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Design of ground-airborne TEM three-component air-core coil sensor 被引量:6
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作者 YUAN Shao-ye LIN Jun +2 位作者 SONG Shuang SUN De-li TENG Fei 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2019年第1期28-37,共10页
Transient electromagnetic method (TEM),as a non-seismic geophysical exploration mainstream electromagnetic method,is widely used in oil,gas,mineral and other underground resources exploration areas. The coil sensor is... Transient electromagnetic method (TEM),as a non-seismic geophysical exploration mainstream electromagnetic method,is widely used in oil,gas,mineral and other underground resources exploration areas. The coil sensor is generally used to collect data. In view of the problems of incomplete information of the abnormal body and the data loss in the existing TEM single-component coil sensor,a three-component TEM coil sensor is designed. By analyzing the relationship between sensor sensitivity and coil structure parameters,the coil structure and turns are designed. By analyzing the frequency response characteristics of the TEM magnetic field sensor,the signal distortion is reduced by using the under-damped matching mode. By analyzing the distribution of various noise sources of the magnetic sensor,the appropriate amplifier is selected to reduce the background noise. Finally,a three-component TEM induction magnetic field sensor is designed. The weight of the sensor is controlled at 3.2 kg and the working frequency is 10 mHz-10 kHz. The background noises of X and Y components probably keep in 1.5×10^-8 V/ Hz and sensitivities are 8.4 and 9.8 nT/s,respectively,the background noise of vertical component is 2.1× 10^-7 V/ Hz and sensitivity is 18.5 nT/s. Compared with the existing single-component TEM receiving magnetic field sensor,the designed sensor realizes the signal acquisition of three components. Without too much increase in volume and total weight,it improves the sensitivity of the sensor and reduces the background noise,thus the signal-to-noise ratio (SNR) of the signal is improved. 展开更多
关键词 transient electromagnetic method (TEM) three-component air-core coil sensor under-damped matching noise analysis
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Numerical design of transverse gradient coil with transformed magnetic gradient field over an effective imaging area
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作者 Chaoqun Niu Hongyi Qu 《Magnetic Resonance Letters》 2025年第1期40-51,共12页
Gradient coil is an essential component of a magnetic resonance imaging(MRI)scanner.To achieve high spatial resolution and imaging speed,a high-efficiency gradient coil with high slew rate is required.In consideration... Gradient coil is an essential component of a magnetic resonance imaging(MRI)scanner.To achieve high spatial resolution and imaging speed,a high-efficiency gradient coil with high slew rate is required.In consideration of the safety and comfort of the patient,the mechanical stability,acoustic noise and peripheral nerve stimulation(PNS)are also need to be concerned for practical use.In our previous work,a high-efficiency whole-body gradient coil set with a hybrid cylindrical-planar structure has been presented,which offers significantly improved coil performances.In this work,we propose to design this transverse gradient coil system with transformed magnetic gradient fields.By shifting up the zero point of gradient fields,the designed new Y-gradient coil could provide enhanced electromagnetic performances.With more uniform coil winding arrangement,the net torque of the new coil is significantly reduced and the generated sound pressure level(SPL)is lower at most tested frequency bands.On the other hand,the new transverse gradient coil designed with rotated magnetic gradient fields produces considerably reduced electric field in the human body,which is important for the use of rapid MR sequences.It's demonstrated that a safer and patient-friendly design could be obtained by using transformed magnetic gradient fields,which is critical for practical use. 展开更多
关键词 Magnetic resonance imaging(MRI) Gradient coil Transformed magnetic gradient field Acoustic noise Induced electric field
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DESIGN OF THE AIR-CORE TRANSFORMER IN SPHERICAL TOKAMAK
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作者 WANG Zhong-tian, JIAN Guang-de, LI Fang-zhu, MAO Guo-ping (Southwestern Institute of Physics, Chengdu 610041) 《核聚变与等离子体物理》 CAS CSCD 北大核心 2002年第2期86-89,共4页
