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Effect of ambient wind on pressure wave generated by high-speed train entering a tunnel 被引量:7
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作者 ZHOU Xi-sai LIU Tang-hong +2 位作者 CHEN Zheng-wei ZOU Xiang LIU Dong-run 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第6期1465-1475,共11页
Using three-dimensional, unsteady N-S equations and k-ε turbulence model, the effect of ambient wind on the pressure wave generated by a high-speed train entering a tunnel was studied via numerical simulation. Pressu... Using three-dimensional, unsteady N-S equations and k-ε turbulence model, the effect of ambient wind on the pressure wave generated by a high-speed train entering a tunnel was studied via numerical simulation. Pressure changes of the train surface and tunnel wall were obtained as well as the flow field around the train. Results show that when the train runs downwind, the pressure change is smaller than that generated when there is no wind. When the train runs upwind, the pressure change is larger. The pressure change is more sensitive in the upwind condition than in the downwind condition. Compared with no wind condition, when the wind velocity is 10 m/s and 30 m/s, the pressure amplitude on the train head is reduced by 2.8% and 10.5%, respectively. The wall pressure amplitude at 400 m away from the tunnel entrance is reduced by 2.4% and 13.5%, respectively. When the wind velocity is-10 m/s and-30 m/s, the pressure amplitude on the train head increases by 3.0% and 17.7%, respectively. The wall pressure amplitude at 400 m away from the tunnel entrance increases by 3.6% and 18.6%, respectively. The pressure waveform slightly changes under ambient wind due to the influence of ambient wind on the pressure wave propagation speed. 展开更多
关键词 HIGH-SPEED TRAIN ambient WIND pressure wave TUNNEL
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Preparation and Characterization of Silica Aerogels Derived from Ambient Pressure 被引量:4
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作者 Jun SHEN Zhihua ZHANG Guangming WU Bin ZHOU Xingyuan NI Jue WANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第6期798-802,共5页
Silica aerogels were prepared by sol-gel technique from industrial silicon derivatives (polyethoxydisiloxanes, E40), followed by silylation and drying under ambient pressure. The specific surface area, pore size dis... Silica aerogels were prepared by sol-gel technique from industrial silicon derivatives (polyethoxydisiloxanes, E40), followed by silylation and drying under ambient pressure. The specific surface area, pore size distribution and thermal conductivity of the silica aerogels were investigated and the results showed that the diameter of the silica particles is about 6 nm and the average pore size of the silica aerogels is 14.7 nm. The specific surface area of which is about 1000 m^2.g^-1 and the thermal conductivity is about 0.014 wm^-l.K^-1 at room temperature and pressure of 1.01×10^5 Pa. The Si-CH3 groups were also detected on the internal surface of the silica aerogels, which show hydrophobic. Silica aerogels derived by this technique is low cost and have wide applications. 展开更多
关键词 Silica aerogel SOL-GEL NANO-STRUCTURE ambient pressure drying
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Effects of ambient pressure on the severity of blast injury in rats 被引量:1
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作者 杨志焕 尹友国 +3 位作者 李晓炎 翁格文 刘大维 赵敏 《Journal of Medical Colleges of PLA(China)》 CAS 1993年第4期326-330,共5页
