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Efficient and Stable Perovskite Solar Cells and Modules Enabled by Tailoring Additive Distribution According to the Film Growth Dynamics
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作者 Mengen Ma Cuiling Zhang +5 位作者 Yujiao Ma Weile Li Yao Wang Shaohang Wu Chong Liu Yaohua Mai 《Nano-Micro Letters》 SCIE EI CAS 2025年第2期387-400,共14页
Gas quenching and vacuum quenching process are widely applied to accelerate solvent volatilization to induce nucleation of perovskites in blade-coating method.In this work,we found these two pre-crystallization proces... Gas quenching and vacuum quenching process are widely applied to accelerate solvent volatilization to induce nucleation of perovskites in blade-coating method.In this work,we found these two pre-crystallization processes lead to different order of crystallization dynamics within the perovskite thin film,resulting in the differences of additive distribution.We then tailor-designed an additive molecule named 1,3-bis(4-methoxyphenyl)thiourea to obtain films with fewer defects and holes at the buried interface,and prepared perovskite solar cells with a certified efficiency of 23.75%.Furthermore,this work also demonstrates an efficiency of 20.18%for the large-area perovskite solar module(PSM)with an aperture area of 60.84 cm^(2).The PSM possesses remarkable continuous operation stability for maximum power point tracking of T_(90)>1000 h in ambient air. 展开更多
关键词 Gas quenching Additive distribution Buried passivation Blade coating Crystallization dynamics
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Efficient and Stable Photoassisted Lithium‑Ion Battery Enabled by Photocathode with Synergistically Boosted Carriers Dynamics
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作者 Zelin Ma Shiyao Wang +13 位作者 Zhuangzhuang Ma Juan Li Luomeng Zhao Zhihuan Li Shiyuan Wang Yazhou Shuang Jiulong Wang Fang Wang Weiwei Xia Jie Jian Yibo He Junjie Wang Pengfei Guo Hongqiang Wang 《Nano-Micro Letters》 SCIE EI CAS 2025年第3期440-454,共15页
Efficient and stable photocathodes with versatility are of significance in photoassisted lithium-ion batteries(PLIBs),while there is always a request on fast carrier transport in electrochemical active photocathodes.P... Efficient and stable photocathodes with versatility are of significance in photoassisted lithium-ion batteries(PLIBs),while there is always a request on fast carrier transport in electrochemical active photocathodes.Present work proposes a general approach of creating bulk heterojunction to boost the carrier mobility of photocathodes by simply laser assisted embedding of plasmonic nanocrystals.When employed in PLIBs,it was found effective for synchronously enhanced photocharge separation and transport in light charging process.Additionally,experimental photon spectroscopy,finite difference time domain method simulation and theoretical analyses demonstrate that the improved carrier dynamics are driven by the plasmonic-induced hot electron injection from metal to TiO_(2),as well as the enhanced conductivity in TiO2 matrix due to the formation of oxygen vacancies after Schottky contact.Benefiting from these merits,several benchmark values in performance of TiO2-based photocathode applied in PLIBs are set,including the capacity of 276 mAh g^(−1) at 0.2 A g^(−1) under illumination,photoconversion efficiency of 1.276%at 3 A g^(−1),less capacity and Columbic efficiency loss even through 200 cycles.These results exemplify the potential of the bulk heterojunction strategy in developing highly efficient and stable photoassisted energy storage systems. 展开更多