An ideal current distribution in the air core transformer coils is obtained using variation principle.Climbing mountain method is utilized for optimizing the dimension and position of the real coils.Not only can the r... An ideal current distribution in the air core transformer coils is obtained using variation principle.Climbing mountain method is utilized for optimizing the dimension and position of the real coils.Not only can the requirement of minimizing the stray field in the plasma region be guaranteed,but also integer turns for the coil can be realized.The latter brings a significant convenience to engineering. 展开更多
关键词 托卡马克装置 核聚变 设计 动力学 控制
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Numerical Analysis of Magnetic Force of Dry-Type Air-Core Reactor 被引量:1
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作者 LIUZhi-gang GENGYing-san WANGJian-hua 《Computer Aided Drafting,Design and Manufacturing》 2004年第1期42-47,共6页
This paper presents a coupled magnetic-circuit method for computing the magnetic force of air-core reactor under short-time current. The current and the magnetic flux density are computed first and then the magnetic f... This paper presents a coupled magnetic-circuit method for computing the magnetic force of air-core reactor under short-time current. The current and the magnetic flux density are computed first and then the magnetic force is obtained. Thus, the dynamic stability performance of air-core reactor can be analyzed at the design stage to reduce experimental cost and shorten the lead-time of product development. 展开更多
关键词 air-core reactor coupled magnetic-circuit magnetic flux density magnetic force
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Reconfigurable structured light generation and its coupling to air-core fiber 被引量:1
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作者 Yize Liang Hongya Wang +4 位作者 Xi Zhang Jianzhou Ai Zelin Ma Siddharth Ramachandran Jian Wang 《Advanced Photonics Nexus》 2023年第3期139-146,共8页
Recently,structured light beams have attracted substantial attention in many applications,including optical communications,imaging,optical tweezers,and quantum optics.We propose and experimentally demonstrate a reconf... Recently,structured light beams have attracted substantial attention in many applications,including optical communications,imaging,optical tweezers,and quantum optics.We propose and experimentally demonstrate a reconfigurable structured light beam generator in order to generate diverse structured light beams with adjustable beam types,beam orders,and beam sizes.By controlling the sizes of generated free-space structured light beams,free-space orbital angular momentum(OAM)beams and vector beams are coupled into an air-core fiber.To verify that our structured light generator enables generating structured light with high beam quality,polarization distributions and mode purity of generated OAM beams and vector beams in both free space and air-core fiber are characterized.Such a structured light generator may pave the way for future applications based on higher-order structured light beams. 展开更多
关键词 structured light beams orbital angular momentum vector beams air-core fiber
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Gradient coil design with enhanced shielding constraint for a cryogen-free superconducting MRI system 被引量:1
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作者 Yaohui Wang Weimin Wang +3 位作者 Hui Liu Shunzhong Chen Feng Liu Qiuliang Wang 《Magnetic Resonance Letters》 2024年第1期1-9,共9页
The relatively fragile low-temperature stability of cryogen-free superconducting magnetic resonance imaging(MRI)magnets requires the careful management of exogenous heat sources.A strongly shielded gradient magnetic f... The relatively fragile low-temperature stability of cryogen-free superconducting magnetic resonance imaging(MRI)magnets requires the careful management of exogenous heat sources.A strongly shielded gradient magnetic field is important for the optimal operation of cryogen-free MRI systems.In this study,we present an enhanced shielding method incorporating a regionalized stray field constraining strategy.By optimizing the constraint parameters,we could develop engineering-feasible gradient coil schemes without increasing system complexity but with the stray field intensity reduced by half.In real measurement in an integrated MRI system,the developed gradient assembly demonstrated good performance and supported to output images of excellent quality.Our findings suggested that the proposed method could potentially form a useful design paradigm for cryogen-free MRI magnets. 展开更多