The effects of different ambient pressures of 53.99,61.33 and 96.60 kPa on theseverity of blast injury were observed in rats.It was found that when the incident shock wavewas 190.40 kPa in its peak pressure and 10 ms ... The effects of different ambient pressures of 53.99,61.33 and 96.60 kPa on theseverity of blast injury were observed in rats.It was found that when the incident shock wavewas 190.40 kPa in its peak pressure and 10 ms in its duration, both the mortality and the severityof lung injury were progressively increased along with the decrease of the ambient pressure.Themortality rate of the rats in the 6th hour after exposure was 0%,25% and 36.8% and the hem-orrhagic area on the lungs was 63.75+69.01,313.50+357.25 and 653.21+652.25 squaremilimeters when the ambient pressure was 96.60,61.33 and 53.99 kPa respectively.In addi-tion, the lung/body index was 0.93+0.21%,1.31+0.65% and 1.50+0.77% respectively.Itis believed that the decrease of the ambient pressure might decrease the tolerance of the rat to theimpact of blast waves to result in higher mortality and more extensive hemorrhage on the lungs. 展开更多
关键词 BLAST INJURY ambient pressure MORTALITY INJURY SEVERITY RATS
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The relation between composition in laser absorption region and ambient pressure 被引量:1
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作者 杨波 朱金荣 +3 位作者 杨雁南 沈中华 陆建 倪晓武 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第1期199-204,共6页
In this paper, the compositions in a laser absorption region can be determined from the experiment of laser impulse coupling. When the ambient pressure varies from 9325 to 33325Pa, the compositions are vapour and plas... In this paper, the compositions in a laser absorption region can be determined from the experiment of laser impulse coupling. When the ambient pressure varies from 9325 to 33325Pa, the compositions are vapour and plasma; while from 35325 to 101325Pa, they are ambient air and plasma. By analysing the relation between the degree of compression and the ambient pressure, the compositions can be determined and the variation of plasma can be explained. 展开更多
关键词 laser technology laser absorption region ambient pressure impulse coupling coefficient
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Novel-structured Mo-Cu-Fe-O composite for catalytic air oxidation of dye-containing wastewater under ambient temperature and pressure 被引量:3
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作者 Yin Xu Henan Shao +1 位作者 Fei Ge Yun Liu 《Chinese Journal of Catalysis》 CSCD 北大核心 2017年第10期1719-1725,共7页
A novel‐structured Mo‐Cu‐Fe‐O composite was successfully prepared by co‐precipitation and impregnation method.The properties of the as‐prepared samples were determined using X‐ray diffraction,temperature‐progr... A novel‐structured Mo‐Cu‐Fe‐O composite was successfully prepared by co‐precipitation and impregnation method.The properties of the as‐prepared samples were determined using X‐ray diffraction,temperature‐programmed reduction by H2,cyclic voltammetry,and temperature‐programmed desorption by O2.The results showed that Mo6+diffused into the Cu‐Fe‐O crystal lattice and then formed a new crystalline phase of CuMoO4.The Mo‐Cu‐Fe‐O catalyst had redox properties,and its surface contained active sites for oxygen adsorption.In addition,the catalytic activity of the Mo‐Cu‐Fe‐O composite was evaluated by the degradation of Cationic Red GTL,Crystal Violet,and Acid Red in catalytic wet air oxidation(CWAO)at ambient temperature and pressure.The Mo‐Cu‐Fe‐O catalyst showed excellent activity at basic conditions for the degradation of Cationic Red GTL.High removal efficiencies of91.5%and92.8%were achieved for Cationic Red GTL and Crystal Violet,respectively,in wastewater,and the efficiency remained high after seven cycles.However,almost no degradation of Acid Red occurred in the CWAO process.Furthermore,hydroxyl radicals were formed in the CWAO process,which induced the decomposition of the two cationic dyes in wastewater,and the toxicity of their effluents was decreased after degradation.The results indicate that the Mo‐Cu‐Fe‐O composite shows excellent catalytic activity for the treatment of wastewater contaminated with cationic dyes. 展开更多
关键词 Mo‐Cu‐Fe‐O catalyst ambient temperature and pressure Dye wastewater Hydroxyl radical Oxidative degradation