关键词 Photoassisted lithium-ion batteries Bulk heterojunction Carrier dynamics TiO2 nanofiber Plasmonic metal nanocrystals
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Enhancing Solar Photovoltaic Efficiency:A Computational Fluid Dynamics Analysis
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作者 Rahool Rai Fareed Hussain Mangi +1 位作者 Kashif Ahmed Sudhakar Kumaramsay 《Energy Engineering》 EI 2025年第1期153-166,共14页
The growing need for sustainable energy solutions,driven by rising energy shortages,environmental concerns,and the depletion of conventional energy sources,has led to a significant focus on renewable energy.Solar ener... The growing need for sustainable energy solutions,driven by rising energy shortages,environmental concerns,and the depletion of conventional energy sources,has led to a significant focus on renewable energy.Solar energy,among the various renewable sources,is particularly appealing due to its abundant availability.However,the efficiency of commercial solar photovoltaic(PV)modules is hindered by several factors,notably their conversion efficiency,which averages around 19%.This efficiency can further decline to 10%–16%due to temperature increases during peak sunlight hours.This study investigates the cooling of PV modules by applying water to their front surface through Computational fluid dynamics(CFD).The study aimed to determine the optimal conditions for cooling the PV module by analyzing the interplay between water film thickness,Reynolds number,and their effects on temperature reduction and heat transfer.The CFD analysis revealed that the most effective cooling condition occurred with a 5 mm thick water film and a Reynolds number of 10.These specific parameters were found to maximize the heat transfer and temperature reduction efficiency.This finding is crucial for the development of practical and efficient cooling systems for PV modules,potentially leading to improved performance and longevity of solar panels.Alternative cooling fluids or advanced cooling techniques that might offer even better efficiency or practical benefits. 展开更多
关键词 PV module efficiency water film thickness reynolds number cfd analysis PV/T renewable energy
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Reversible encapsulation tailored interfacial dynamics for boosting the water-gas shift performance
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作者 Nanfang Tang Qinghao Shang +12 位作者 Shuai Chen Yuxia Ma Qingqing Gu Lu Lin Qike Jiang Guoliang Xu Chuntian Wu Bing Yang Zhijie Wu Hui Shi Jian Liu Wenhao Luo Yu Cong 《Chinese Journal of Catalysis》 2025年第1期394-403,共10页
Revealing the structure evolution of interfacial active species during a dynamic catalytic process is a challenging but pivotal issue for the rational design of high-performance catalysts.Here,we successfully prepare ... Revealing the structure evolution of interfacial active species during a dynamic catalytic process is a challenging but pivotal issue for the rational design of high-performance catalysts.Here,we successfully prepare sub-nanometric Pt clusters(~0.8 nm)encapsulated within the defects of CeO_(2)nanorods via an in-situ defect engineering methodology.The as-prepared Pt@d-CeO_(2)catalyst significantly boosts the activity and stability in the water-gas shift(WGS)reaction compared to other analogs.Based on controlled experiments and complementary(in-situ)spectroscopic studies,a reversible encapsulation induced by active site transformation between the Pt^(2+)-terminal hydroxyl and Pt^(δ+)-O vacancy species at the interface is revealed,which enables to evoke the enhanced performance.Our findings not only offer practical guidance for the design of high-efficiency catalysts but also bring a new understanding of the exceptional performance of WGS in a holistic view,which shows a great application potential in materials and catalysis. 展开更多