关键词 MRI Gradient coil Superconducting magnet Cryogen-free Magnetic shielding
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Calculation and Design of Dry-type Air-core Reactor
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作者 Yan Li Zhenhai Zhang +2 位作者 Longnv Li Guoli Li Manhua Jiang 《Energy and Power Engineering》 2013年第4期1101-1104,共4页
Based on the method of compound and additional conditions under the conditions of the equal temperature rise and the equal potential drop (P.D.) of resistance, the application of design software of dry-type air-core r... Based on the method of compound and additional conditions under the conditions of the equal temperature rise and the equal potential drop (P.D.) of resistance, the application of design software of dry-type air-core reactor is introduced in this thesis. The analytical methods of the inductance are also given. This approach is proved entirely feasible in theory through the simplification with Bartky transformation, and is able to quickly and accurately calculate reactor inductance. This paper presents the analytical methods of the loss of dry-type air-core reactor as well. 展开更多
关键词 Dry-type air-core REACTOR Bartky TRANSFORMATION COMPOUND and Additional Conditions Software DESIGN
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Enhancing silicon spectral emission in LIBS using Tesla coil discharge
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作者 Shuang CUI Yang LIU +1 位作者 Anmin CHEN Mingxing JIN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2024年第12期132-139,共8页
Laser-induced breakdown spectroscopy(LIBS)is a powerful technique for elemental analysis,offering rapid analysis,minimal sample preparation,wide elemental coverage,and portability.To enhance the detection sensitivity ... Laser-induced breakdown spectroscopy(LIBS)is a powerful technique for elemental analysis,offering rapid analysis,minimal sample preparation,wide elemental coverage,and portability.To enhance the detection sensitivity of LIBS,increasing the spectral emission intensity is crucial.This paper explores the use of Tesla coil(TC)discharge as an alternative to spark discharge in silicon LIBS.The study examines the influence of TC discharge on both time-integrated and timeresolved spectra,with and without TC discharge;the corresponding electron temperature and density are obtained.The results show that TC discharge significantly amplifies the spectral intensity,improving signal sensitivity in LIBS analysis.Specifically,in the laser energy range from 7.4 to 24.0 mJ,TC discharge increased the average spectral line intensities of Si(II)385.60 nm and Si(I)390.55 nm by factors of 8.4 and 5.1,respectively.Additionally,the average electron temperature and density were enhanced by approximately 3.2%and 4.2%,respectively,under TC discharge.The advantages of TC discharge include higher energy deposition,extended discharge duration,reduced electrode erosion,and enhanced safety.This research contributes to advancing LIBS technology and expanding its applications in various fields. 展开更多
关键词 LIBS Tesla coil spectral enhancement SILICON
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A 3D surface coil with deep learning‐based noise reduction for parotid gland imaging at 7T 被引量:1
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作者 Sayim Gokyar Chenyang Zhao +4 位作者 Shajan Gunamony Liyang Tang Jonathan West Niels Kokot Danny J.J.Wang 《iRADIOLOGY》 2024年第4期368-376,共9页
Background:Background:Parotid gland neoplasms occur near the facial nerve.Hence,it is crucial to determine whether the malignant neoplasms involve the facial nerve and whether sacrifice of the nerve in surgery is nece... Background:Background:Parotid gland neoplasms occur near the facial nerve.Hence,it is crucial to determine whether the malignant neoplasms involve the facial nerve and whether sacrifice of the nerve in surgery is necessary.Furthermore,while 20%of all neoplasms are malignant,the most common benign neoplasm,pleomorphic adenoma,has a risk for malignant transformation,making early detection and treatment essential.7T magnetic resonance imaging offers increased signal-to-noise ratio(SNR)and sensitivity.Aim:In this work,we address imaging the parotid gland since it remains challenging at 7T because of its spatial location.Materials and Methods:Here,we present a novel three-dimensional surface coil(3D Coil)architecture that offers increased depth penetration and SNR compared to the single channel surface coil.We further developed a deep learning(DL)-based noise reduction method that receives inputs from three elements of the 3D Coil.Results:The 3D coil with DL-based denoising method offers twice the SNR compared to the single channel surface coil for parotid gland imaging at 7T.Discussion and Conclusion:The proposed 3D Coil and DL-based noise reduction method offers a promising way of achieving higher SNR for parotid salivary gland imaging at 7T,paving the road for clinical applications. 展开更多