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Laser-Induced Graphite Plasma Kinetic Spectroscopy under Different Ambient Pressures 被引量:2
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作者 K. Chaudhary S. Rosalan +5 位作者 M. S. Aziz M. Bohadoran J Ali P. P. Yupapin N. Bidin Saktioto 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第4期33-37,共5页
The laser induced plasma dynamics of graphite material are investigated by optical emission spectroscopy. Abla- tion and excitation of the graphite material is performed by using an 1064nm Nd:YAG laser in different a... The laser induced plasma dynamics of graphite material are investigated by optical emission spectroscopy. Abla- tion and excitation of the graphite material is performed by using an 1064nm Nd:YAG laser in different ambient pressures. Characteristics of graphite spectra as line intensity variations and signal-to-noise ratio are presented with a main focus on the influence of the ambient pressure on the interaction of laser-induced graphite plasma with an ambient environment. Atomic emission lines are utilized to investigate the dynamical behavior of plasma, such as the excitation temperature and electron density, to describe emission differences under different ambient conditions. The excitation temperature and plasma electron density are the primary factors which contribute to the differences among the atomic carbon emission at different ambient pressures. Reactions between the plasma species and ambient gas, and the total molecular number are the main factors influencing molecular carbon emis- sion. The influence of laser energy on the plasma interaction with environment is also investigated to demonstrate the dynamical behavior of carbon species so that it can be utilized to optimize plasma fluctuations. 展开更多
关键词 Laser-Induced Graphite Plasma Kinetic Spectroscopy under Different ambient pressures CL
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Near Ambient Pressure Adsorption of Nickel Carbonyl Contaminated CO on Cu(111) Surface
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作者 Rui Wang Ding Ding +1 位作者 Wei Wei Yi Cui 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第6期753-759,I0003,共8页
Formation of volatile nickel carbonyls with CO in catalytic reaction is one of the mechanisms of catalyst deactivation. CO is one of the most popular probe molecules to study the surface properties in model catalysis.... Formation of volatile nickel carbonyls with CO in catalytic reaction is one of the mechanisms of catalyst deactivation. CO is one of the most popular probe molecules to study the surface properties in model catalysis. Under ultra-high vacuum (UHV) conditions, the problem of nickel carbonyl impurity almost does not exist in the case that a high purity of CO is used directly. While in the near ambient pressure (NAP) range, nickel carbonyl is easily found on the surface by passing through the Ni containing tubes. Here, the NAP techniques such as NAP-X-ray photoelectron spectroscopy and NAP-scanning tunneling microscopy are used to study the adsorption of nickel carbonyl contaminated CO gas on Cu(111) surface in UHV and NAP conditions. By controlling the pressure of contaminated CO, the Ni-Cu bimetallic catalyst can form on Cu(111) surface. Furthermore, we investigate the process of CO adsorption and dissociation on the formed Ni-Cu bi-metal surface, and several high-pressure phases of CO structures are reported. This work contributes to understanding the interaction of nickel carbonyl with Cu(111) at room temperature, and reminds the consideration of CO molecules contaminated by nickel carbonyl especially in the NAP range study. 展开更多
关键词 Nickel carbonyl Carbon monoxide CU(111) Near ambient pressure X-ray photoelectron spectroscopy Near ambient pressure scanning tunneling microscopy
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Influence of low ambient pressure on the performance of a high-energy array surface arc plasma actuator
