve conventional methods of low-frequency shadow analysis (LFSA) and energy absorption analysis (EAA) and propose a high-precision freque... Based on seismic attenuation theory in a fluid-filled porous medium, we improve conventional methods of low-frequency shadow analysis (LFSA) and energy absorption analysis (EAA) and propose a high-precision frequency attenuation analysis technology. First, we introduce the method of three-parameter wavelet transform and the time-frequency focused criterion and develop a high-precision time-frequency analysis method based on an adaptive three-parameter wavelet transform, which has high time-frequency resolution with benefit to LFSA and can obtain a single-peaked spectrum with narrow side-lobes with benefit to EAA. Second, we correctly compute absorption coefficient by curve fitting based on the nonlinear Nelder-Mead algorithm and effectively improve EAA precision. Practical application results show that the proposed frequency attenuation analysis technology integrated with LFSA and EAA can effectively predict favorable zones of carbonate oolitic reservoir. Furthermore, reservoir prediction results based on LFSA correspond with EAA. The new technology can effectively improve reservoir prediction reliability and reduce exploration risk. 展开更多
关键词 attenuation analysis low-frequency shadow energy absorption analysis time- frequency analysis
在线阅读 下载PDF
Seismic dip estimation based on the twodimensional Hilbert transform and its application in random noise attenuation 被引量:8
20
作者 刘财 陈常乐 +3 位作者 王典 刘洋 王世煜 张亮 《Applied Geophysics》 SCIE CSCD 2015年第1期55-63,121,共10页
In seismic data processing, random noise seriously affects the seismic data quality and subsequently the interpretation. This study aims to increase the signal-to-noise ratio by suppressing random noise and improve th... In seismic data processing, random noise seriously affects the seismic data quality and subsequently the interpretation. This study aims to increase the signal-to-noise ratio by suppressing random noise and improve the accuracy of seismic data interpretation without losing useful information. Hence, we propose a structure-oriented polynomial fitting filter. At the core of structure-oriented filtering is the characterization of the structural trend and the realization of nonstationary filtering. First, we analyze the relation of the frequency response between two-dimensional(2D) derivatives and the 2D Hilbert transform. Then, we derive the noniterative seismic local dip operator using the 2D Hilbert transform to obtain the structural trend. Second, we select polynomial fitting as the nonstationary filtering method and expand the application range of the nonstationary polynomial fitting. Finally, we apply variableamplitude polynomial fitting along the direction of the dip to improve the adaptive structureoriented filtering. Model and field seismic data show that the proposed method suppresses the seismic noise while protecting structural information. 展开更多
关键词 Two-dimensional Hilbert transform random noise attenuation structure protection nonstationary polynomial fitting local seismic d
在线阅读 下载PDF
上一页 1 2 250 下一页 到第
使用帮助 返回顶部