关键词 Interfacial dynamics HYDROXYLS Water-gas shiftreaction In-situspectroscopy
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Advances in solid-state NMR methods for studying RNA structures and dynamics
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作者 Jinhan He Xiaole Liu Shenlin Wang 《Magnetic Resonance Letters》 2025年第1期64-74,共11页
Ribonucleic acid(RNA)structures and dynamics play a crucial role in elucidating RNA functions and facilitating the design of drugs targeting RNA and RNA-protein complexes.However,obtaining RNA structures using convent... Ribonucleic acid(RNA)structures and dynamics play a crucial role in elucidating RNA functions and facilitating the design of drugs targeting RNA and RNA-protein complexes.However,obtaining RNA structures using conventional biophysical techniques,such as Xray crystallography and solution nuclear magnetic resonance(NMR),presents challenges due to the inherent flexibility and susceptibility to degradation of RNA.In recent years,solid-state NMR(SSNMR)has rapidly emerged as a promising alternative technique for characterizing RNA structure and dynamics.SSNMR has several distinct advantages,including flexibility in sample states,the ability to capture dynamic features of RNA in solid form,and suitability to character RNAs in various sizes.Recent decade witnessed the growth of ^(1)H-detected SSNMR methods on RNA,which targeted elucidating RNA topology and base pair dynamics in solid state.They have been applied to determine the topology of RNA segment in human immunodeficiency virus(HIV)genome and the base pair dynamics of riboswitch RNA.These advancements have expanded the utility of SSNMR techniques within the RNA research field.This review provides a comprehensive discussion of recent progress in ^(1)H-detected SSNMR investigations into RNA structure and dynamics.We focus on the established ^(1)H-detected SSNMR methods,sample preparation protocols,and the implementation of rapid data acquisition approaches. 展开更多
关键词 Solid-state NMR RNA STRUCTURE dynamics Pulse sequences
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Recent advancements of nonlinear dynamics in mode coupled microresonators:a review
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作者 Xuefeng WANG Zhan SHI +3 位作者 Qiqi YANG Yuzhi CHEN Xueyong WEI Ronghua HUAN 《Applied Mathematics and Mechanics(English Edition)》 2025年第2期209-232,共24页
Due to scale effects,micromechanical resonators offer an excellent platform for investigating the intrinsic mechanisms of nonlinear dynamical phenomena and their potential applications.This review focuses on mode-coup... Due to scale effects,micromechanical resonators offer an excellent platform for investigating the intrinsic mechanisms of nonlinear dynamical phenomena and their potential applications.This review focuses on mode-coupled micromechanical resonators,highlighting the latest advancements in four key areas:internal resonance,synchronization,frequency combs,and mode localization.The origin,development,and potential applications of each of these dynamic phenomena within mode-coupled micromechanical systems are investigated,with the goal of inspiring new ideas and directions for researchers in this field. 展开更多
关键词 mode coupling micro-electro-mechanical system(MEMS)resonator nonlinear dynamics