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作者 Bing-Liang Tang Shan-Guang Guo +1 位作者 Hua Liang Meng-Xiao Tang 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第10期380-387,共8页
In order to solve the problem of single arc plasma actuator's failure to suppress the boundary layer separation, the effectiveness of the array surface arc plasma actuator to enhance the excitation intensity is ve... In order to solve the problem of single arc plasma actuator's failure to suppress the boundary layer separation, the effectiveness of the array surface arc plasma actuator to enhance the excitation intensity is verified by experiment. In this study, an electrical parameter measurement system and high-speed schlieren technology were adopted to delve into the electrical, flow field, and excitation characteristics of the high-energy array surface arc plasma actuator under low ambient pressure. The high-energy array surface arc discharge released considerable heat rapidly;as a result, two characteristic structures were generated, i.e., the precursor shock wave and thermal deposition area. The duration increased with the increase in environmental pressure. The lower the pressure, the wider the thermal deposition area's influence range. The precursor shock wave exhibited a higher propagation speed at the initial phase of discharge;it tended to decay over time and finally remained at 340 m/s. The lower the environmental pressure, the higher the speed would be at the initial phase. High-energy array surface arc plasma actuator can be employed to achieve effective high-speed aircraft flow control. 展开更多
关键词 low ambient pressure HIGH-ENERGY ARRAY surface arc plasma actuator
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Selective Laser Melting under Variable Ambient Pressure: A Mesoscopic Model and Transport Phenomena
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作者 Renzhi Hu Manlelan Luo +10 位作者 Anguo Huang Jiamin Wu Qingsong Wei Shifeng Wen Lichao Zhang Yusheng Shi Dmitry Trushnikov V.Ya.Belenkiy I.Yu.Letyagin K.P.Karunakaran Shengyong Pang 《Engineering》 SCIE EI 2021年第8期1157-1164,共8页
Recent reports on the selective laser melting(SLM)process under a vacuum or low ambient pressure have shown fewer defects and better surface quality of the as-printed products.Although the physical process of SLM in a... Recent reports on the selective laser melting(SLM)process under a vacuum or low ambient pressure have shown fewer defects and better surface quality of the as-printed products.Although the physical process of SLM in a vacuum has been investigated by high-speed imaging,the underlying mechanisms governing the heat transfer and molten flow are still not well understood.Herein,we first developed a mesoscopic model of SLM under variable ambient pressure based on our recent laser-welding studies.We simulated the transport phenomena of SLM 316L stainless steel powders under atmospheric and 100 Pa ambient pressure.For typical process parameters(laser power:200W;scanning speed:2m∙s^(-1);powder diameter:27 lm),the average surface temperature of the cavity approached 2800 K under atmospheric pressure,while it came close to 2300 K under 100 Pa pressure.More vigorous fluid flow(average speed:4m∙s^(-1))was observed under 100 Pa ambient pressure,because the pressure difference between the evaporation-induced surface pressure and the ambient pressure was relatively larger and drives the flow under lower pressure.It was also shown that there are periodical ripple flows(period:14ls)affecting the surface roughness of the as-printed track.Moreover,the molten flow was shown to be laminar because the Reynolds number is less than 400 and is far below the critical value of turbulence;thus,the viscous dissipation is significant.It was demonstrated that under a vacuum or lower ambient pressure,the ripple flow can be dissipated more easily by the viscous effect because the trajectory length of the ripple is longer;thus,the surface quality of the tracks is improved.To summarize,our model elucidates the physical mechanisms of the interesting transport phenomena that have been observed in independent experimental studies of the SLM process under variable ambient pressure,which could be a powerful tool for optimizing the SLM process in the future. 展开更多