关键词 3D RF coil deep learning DENOISING parotid gland ultrahigh‐field MRI
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Analytical computation of magnetic field in coil-dominated superconducting quadrupole magnets based on racetrack coils
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作者 Chuang Shen Ying-Shun Zhu Fu-San Chen 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第4期119-135,共17页
Currently,three types of superconducting quadrupole magnets are used in particle accelerators:cos 2θ,CCT,and serpentine.However,all three coil configurations have complex spatial geometries,which make magnet manufact... Currently,three types of superconducting quadrupole magnets are used in particle accelerators:cos 2θ,CCT,and serpentine.However,all three coil configurations have complex spatial geometries,which make magnet manufacturing and strain-sensitive superconductor applications difficult.Compared with the three existing quadrupole coils,the racetrack quadrupole coil has a simple shape and manufacturing process,but there have been few theoretical studies.In this paper,the two-dimensional and three-dimensional analytical expressions for the magnetic field in coil-dominated racetrack superconducting quadrupole magnets are presented.The analytical expressions of the field harmonics and gradient are fully resolved and depend only on the geometric parameters of the coil and current density.Then,a genetic algorithm is applied to obtain a solution for the coil geometry parameters with field harmonics on the order of 10^(-4).Finally,considering the practical engineering needs of the accelerator interaction region,electromagnetic design examples of racetrack quadrupole magnets with high gradients,large apertures,and small apertures are described,and the application prospects of racetrack quadrupole coils are analyzed. 展开更多
关键词 Superconducting quadrupole magnet Racetrack coil Multipole field Genetic algorithm Magnetic design
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Effect of coil and chamber structure on plasma radial uniformity in radio frequency inductively coupled plasma
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作者 赵洋 周晓华 +2 位作者 高升荣 宋莎莎 赵玉真 《Plasma Science and Technology》 SCIE EI CAS CSCD 2024年第7期58-66,共9页
Enhancing plasma uniformity can be achieved by modifying coil and chamber structures in radio frequency inductively coupled plasma(ICP)to meet the demand for large-area and uniformly distributed plasma in industrial m... Enhancing plasma uniformity can be achieved by modifying coil and chamber structures in radio frequency inductively coupled plasma(ICP)to meet the demand for large-area and uniformly distributed plasma in industrial manufacturing.This study utilized a two-dimensional self-consistent fluid model to investigate how different coil configurations and chamber aspect ratios affect the radial uniformity of plasma in radio frequency ICP.The findings indicate that optimizing the radial spacing of the coil enhances plasma uniformity but with a reduction in electron density.Furthermore,optimizing the coil within the ICP reactor,using the interior point method in the Interior Point Optimizer significantly enhances plasma uniformity,elevating it from 56%to 96%within the range of the model sizes.Additionally,when the chamber aspect ratio k changes from 2.8 to 4.7,the plasma distribution changes from a center-high to a saddleshaped distribution.Moreover,the plasma uniformity becomes worse.Finally,adjusting process parameters,such as increasing source power and gas pressure,can enhance plasma uniformity.These findings contribute to optimizing the etching process by improving plasma radial uniformity. 展开更多
关键词 inductively coupled plasma fluid simulation optimized coil chamber aspect ratio plasma uniformity
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Realization of an optimized cylindrical uniform magnetic field coil via flexible printed circuit technology