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Plastic deformation mechanism of γ-phase U–Mo alloy studied by molecular dynamics simulations
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作者 Chang Wang Peng Peng Wen-Sheng Lai 《Chinese Physics B》 2025年第1期468-475,共8页
Uranium–molybdenum(U–Mo) alloys are critical for nuclear power generation and propulsion because of their superior thermal conductivity, irradiation stability, and anti-swelling properties. This study explores the p... Uranium–molybdenum(U–Mo) alloys are critical for nuclear power generation and propulsion because of their superior thermal conductivity, irradiation stability, and anti-swelling properties. This study explores the plastic deformation mechanisms of γ-phase U–Mo alloys using molecular dynamics(MD) simulations. In the slip model, the generalized stacking fault energy(GSFE) and the modified Peierls–Nabarro(P–N) model are used to determine the competitive relationships among different slip systems. In the twinning model, the generalized plane fault energy(GPFE) is assessed to evaluate the competition between slip and twinning. The findings reveal that among the three slip systems, the {110}<111>slip system is preferentially activated, while in the {112}<111> system, twinning is favored over slip, as confirmed by MD tensile simulations conducted in various directions. Additionally, the impact of Mo content on deformation behavior is emphasized. Insights are provided for optimizing process conditions to avoid γ → α′′ transitions, thereby maintaining a higher proportion of γ-phase U–Mo alloys for practical applications. 展开更多
关键词 U-Mo alloy molecular dynamics simulation plastic deformation mechanism dislocation slip twin formation
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Multi-scale Numerical Simulations for Crack Propagation in NiTi Shape Memory Alloys by Molecular Dynamics-based Cohesive Zone Model
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作者 LI Yunfei WANG Yuancen HE Qinshu 《Journal of Wuhan University of Technology(Materials Science)》 2025年第2期599-609,共11页
The multi-scale modeling combined with the cohesive zone model(CZM)and the molecular dynamics(MD)method were preformed to simulate the crack propagation in NiTi shape memory alloys(SMAs).The metallographic microscope ... The multi-scale modeling combined with the cohesive zone model(CZM)and the molecular dynamics(MD)method were preformed to simulate the crack propagation in NiTi shape memory alloys(SMAs).The metallographic microscope and image processing technology were employed to achieve a quantitative grain size distribution of NiTi alloys so as to provide experimental data for molecular dynamics modeling at the atomic scale.Considering the size effect of molecular dynamics model on material properties,a reasonable modeling size was provided by taking into account three characteristic dimensions from the perspective of macro,meso,and micro scales according to the Buckinghamπtheorem.Then,the corresponding MD simulation on deformation and fracture behavior was investigated to derive a parameterized traction-separation(T-S)law,and then it was embedded into cohesive elements of finite element software.Thus,the crack propagation behavior in NiTi alloys was reproduced by the finite element method(FEM).The experimental results show that the predicted initiation fracture toughness is in good agreement with experimental data.In addition,it is found that the dynamics initiation fracture toughness increases with decreasing grain size and increasing loading velocity. 展开更多
关键词 NiTi shape memory alloys multi-scale numerical simulation crack propagation the cohesive zone model molecular dynamics simulation