关键词 Selective laser melting Mesoscopic model ambient pressure Transport phenomena
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Fabrication of super-elastic graphene aerogels by ambient pressure drying and application to adsorption of oils
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作者 Xinxin Zhao Wenlong Xu +7 位作者 Shuang Chen Huie Liu Xiaofei Yan Yan Bao Zexin Liu Fan Yang Huan Zhang Ping Yu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2022年第7期89-97,共9页
Three-dimensional graphene-based aerogels have promising applications in oil adsorption and environmental restoration.However,current research of graphene-based aerogels is often hindered by high preparation cost,poor... Three-dimensional graphene-based aerogels have promising applications in oil adsorption and environmental restoration.However,current research of graphene-based aerogels is often hindered by high preparation cost,poor mechanical properties and low recycling efficiency.Here,superelastic graphene aerogel(SGA)was prepared through one-step freezing and twice hydrothermal reduction followed by drying under ambient pressure.The simple atmospheric drying provides a possibility for large-scale preparation of high performance graphene-based aerogels.The prepared SGA not only has the ability of highly repeatable compression rebound,but also exhibits excellent oil adsorption performance.And the overall performance of SGA is better than most of graphenebased aerogels prepared by freeze drying.After the SGA was cyclically compressed with 70%strain for 300 times,it can return to the original shape and height substantially.SGA retained about 90%of the initial adsorption capacity after 50 cycles of adsorption and compression regeneration for cyclohexane. 展开更多
关键词 Graphene aerogels Super-elastic ambient pressure drying Adsorption and regeneration of oil
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Spray Characteristics of Air-Assisted Injector Under Different Ambient Pressures
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作者 Hao Wu Fujun Zhang Zhenyu Zhang 《Journal of Beijing Institute of Technology》 EI CAS 2020年第3期317-325,共9页
Spray atomization of liquid fuel plays an important role in droplet evaporation,combustible mixture formation and subsequent combustion process.Well-atomized liquid spray contributes to high fuel efficiency and low po... Spray atomization of liquid fuel plays an important role in droplet evaporation,combustible mixture formation and subsequent combustion process.Well-atomized liquid spray contributes to high fuel efficiency and low pollutant emissions.Gasoline direct injection(GDI)has been recognized as one of the most effective ways to improve fuel atomization.As a special direct injection method,the air-assisted direct injection utilizes high-speed flow of high-pressure air at the injector exit to assist liquid fuel injection and promote spray atomization at a low injection pressure.This injection method has excellent application potential and advantages for high performance and lightweight engines.In this study,the hollow cone spray emerging from an air-assisted injector was studied in a constant volume chamber with the ambient pressures ranging from 5 kPa to 300 kPa.External macro characteristics of spray were obtained using high speed backlit imaging.Phase Doppler particle analyzer(PDPA)was utilized to study the microcosmic spray characteristics.The results show that under the flash boiling condition,the spray will generate a strong flash boiling point which causes the cone shape spray to expand both inwards and outwards.The axisymmetric inward expansion would converge together and form a lathy aggregation area below the nozzle and the axisymmetric outward expansion greatly increases the spray width.The sauter mean diameter(SMD)of flash boiling condition can be reduced to 5μm compared to the level close to 10μm in the non-flash boiling condition. 展开更多