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作者 A-Hui Zhao Yong-Le Zhang +5 位作者 Yue-Yue Liang Yi Zhang Jun-Jun Zha Dao-Rong Rui Xiao-Qiang Zhang Kang Yang 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第12期242-248,共7页
The design and fabrication method of magnetic field coils with high uniformity is essential for atomic magnetometers.In this paper,a novel design strategy for cylindrical uniform coils is first proposed,which combines... The design and fabrication method of magnetic field coils with high uniformity is essential for atomic magnetometers.In this paper,a novel design strategy for cylindrical uniform coils is first proposed,which combines the target-field method(TFM)with an optimized slime mold algorithm(SMA)to determine optimal structure parameters.Then,the realization method for the designed cylindrical coil by using the flexible printed circuit(FPC)technology is presented.Compared with traditional fabrication methods,this method has advantages in excellent flexibility and bending property,making the coils easier to be arranged in limited space.Moreover,the manufacturing process of the FPC technology via a specific cylindrical uniform magnetic field coil is discussed in detail,and the successfully realized coil is well tested in a verification system.By comparing the uniformity performance of the experimental coil with the simulation one,the effectiveness of the FPC technology in producing cylindrical coils has been well validated. 展开更多
关键词 uniform magnetic field coil optimized target field method slime mold algorithm FPC technology
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Fuzzy Proportional Integral Derivative control of a voice coil actuator system for adaptive deformable mirrors
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作者 Ziqiang Cui Heng Zuo +4 位作者 Weikang Qiao Hao Li Fujia Du Yifan Wang Jinrui Guo 《Astronomical Techniques and Instruments》 CSCD 2024年第3期179-186,共8页
Research on adaptive deformable mirror technology for voice coil actuators(VCAs)is an important trend in the development of large ground-based telescopes.A voice coil adaptive deformable mirror contains a large number... Research on adaptive deformable mirror technology for voice coil actuators(VCAs)is an important trend in the development of large ground-based telescopes.A voice coil adaptive deformable mirror contains a large number of actuators,and there are problems with structural coupling and large temperature increases in their internal coils.Additionally,parameters of the traditional proportional integral derivative(PID)control cannot be adjusted in real-time to adapt to system changes.These problems can be addressed by introducing fuzzy control methods.A table lookup method is adopted to replace real-time calculations of the regular fuzzy controller during the control process,and a prototype platform has been established to verify the effectiveness and robustness of this process.Experimental tests compare the control performance of traditional and fuzzy proportional integral derivative(Fuzzy-PID)controllers,showing that,in system step response tests,the fuzzy control system reduces rise time by 20.25%,decreases overshoot by 78.24%,and shortens settling time by 67.59%.In disturbance rejection experiments,fuzzy control achieves a 46.09%reduction in the maximum deviation,indicating stronger robustness.The Fuzzy-PID controller,based on table lookup,outperforms the standard controller significantly,showing excellent potential for enhancing the dynamic performance and disturbance rejection capability of the voice coil motor actuator system. 展开更多
关键词 Adaptive optics Deformable mirror Voice coil actuator Fuzzy control
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Mathematical Modelling and Design of Helical Coil Heat Exchanger for Production of Hot Air for Fluidized Bed Dryer
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作者 Iniubong James Uwa Uwem Ekwere Inyang Innocent Oseribho Oboh 《Advances in Chemical Engineering and Science》 CAS 2024年第3期125-136,共12页