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Calculation of the carrier dynamics and impedance spectroscopy model in quantum well infrared photodetectors
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作者 Chenzhe Hu Yuyu Bu +2 位作者 Xianying Dai Fengqiu Jiang Yue Hao 《Journal of Semiconductors》 2025年第3期89-95,共7页
Quantum well infrared photodetectors(QWIPs) based on intersubband transitions hold significant potential for high bandwidth operation. In this work, we establish a carrier transport optimization model incorporating el... Quantum well infrared photodetectors(QWIPs) based on intersubband transitions hold significant potential for high bandwidth operation. In this work, we establish a carrier transport optimization model incorporating electron injection at the emitter to investigate the carrier dynamics time and impedance spectroscopy in GaAs/AlGaAs QWIPs. Our findings provide novel evidence that the escape time of electrons is the key limiting factor for the 3-dB bandwidth of QWIPs. Moreover, to characterize the impact of carrier dynamics time and non-equilibrium space charge region on impedance, we developed an equivalent circuit model where depletion region resistance and capacitance are employed to describe non-equilibrium space charge region. Using this model, we discovered that under illumination, both net charge accumulation caused by variations in carrier dynamics times within quantum wells and changes in width of non-equilibrium space charge region exert different dominant influences on depletion region capacitance at various doping concentrations. 展开更多
关键词 quantum well infrared photodetectors(QWIPs) carrier dynamics time impedance spectroscopy equivalent circuit model 3-dB bandwidth
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Light Use Efficiency Model Based on Chlorophyll Content Better Captures Seasonal Gross Primary Production Dynamics of Deciduous Broadleaf Forests
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作者 YANG Rongjuan LIU Ronggao +3 位作者 LIU Yang CHEN Jingming XU Mingzhu HE Jiaying 《Chinese Geographical Science》 2025年第1期55-72,共18页
Gross primary production(GPP)is a crucial indicator representing the absorption of atmospheric CO_(2) by vegetation.At present,the estimation of GPP by remote sensing is mainly based on leaf-related vegetation indexes... Gross primary production(GPP)is a crucial indicator representing the absorption of atmospheric CO_(2) by vegetation.At present,the estimation of GPP by remote sensing is mainly based on leaf-related vegetation indexes and leaf-related biophysical para-meter leaf area index(LAI),which are not completely synchronized in seasonality with GPP.In this study,we proposed chlorophyll content-based light use efficiency model(CC-LUE)to improve GPP estimates,as chlorophyll is the direct site of photosynthesis,and only the light absorbed by chlorophyll is used in the photosynthetic process.The CC-LUE model is constructed by establishing a linear correlation between satellite-derived canopy chlorophyll content(Chlcanopy)and FPAR.This method was calibrated and validated utiliz-ing 7-d averaged in-situ GPP data from 14 eddy covariance flux towers covering deciduous broadleaf forest ecosystems across five dif-ferent climate zones.Results showed a relatively robust seasonal consistency between Chlcanopy with GPP in deciduous broadleaf forests under different climatic conditions.The CC-LUE model explained 88% of the in-situ GPP seasonality for all validation site-year and 56.0% of in-situ GPP variations through the growing season,outperforming