关键词 ambient pressure air-assisted injector spray characteristics flash boiling phase Doppler particle analyzer(PDPA)
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Optimized Synthesis of Carbon Aerogels via Ambient Pressure Drying Process as Electrode for Supercapacitors
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作者 袁磊 CHANG Lijuan +5 位作者 FU Zhibing YANG Xi JIAO Xingli TANG Yongjian LIU Xichuan 王朝阳 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2015年第6期1325-1331,共7页
Carbon aerogels were synthesized via ambient pressure drying process using resorcinolformaldehyde as precursor and P123 to strengthen their skeletons. CO2 activation technology was implemented to improve surface areas... Carbon aerogels were synthesized via ambient pressure drying process using resorcinolformaldehyde as precursor and P123 to strengthen their skeletons. CO2 activation technology was implemented to improve surface areas and adjust pore size distribution. The synthesis process was optimized, and the morphology, structure, adsorption properties and electrochemical behavior of different samples were characterized. The CO2-activated samples achieved a high specific capacitance of 129.2 F/g in 6 M KOH electrolytes at the current density of 1 m A/cm^2 within the voltage range of 0-0.8 V. The optimized activation temperature and duration were determined to be 950 ℃ and 4 h, respectively. 展开更多
关键词 supercapacitors carbon aerogels ambient pressure drying process activation
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PRESSURE COMPENSATION METHOD OF UNDERWATER HYDRAULIC SYSTEM WITH HYDRAULIC POWER UNIT BEING UNDER ATMOSPHERIC CIRCUMSTANCE AND PRESSURE COMPENSATED VALVE 被引量:2
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作者 Wang Qingfeng Li Yanmin Zhong Tianyu Xu Guohua 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2005年第3期419-423,共5页
Based on the analysis of the-state-of-the-art of pressure compensation of underwater hydraulic systems (UHSs), a new method of pressure compensation of UHSs, whose hydraulic power unit is in the atmospheric circumst... Based on the analysis of the-state-of-the-art of pressure compensation of underwater hydraulic systems (UHSs), a new method of pressure compensation of UHSs, whose hydraulic power unit is in the atmospheric circumstance, is proposed. And a pilot-operated relief valve with pressure compensation is realized. The pressure compensation precision is guaranteed by direct detection. Its dynamic performance and stability are improved by a dynamic feedback. Theoretical study, simulation and experiment show that the pilot-operated relief valve with pressure compensation has a fine property of tracking underwater ambient pressure and meet the requirement of underwater ambient pressure compensation. 展开更多
关键词 Underwater hydraulic system (UHS) pressure compensation Underwater ambient pressure (UAP) pressure relief valve
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Self-absorption effects of laser-induced breakdown spectroscopy under different gases and gas pressures 被引量:1
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作者 王崧宁 张殿鑫 +6 位作者 陈楠 何亚雄 张红 柯川 许涛 陈永亮 赵勇 《Plasma Science and Technology》 SCIE EI CAS CSCD 2023年第2期155-162,共8页