In global industrialization, efforts have been made to increase the rate of heat transfer in heat exchanger, minimizing the size of heat exchanger to reduce cost as well as increasing the effectiveness. Helical coil h... In global industrialization, efforts have been made to increase the rate of heat transfer in heat exchanger, minimizing the size of heat exchanger to reduce cost as well as increasing the effectiveness. Helical coil heat exchanger (HCHE) has been proven to be effective in improving heat transfer due to its large surface area. In this study, HCHE was designed to provide hot air needed for fluidized bed drying processes. The HCHE design model was fabricated and evaluated to study the efficiency of the hot air output for a laboratory fluidized bed dryer. The mathematical model for estimation of the final (output) temperature of air, Taf, passing through the HCHE was developed and validated experimentally. The drying of bitter kola particulates was carried out with a drying temperature of 50C 3C and a bed height-to-bed diameter ratio (H/D) of 1.5. The time taken to dry bitter kola particulates to 0.4% moisture content was 1 hour 45 minutes. Hence, HCHE is recommended for use in the production of hot for laboratory-scale fluidized bed dryers. 展开更多
关键词 Helical coil Heat Exchanger Fluidized Bed Dryer Heat Transfer Output Air Temperature
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Experimental and Numerical Investigation of the Performance of Turbulent Heat Transfer in Tubes with Different Cross-Sectioned Wire Coils
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作者 Ali Shokor Golam 《Frontiers in Heat and Mass Transfer》 EI 2024年第2期633-653,共21页
The thermal-hydraulic performance of plain tubes with and without wire coils in turbulent regimes is investigated experimentally and numerically.The effects of wire coil distribution(circular cross section)within the ... The thermal-hydraulic performance of plain tubes with and without wire coils in turbulent regimes is investigated experimentally and numerically.The effects of wire coil distribution(circular cross section)within the tube were explored experimentally,and water was employed as the working fluid.The numerical simulation was carried out using software programmer ANSYS Fluent 2019 R3 using the finite-volume approach.In the turbulent regime,six cross-sectionedwire coilswere analyzed,including:circular,rectangular,hexagonal,square,star shape,and triangle.The utilization of a tube with a wire coil has been shown to increase heat transfer rate and pump consumption.The results indicate a high level of concurrence,as the deviations are all below 8%.Compared with plain tube,the wire coils,according to the arrangement(TWD),gave the best PEC.The heat transfer enhancement ability of different cross sections follows the following order:StCS>RCS>HCS>SqCS>CCS>TCS.Also,the sequence of pump consumption for each cross section is as follows:RCS>StCS>SqCS>HCS>CCS>TCS. 展开更多
关键词 Wire coil performance evaluation criterion friction factor circular tube cross section
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Numerical Studies on Thermal and Hydrodynamic Characteristics of LNG in Helically Coiled Tube-in-Tube Heat Exchangers
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作者 Fayi Yan Xuejian Pei +1 位作者 He Lu Shuzhen Zong 《Frontiers in Heat and Mass Transfer》 EI 2024年第1期287-304,共18页
As compact and efficient heat exchange equipment,helically coiled tube-in-tube heat exchangers(HCTT heat exchangers)are widely used in many industrial processes.However,the thermal-hydraulic research of liquefied natu... As compact and efficient heat exchange equipment,helically coiled tube-in-tube heat exchangers(HCTT heat exchangers)are widely used in many industrial processes.However,the thermal-hydraulic research of liquefied natural gas(LNG)as the working fluid inHCTT heat exchangers is rarely reported.In this paper,the characteristics of HCTT heat exchangers,in which LNG flows in the inner tube and ethylene glycol-water solution flows in the outer tube,are studied by numerical simulations.The influences of heat transfer characteristics and pressure drops of the HCTT heat transfers are studied by changing the initial flow velocity,the helical middle diameter,and the helical pitch.The results indicate that different initial flow velocities in the inner tube and the outer tube of the HCTT heat exchanger have little influence on the secondary flow of the fluid in the helical tubes,and the overall flow characteristics tend to be stable.The smaller helical middle diameter of the HCTT heat exchanger leads to the shorter fluid flow length,the smaller resistance along the tubes and the increase of initial pressure under the condition of constant inlet velocity,which promotes the occurrence of secondary flow.The axial flow of fluid promotes the destruction of heat transfer boundary layer and gains strength of the turbulence and heat transfer efficiency.With the increase of the helical pitch of the HCTT heat exchanger,the turbulent intensity and the heat transfer efficiency are also increased.Moreover,the improvement of the flow state of the HCTT exchanger in a longer helical pitch also enhances the heat exchange efficiency. 展开更多