the three widely used LUE models(MODIS-GPP algorithm,Vegetation Photosynthesis Model(VPM),and the eddy covariance-light use efficiency model(EC-LUE)).Additionally,the CC-LUE model(RMSE=0.50 g C/(m^(2)·d))significantly improved the underestimation of GPP during the growing season in semi-arid region,re-markably decreasing the root mean square error of averaged growing season GPP simulation and in-situ GPP by 75.4%,73.4%,and 37.5%,compared with MOD17(RMSE=2.03 g C/(m^(2)·d)),VPM(RMSE=1.88 g C/(m^(2)·d)),and EC-LUE(RMSE=0.80 g C/(m^(2)·d))model.The chlorophyll-based method proved superior in capturing the seasonal variations of GPP in forest ecosystems,thereby provid-ing the possibility of a more precise depiction of forest seasonal carbon uptake. 展开更多
关键词 canopy chlorophyll content(Chlcanopy) photosynthesis gross primary production(GPP) light use efficiency(LUE)model seasonal dynamics deciduous broadleaf forest(DBF)
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COMPUTATIONAL FLUID DYNAMICS(CFD) SIMULATIONS OF DRAG REDUCTION WITH PERIODIC MICRO-STRUCTURED WALL 被引量:4
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作者 LI Gang ZHOU Ming +2 位作者 WU Bo YE Xia CAI Lan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第2期77-80,共4页
Computational fluid dynamics(CFD) simulations are adopted to investigate rectangular microchannel flows with various periodic micro-structured wall by introducing velocity slip boundary condition at low Reynolds num... Computational fluid dynamics(CFD) simulations are adopted to investigate rectangular microchannel flows with various periodic micro-structured wall by introducing velocity slip boundary condition at low Reynolds number. The purpose of the current study is to numerically find out the effects of periodic micro-structured wall on the flow resistance in rectangular microchannel with the different spacings between microridges ranging from 15 to 60 pm. The simulative results indicate that pressure drop with different spacing between microridges increases linearly with flow velocity and decreases monotonically with slip velocity; Pressure drop reduction also increases with the spacing between microridges at the same condition of slip velocity and flow velocity. The results of numerical simulation are compared with theoretical predictions and experimental results in the literatures. It is found that there is qualitative agreement between them. 展开更多
关键词 Reynoids numbers Slip velocity Drag reduction Computational fluid dynamics(cfd) simulations
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椭圆形织构化表面润滑性能的试验研究及三维CFD分析
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作者 季彬彬 陈娟 +2 位作者 曾良才 湛从昌 杨玉萍 《润滑与密封》 北大核心 2025年第2期66-71,共6页
流体动压润滑状态下,表面织构排列方式和工况参数是织构化表面润滑性能的重要影响因素。研究典型的椭圆形织构的排列方式和工况参数影响表面油膜承载特性的机制。针对4组转速、3种润滑介质黏度以及3种椭圆形织构排列方式,对富油润滑条... 流体动压润滑状态下,表面织构排列方式和工况参数是织构化表面润滑性能的重要影响因素。研究典型的椭圆形织构的排列方式和工况参数影响表面油膜承载特性的机制。针对4组转速、3种润滑介质黏度以及3种椭圆形织构排列方式,对富油润滑条件下面-面模式的润滑膜承载能力变化规律进行实验研究,同时建立考虑空化效应的三维CFD计算模型,对油膜承载力、织构内部压力和流体速度的变化情况进行模拟分析。结果表明:椭圆形织构化表面具有良好的动压承载性能,转速和黏度的增加有利于形成流体动压力,但过高的转速和黏度会增大局部涡流,进而抑制动压润滑;通过合理布置椭圆形织构的排列方式能够影响流体的流向,形成汇流作用进一步提高动压承载能力,改善表面润滑性能。 展开更多
关键词 椭圆形织构 织构排列方式 油膜承载力 三维cfd 润滑介质黏度
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海底泥屑流对悬跨管线冲击力的CFD模拟
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作者 张宇 曲仝 《防灾减灾工程学报》 北大核心 2025年第1期215-223,共9页