The self-absorption effect is one of the main factors affecting the quantitative analysis accuracy of laser-induced breakdown spectroscopy.In this paper,the self-absorption effects of laserinduced 7050 Al alloy plasma... The self-absorption effect is one of the main factors affecting the quantitative analysis accuracy of laser-induced breakdown spectroscopy.In this paper,the self-absorption effects of laserinduced 7050 Al alloy plasma under different pressures in air,Ar,and N2have been studied.Compared with air and N2,Ar significantly enhances the spectral signal.Furthermore,the spectral self-absorption coefficient is calculated to quantify the degree of self-absorption,and the influences of gas species and gas pressure on self-absorption are analyzed.In addition,it is found that the spectral intensity fluctuates with the change of pressure of three gases.It can also be seen that the fluctuation of spectral intensity with pressure is eliminated after correcting,which indicates that the self-absorption leads to the fluctuation of spectral intensity under different pressures.The analysis shows that the evolution of optical thin spectral lines with pressure in different gases is mainly determined by the gas properties and the competition between plasma confinement and Rayleigh–Taylor instability. 展开更多
关键词 self-absorption coefficient ambient gases gas pressure laser-induced breakdown spectroscopy
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Surface Breakdown of Printed Circuit Board under Magnetic Field with Reduced Pressure
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作者 杜伯学 朱晓辉 +1 位作者 高宇 卢欣 《Transactions of Tianjin University》 EI CAS 2010年第1期6-10,共5页
Epoxy resin laminate onto which a pair of copper foil was printed was employed as test samples.The samples were placed in an artificial atmospheric chamber, which was vacuumed by a rotary pump from 100 kPa to 5 kPa.Th... Epoxy resin laminate onto which a pair of copper foil was printed was employed as test samples.The samples were placed in an artificial atmospheric chamber, which was vacuumed by a rotary pump from 100 kPa to 5 kPa.The magnetic field was produced by permanent magnets that were assembled to make E×B drift away from, into and parallel to the sample surface, respectively.Magnetic flux density was adjusted at 120 mT, 180 mT and 240 mT respectively.By applying a negative bias voltage between the electrodes, the ... 展开更多
关键词 printed circuit board surface breakdown magnetic field ambient pressure
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Association between Low Ambient Temperature and the Severity of Acute Ischemic Stroke
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作者 Xinyi Huang Liming Shu +5 位作者 Su Xiao Qiuhong Jiang Shiliang Yang Hualiang Liang Hua Hong Liang Luo 《Journal of Clinical and Nursing Research》 2024年第5期83-94,共12页
Objective:To explore the relationships among ambient temperature,ischemic stroke severity,and blood pressure.Methods:Meteorological data(2005–2015)were collected from the Guangzhou Meteorological Data Service.Ischemi... Objective:To explore the relationships among ambient temperature,ischemic stroke severity,and blood pressure.Methods:Meteorological data(2005–2015)were collected from the Guangzhou Meteorological Data Service.Ischemic stroke patients from the Department of Neurology of the First Affiliated Hospital,Sun Yat-sen University were retrospectively evaluated,each winter from 2005 to 2015.Patient demographics,baseline measurements,and National Institute of Health Stroke Scale(NIHSS)score were evaluated.Results:Three hundred sixty-two patients were included.The median latency from symptom onset to admission was 2 d(IQR:1–3 d).During recruitment,the highest and lowest temperatures were 39℃and 1.3℃,respectively.Hypertension was the most common comorbidity(75.1%).NIHSS scores at admission and discharge were higher in the cold-exposed group than in the controls regardless of the average temperature at admission.In addition,systolic and diastolic blood pressure values at admission were higher in the cold-exposed group than in the controls.When stratified by hypertensive status,the average and minimum temperatures at admission were negatively associated with systolic and diastolic blood pressure values in hypertensive patients.Reductions in the average and minimum temperatures at symptom onset were associated with more severe stroke.Conclusion:Ischemic stroke patients with symptom onset in winter had higher systolic blood pressure values and more serious neurologic deficits upon admission. 展开更多