关键词 HCTT heat exchanger LNG helically coil heat transfer coefficient pressure drop
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Numerical Simulation of Liquified Natural Gas Boiling Heat Transfer Characteristics in Helically Coiled Tube-in-Tube Heat Exchangers
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作者 Fayi Yan He Lu Shijie Feng 《Frontiers in Heat and Mass Transfer》 EI 2024年第5期1493-1514,共22页
Helically coiled tube-in-tube(HCTT)heat exchangers are widely applied to the process technology because of their compactness and higher heat transfer efficiency.HCTT heat exchangers play an important role in liquified... Helically coiled tube-in-tube(HCTT)heat exchangers are widely applied to the process technology because of their compactness and higher heat transfer efficiency.HCTT heat exchangers play an important role in liquified natural gas(LNG)use and cold energy recovery.The heat transfer characteristics,pressure distribution,and degree of vaporization of LNG in HCTT heat exchangers are numerically investigated.By comparing the simulation results of the computational model with existing experimental results,the effectiveness of the computational model is verified.The numerical simulation results show the vapor volume fraction of the HCTT heat exchanger is related to the inlet Reynolds number,inner tube diameters,and helix diameter.The vapor volume fraction increases rapidly from the fourth to the seventh equal division points of the helix tube length.On condition that the inlet Reynolds number is greater than 33500,the pressure drop rate gradually increases.When the magnitude of the vapor volume fraction is below 0.2,the heat transfer coefficient increase rate is greater than that when the vapor volume fraction is above 0.2.The heat exchange efficiency of HCTT heat exchangers increases with the decrease of the ratio of helix diameter to inner tube diameter. 展开更多
关键词 Liquefied natural gas numerical simulation vapor-liquid two-phase flow heat transfer helically coiled tube-intube heat exchanger
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Application of the CIEDE2000 color difference formula in the color quality control of coil coatings
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作者 FAN Chun ZHANG Xiaota WANG Wenbin 《Baosteel Technical Research》 2024年第4期34-40,共7页
The application status of color difference formulas in coil coatings was investigated,with a focus on comparing the CIEDE2000 and HunterLab formulas.Experimental studies were conducted to evaluate the two formulas aga... The application status of color difference formulas in coil coatings was investigated,with a focus on comparing the CIEDE2000 and HunterLab formulas.Experimental studies were conducted to evaluate the two formulas against the results of visual inspections.Findings indicate that the CIEDE2000 formula outperforms the HunterLab formula for most color variations.Therefore,the CIEDE2000 formula is suggested as an enhanced method for the quality control of color differences in coil coatings. 展开更多
关键词 color difference measurement CIEDE2000 formula coil coatings
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基于电磁感应的油液铁磁性磨粒动态检测仿真研究
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作者 张浩 魏海军 +1 位作者 梁寒钰 朱超 《传感器与微系统》 北大核心 2025年第3期42-45,共4页
建立了基于电磁感应原理双螺管线圈的数学物理模型,通过仿真分析得到了线圈结构参数最优解。针对静态仿真模型与实际油液磨粒状态不符及精确较差问题,本文引入了斯托克斯颗粒自由沉淀公式,模拟磨粒在润滑油中的自由沉淀过程,分析了线圈... 建立了基于电磁感应原理双螺管线圈的数学物理模型,通过仿真分析得到了线圈结构参数最优解。针对静态仿真模型与实际油液磨粒状态不符及精确较差问题,本文引入了斯托克斯颗粒自由沉淀公式,模拟磨粒在润滑油中的自由沉淀过程,分析了线圈输出信号与运动磨粒相关特征的关系,得到了更接近实际的状态的仿真结果。验证结果表明:传感器的检测精度可以控制在±7.6%以内,并且可以识别不同尺寸的磨粒。 展开更多
关键词 油液检测 磨粒检测 电磁感应 线圈仿真
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自动引线系统中旋转偏心检测与补偿方法
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作者 王跃宗 曲道多 王盛逸 《北京工业大学学报》 CAS 北大核心 2025年第1期1-12,共12页
在空心杯转子线圈的自动引线微操作系统中,线圈的几何中心很难与旋转台的回转中心重合,因此在旋转过程中产生偏心现象,进而导致线圈引线失败。为此,提出了一种检测和补偿线圈偏差的方法。从分析线圈偏心源出发,建立偏心数学模型,设计了... 在空心杯转子线圈的自动引线微操作系统中,线圈的几何中心很难与旋转台的回转中心重合,因此在旋转过程中产生偏心现象,进而导致线圈引线失败。为此,提出了一种检测和补偿线圈偏差的方法。从分析线圈偏心源出发,建立偏心数学模型,设计了一种偏心模型与图像特征提取算法结合的偏差测量方法,并提出基于自动控制与补偿模型的校正方法。通过实验验证了模型的精确性以及偏心补偿的有效性,基于均方根误差的评价,模型对于偏差预测以及特征提取算法均具有较高的精度,补偿后的最大残余误差小于4μm,平均补偿幅度约为98.6%,引线实验展示了所提方法的优良性能。提出的偏心检测补偿方法具有精度高、复杂度低、效率高、实时性,以及嵌入式等优点,且在微操作以及微装配领域具有更合适、更广泛的应用。 展开更多
关键词 空心杯转子线圈 旋转偏心 模型 特征提取 微操作 微装配
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