海底管线作为运输海底油气资源的重要通道,具有生产安装方便、运输距离远、运输效率高等优势,被广泛应用于海洋油气工程。使用计算流体动力学方法研究了海底泥屑流对悬跨高度为一倍管线直径状态下管线的冲击作用。通过在管线背冲击侧增... 海底管线作为运输海底油气资源的重要通道,具有生产安装方便、运输距离远、运输效率高等优势,被广泛应用于海洋油气工程。使用计算流体动力学方法研究了海底泥屑流对悬跨高度为一倍管线直径状态下管线的冲击作用。通过在管线背冲击侧增大加密网格区域的方法,铺捉到泥屑流冲击管线过程中涡流脱落现象,讨论了加密网格模型模拟嵌入阶段管线受力规律的必要性。数值模拟结果表明,加密网格模型可以更好地模拟雷诺数较大工况中管线的法向和竖向受力规律,具体表现为:对于管线法向受力,当雷诺数小于113.05时,管线法向受力峰值与初始冲击阶段峰值相同;当雷诺数大于113.05时,受涡流脱落影响,法向受力峰值出现在嵌入冲击阶段。对于管线竖向受力,在冲击过程中管线受力表现出一定的周期性,在模拟的雷诺数范围(21.89~317.08)内,管线竖向受力峰值均出现在嵌入冲击阶段;随着雷诺数的增大,管线竖向受力峰值最大可达初始阶段峰值5倍以上。基于计算数据,得到了不同雷诺数条件下法向受力峰值和竖向受力峰值受力系数计算表达式。研究得到的规律和公式对完整地评价泥屑流对海底管线的冲击过程具有重要价值。 展开更多
关键词 受力峰值 海底管线 海底滑坡 cfd模拟 竖向受力 漩涡脱落
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基于CFD仿真模拟的工业建筑室内风环境研究——以黄石市华新水泥厂为例
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作者 陈铭 周小博 向文静 《城市建筑》 2025年第3期169-174,共6页
随着众多工业园区搬迁、废弃,关于工业旧址的建筑改造升级成为当下热点。众多研究表明改善建筑室内风环境能够有效降低建筑能耗,提高人体舒适度,提升建筑品质。文章通过CFD仿真模拟,模拟华新水泥厂内部风环境情形,并分析在夏季工况下,1.... 随着众多工业园区搬迁、废弃,关于工业旧址的建筑改造升级成为当下热点。众多研究表明改善建筑室内风环境能够有效降低建筑能耗,提高人体舒适度,提升建筑品质。文章通过CFD仿真模拟,模拟华新水泥厂内部风环境情形,并分析在夏季工况下,1.5 m高度时四种内部空间形式的建筑方案室内风环境情况,并选定最佳形式,为今后在工业建筑室内风环境研究设计方面提供一些思路。 展开更多
关键词 室内改造 工业建筑 cfd仿真模拟 建筑室内风环境
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基于CFD数值模拟的双层通风屋顶夏季热工性能分析
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作者 周智勇 刘林林 王虎星 《科技通报》 2025年第1期15-22,共8页
本文以某农村住宅屋顶尺寸为原型,采用CFD (computational fluid dynamics)数值模拟方法研究双层通风屋顶的结构参数对夏季热工性能的影响。利用Fluent模拟计算空气出口的平均温度、平均流速、通风层带走的热量、石膏下表面平均温度及... 本文以某农村住宅屋顶尺寸为原型,采用CFD (computational fluid dynamics)数值模拟方法研究双层通风屋顶的结构参数对夏季热工性能的影响。利用Fluent模拟计算空气出口的平均温度、平均流速、通风层带走的热量、石膏下表面平均温度及热流密度等,并进行对比分析。结果表明:在结构参数允许情况下应增大通风口面积,以提高双层通风屋顶的隔热性能;风速一定时,增大通风道长度会降低石膏层表面温度;当风道长度一定时,增大风速也会使石膏下表面温度降低从而增强双层通风屋顶的隔热性能。在两侧设置通风口时,侧通风口面积较小时反而会降低屋顶隔热性能,在上层设置通风桥时,会少量提高屋顶隔热性能。 展开更多
关键词 双层通风屋顶 cfd数值模拟 屋顶结构 热工性能
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风致飞射物飞行特性的CFD数值模拟
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作者 张建国 张明浩 温祖坚 《山西建筑》 2025年第6期8-13,共6页
利用计算流体动力学(CFD)中的六自由度模型(6DOF)数值模拟和自定义函数编译(UDF)更新动网格两种方法,研究了球状和板状飞射物在二维流场中的气动特性以及飞射物与流场的耦合运动情况,得到了两种飞射物在流场中的运行轨迹。将结果与风洞... 利用计算流体动力学(CFD)中的六自由度模型(6DOF)数值模拟和自定义函数编译(UDF)更新动网格两种方法,研究了球状和板状飞射物在二维流场中的气动特性以及飞射物与流场的耦合运动情况,得到了两种飞射物在流场中的运行轨迹。将结果与风洞试验数据和经验公式进行对比,证明利用非定常CFD方法研究风致飞射物的飞行特性是可行的,并据此提出了较好的六自由度模型(6DOF)数值模拟方法,为研究风致飞射物的飞行特性提供了一种可靠的数值模拟方法。 展开更多
关键词 风致飞射物 cfd数值模拟 飞行轨迹 六自由度模型
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基于CFD−DPM的空气幕协同排风罩增效除尘研究
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作者 丁厚成 许婉萍 +2 位作者 邓权龙 陈圳杨 朱强 《安徽工业大学学报(自然科学版)》 2025年第1期62-71,共10页
以某机械厂打磨车间为研究对象,利用Solidworks软件建立带有空气幕协同排风罩除尘的打磨车间模型,基于气固两相流理论,采用计算流体力学离散颗粒模型(CFD−DPM)模拟分析空气幕送风速度、射流角度和射流宽度对除尘效率的影响,选取空气幕... 以某机械厂打磨车间为研究对象,利用Solidworks软件建立带有空气幕协同排风罩除尘的打磨车间模型,基于气固两相流理论,采用计算流体力学离散颗粒模型(CFD−DPM)模拟分析空气幕送风速度、射流角度和射流宽度对除尘效率的影响,选取空气幕的最优参数;在此基础上,对比分析未开启排风罩、开启排风罩、同时开启排风罩与空气幕3种工况的风速分布、粉尘运移轨迹及粉尘质量浓度分布,探讨空气幕协同排风罩除尘的效果。结果表明:粉尘最大浓度、呼吸带粉尘浓度随空气幕送风速度、射流宽度的增大而减小,但不随空气幕射流角度的变化而变化;粉尘浓度随地面高度的增大先增后减,不同高度处粉尘浓度变化趋势基本一致;当空气幕射流宽度30 mm、射流角度30°、送风速度3 m/s时,通风除尘效果最佳,除尘效率高达94.2%。相比于仅开启排风罩,排风罩与空气幕协同作用下的除尘效率提高了38.8%,空气幕协同排风罩对车间除尘具有较好的增效作用。 展开更多
关键词 打磨车间 金属粉尘 排风罩 空气幕 计算流体力学(cfd) 离散颗粒模型(DPM) 除尘 职业健康
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基于CFD的风暖浴霸多翼离心风机蜗壳结构优化
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作者 沈春根 林传生 +2 位作者 刘江 胡尊豪 郭二廓 《暖通空调》 2025年第2期106-112,共7页
以某型号的风暖浴霸内部的多翼离心风机整体结构为研究对象,利用Fluent对原型风机进行了模拟分析和结构优化,结果显示模拟结果与实测误差在5%以内,验证了采用CFD数值模拟方法优化多翼离心风机的可靠性。在上述研究基础上,设计了不同蜗... 以某型号的风暖浴霸内部的多翼离心风机整体结构为研究对象,利用Fluent对原型风机进行了模拟分析和结构优化,结果显示模拟结果与实测误差在5%以内,验证了采用CFD数值模拟方法优化多翼离心风机的可靠性。在上述研究基础上,设计了不同蜗壳宽度与轴向尺寸的模拟优化和实验测试方案,根据数值模拟结果分析了各方案的风机内部流动和气动性能,确定了最优蜗壳宽度为84 mm和最优尺寸组合为顶部间隙3 mm、底部间隙11 mm。数值模拟结果表明优化后的风机内部流场的速度明显提升。测试结果显示优化后的风机在设计工况下出口风量提升5.88%、全压效率提升7.91%,综合性能有所提升,为同类浴霸的结构优化和性能评价提供了明确的方法。 展开更多
关键词 浴霸 多翼离心风机 蜗壳宽度 轴向尺寸 cfd数值模拟 结构优化 性能测试
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A Computational Fluid Dynamics (CFD) Analysis of an Undulatory Mechanical Fin Driven by Shape Memory Alloy 被引量:8