关键词 Low ambient temperature STROKE Blood pressure SEVERITY
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Determination of dynamic modeⅠfracture toughness of rock at ambient high temperatures using notched semi-circular bend method 被引量:3
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作者 You WU Tu-bing YIN +3 位作者 Xi-ling LIU Xiao-song TAN Zheng YANG Qiang LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第9期3036-3050,共15页
To investigate the influence of loading rate and high temperature on the dynamic fracture toughness of rock,dynamic fracture tests were carried out on notched semi-circular bend specimens under four temperature condit... To investigate the influence of loading rate and high temperature on the dynamic fracture toughness of rock,dynamic fracture tests were carried out on notched semi-circular bend specimens under four temperature conditions based on the split Hopkinson pressure bar system.Experimental and analytical methods were applied to investigating the effect of temperature gradient on the stress waves.A high-speed camera was used to check the fracture characteristics of the specimens.The results demonstrate that the temperature gradient on the bars will not significantly distort the shape of the stress wave.The dynamic force balance is achieved even when the specimens are at a temperature of 400°C.The dynamic fracture toughness linearly develops with the increase of loading rate within the temperature range of 25-400°C,and high temperature has a strengthening effect on the dynamic fracture toughness. 展开更多
关键词 ambient high-temperature condition dynamic fracture toughness notched semi-circular bend specimen split Hopkinson pressure bar Fujian granite
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地下进风系统对间接空冷塔性能的影响
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作者 张学镭 贾程广 +3 位作者 梁建雄 王普 赵哲 贾雅永 《中国电机工程学报》 EI CSCD 北大核心 2024年第10期3987-3997,I0020,共12页
削弱环境风对间接空冷塔散热器性能的不利影响,有助于其安全和经济运行。该文提出一种新型间接空冷塔地下进风系统,将空冷散热器整体布置在低于地表平面的地下空间内。建立配置地下进风系统的间接空冷塔数值计算模型,得到间接空冷塔的... 削弱环境风对间接空冷塔散热器性能的不利影响,有助于其安全和经济运行。该文提出一种新型间接空冷塔地下进风系统,将空冷散热器整体布置在低于地表平面的地下空间内。建立配置地下进风系统的间接空冷塔数值计算模型,得到间接空冷塔的空气流场特性和热力特性。基于凝汽器和空冷散热器协同调节、相互制约的作用机制,采用机理模型和数值模拟相结合的方法建立排汽压力的计算模型,在此基础上计算地下进风系统的热经济性。结果表明,在4 m/s风速下,虽然迎风扇段空气流量减少14.5%,热负荷降低12.4%,但侧风扇段和背风扇段冷却空气量分别增加46.0%、8.0%,热负荷分别提升30.9%、3.2%。在高风速工况下,地下进风系统削弱环境风对排汽压力的影响,具有抵御自然大风的能力。某660 MW间接空冷机组,采用地下进风系统全年可节约标煤9554.3 t,节省燃料费1094.0万元。 展开更多
关键词 地下进风系统 间接空冷塔 数值模拟 环境风 排汽压力
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喷油压力对柴油喷雾两阶段着火的影响
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作者 黎一锴 娄悦 +2 位作者 杨子明 王东方 孙成瀚 《内燃机学报》 EI CAS CSCD 北大核心 2024年第3期193-202,共10页
基于流动式定容燃烧试验装置以及CONVERGE三维仿真模型,研究了冷起动工况对应缸内上止点环境下喷射压力对柴油自由射流的喷雾宏观特性及两阶段着火转化过程的影响.结果表明:在冷起动工况条件下,低喷射压力(20 MPa)条件下的液相贯穿距略... 基于流动式定容燃烧试验装置以及CONVERGE三维仿真模型,研究了冷起动工况对应缸内上止点环境下喷射压力对柴油自由射流的喷雾宏观特性及两阶段着火转化过程的影响.结果表明:在冷起动工况条件下,低喷射压力(20 MPa)条件下的液相贯穿距略大;随着喷射压力的增加,气相喷雾贯穿距增大,气/液相喷雾锥角增大,表明在喷雾体头部区域形成较大的混合气区域;不同喷射压力条件下,喷雾内的局部温度及局部当量比分布规律相似;但随着喷射压力的增大,高温低当量比区域面积增大,促进了低温反应的进行.另一方面,较高的喷射压力使得喷雾流速增大,抑制了喷雾低温核心区域CH_(2)O和热量的累积,进而恶化了低温反应阶段向高温反应阶段的过渡,使高温着火准备过程延长.最终导致高温着火滞燃期随喷射压力升高呈现先减小后增大的变化趋势. 展开更多
关键词 柴油喷雾 低温环境 喷射压力 滞燃期
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环境压力对隧道竖井排烟影响的数值模拟研究
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作者 赵江平 鲍旺旺 《消防科学与技术》 CAS 北大核心 2024年第6期813-819,共7页
通过FDS数值模拟,研究环境压力对隧道火灾的烟气蔓延规律、烟气分层特性和竖井排烟效果的影响。研究表明:低压环境下隧道顶棚的烟气具有更高的温度,火源-竖井和竖井下游区域顶棚温度的纵向衰减曲线均符合指数分布,温度衰减系数随着环境... 通过FDS数值模拟,研究环境压力对隧道火灾的烟气蔓延规律、烟气分层特性和竖井排烟效果的影响。研究表明:低压环境下隧道顶棚的烟气具有更高的温度,火源-竖井和竖井下游区域顶棚温度的纵向衰减曲线均符合指数分布,温度衰减系数随着环境压力的增加而减小;火源-竖井区域的烟气运动由热浮力主导,层化曲线变化趋势不明显,竖井下游区域层化曲线受环境压力的影响较大,随着环境压力的降低,层化曲线出现顺时针旋转的趋势,层化强度降低,烟气层稳定性下降;低压环境中竖井的排烟效果要优于常压状态下的竖井,且竖井底部产生吸穿现象的临界高度也有所增加。因此,与一般海拔地区相比,海拔较高地区的隧道发生火灾时,较高竖井的排烟效果更好,吸穿临界高度更高,对下游烟气层稳定性的影响更小,更利于疏散排烟。 展开更多
关键词 隧道火灾 竖井排烟 环境压力 烟气分层 数值模拟
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