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作者 Yong-Hua Zhang Jian-Hui He +2 位作者 Jie Yang Shi-Wu Zhang Kin Huat Low 《International Journal of Automation and computing》 EI 2006年第4期374-381,共8页
Many fishes use undulatory fin to propel themselves in the underwater environment. These locomotor mechanisms have a popular interest to many researchers. In the present study, we perform a three-dimensional unsteady ... Many fishes use undulatory fin to propel themselves in the underwater environment. These locomotor mechanisms have a popular interest to many researchers. In the present study, we perform a three-dimensional unsteady computation of an undulatory mechanical fin that is driven by Shape Memory Alloy (SMA). The objective of the computation is to investigate the fluid dynamics of force production associated with the undulatory mechanical fin. An unstructured, grid-based, unsteady Navier-Stokes solver with automatic adaptive remeshing is used to compute the unsteady flow around the fin through five complete cycles. The pressure distribution on fin surface is computed and integrated to provide fin forces which are decomposed into lift and thrust. The velocity field is also computed throughout the swimming cycle. Finally, a comparison is conducted to reveal the dynamics of force generation according to the kinematic parameters of the undulatory fin (amplitude, frequency and wavelength). 展开更多
关键词 Computational Fluid dynamics (cfd undulatory mechanical fin unsteady flow unstructured mesh Shape Memory Alloy (SMA)
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Community structure and species diversity dynamics of a subtropical evergreen broad-leaved forest in China:2005 to 2020 被引量:2
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作者 Shi-Guang Wei Lin Li +3 位作者 Kun-Dong Bai Zhi-Feng Wen Jing-Gang Zhou Qin Lin 《Plant Diversity》 SCIE CAS CSCD 2024年第1期70-77,共8页
Here,we characterize the temporal and spatial dynamics of forest community structure and species diversity in a subtropical evergreen broad-leaved forest in China.We found that community structure in this forest chang... Here,we characterize the temporal and spatial dynamics of forest community structure and species diversity in a subtropical evergreen broad-leaved forest in China.We found that community structure in this forest changed over a 15-year period.Specifically,renewal and death of common species was large,with the renewal of individuals mainly concentrated within a few populations,especially those of Aidia canthioides and Cryptocarya concinna.The numbers of individual deaths for common species were concentrated in the small and mid-diameter level.The spatial distribution of community species diversity fluctuated in each monitoring period,showing a more dispersed diversity after the 15-year study period,and the coefficient of variation on quadrats increased.In 2010,the death and renewal of the community and the spatial variation of species diversity were different compared to other survey years.Extreme weather may have affected species regeneration and community stability in our subtropical monsoon evergreen broad-leaved forests.Our findings suggest that strengthening the monitoring and management of the forest community will help better understand the long-and short-term causes of dynamic fluctuations of community structure and species diversity,and reveal the factors that drive changes in community structure. 展开更多
关键词 Community structure Death and renewal dynamics Species diversity dynamics South subtropical forest
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