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Experimental analysis of additional aerodynamic effects caused by wind-driven rain on bridge main girder 被引量:1
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作者 LEI Xu SHEN Lian +3 位作者 CHEN Zheng-qing NIU Hua-wei WEI Cheng-long ZHANG Xue-wen 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2743-2756,共14页
To study the additional aerodynamic effect on a bridge girder under the action of wind-driven rain, the rainfall similarity considering raindrop impact and surface water is first given. Then, the dynamic characteristi... To study the additional aerodynamic effect on a bridge girder under the action of wind-driven rain, the rainfall similarity considering raindrop impact and surface water is first given. Then, the dynamic characteristics and the process of vortex and flutter generation of the segment models under different rain intensities and angles of attack are tested by considering several typical main girder sections as examples. The test results indicate that the start and end wind speeds,interval length and number of vortex vibrations remain unchanged when it is raining, rainfall will reduce the windinduced vortex response. When test rain intensity is large, the decrease of amplitude is obvious. However, after considering the rain intensity similarity in this study, all of actual maximum rain intensities after conversion approach the domestic extreme rain intensity of approximately 709 mm/h. It can be observed that rainfall has a limited influence on the dynamic characteristics of the structure and vortex vibration response. When the test rain intensity is 120 mm/h, the critical wind speed of the model flutter increases by 20%-30%. However, after considering the rain intensity similarity ratio, the influence of rainfall on the wind-induced flutter instability of the bridge girder may be ignored. 展开更多
关键词 bridge engineering main girder wind-driven rain similarity law aerodynamic effect
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Numerical simulation study on the hygrothermal performance of building exterior walls under dynamic wind-driven rain condition 被引量:1
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作者 Xing Hu Huibo Zhang Hui Yu 《Building Simulation》 SCIE EI CSCD 2024年第2期207-221,共15页
Wind-driven rain(WDR)has a significant influence on the hygrothermal performance,durability,and energy consumption of building components.The calculation of WDR loads using semi-empirical models has been incorporated ... Wind-driven rain(WDR)has a significant influence on the hygrothermal performance,durability,and energy consumption of building components.The calculation of WDR loads using semi-empirical models has been incorporated into the boundary conditions of coupled heat and moisture transfer models.However,prior research often relied on fixed WDR absorption ratio,which fail to accurately capture the water absorption characteristics of porous building materials under rainfall scenarios.Therefore,this study aims to investigate the coupled heat and moisture transfer of exterior walls under dynamic WDR boundary conditions,utilizing an empirically obtained WDR absorption ratio model based on field measurements.The developed coupled heat and moisture transfer model is validated against the HAMSTAD project.The findings reveal that the total WDR flux calculated with the dynamic WDR boundary is lower than that obtained with the fixed WDR boundary,with greater disparities observed in orientations experiencing higher WDR loads.The variations in moisture flow significantly impact the surface temperature and relative humidity of the walls,influencing the calculation of cooling and heating loads by different models.Compared to the transient heat transfer model,the coupled heat and moisture transfer model incorporating dynamic WDR boundary exhibits maximum increases of 17.6%and 16.2%in cooling and heating loads,respectively.The dynamic WDR boundary conditions provide more precise numerical values for surface moisture flux,offering valuable insights for the thermal design of building enclosures and load calculations for HVAC systems. 展开更多
关键词 wind-driven rain building component hygrothermal model transient simulation cooling and heating loads
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Modeling of wind-driven rain absorption ratio of building exterior finishing materials based on field measurements
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作者 Xing Hu Huibo Zhang +1 位作者 Tianda Qian Chi Feng 《Frontiers of Architectural Research》 CSCD 2024年第5期1145-1157,共13页
Wind-driven rain(WDR)constitutes a significant source of moisture for building facades,which poses considerable challenges to both the thermal insulation performance and long-term durability of walls.Prior studies hav... Wind-driven rain(WDR)constitutes a significant source of moisture for building facades,which poses considerable challenges to both the thermal insulation performance and long-term durability of walls.Prior studies have contributed significantly to the understanding of fluid behavior and moisture response of WDR upon impacting walls.However,the quantification of absorbed rainwater by the wall remains elusive.To address this gap,this study focuses on comprehending the dynamic WDR absorption behavior of various exterior finishing materials.Specifically,nine types of finishing materials were selected as research objects and conducted field measurements.The findings reveal that WDR absorption ratio is influenced by physical parameters of materials,surface waterproofing and the cumulative WDR.Leveraging multiple regression fittings,we established an empirical WDR absorption ratio calculation mode.This model serves as a valuable reference for determining building simulation parameters regarding dynamic moisture boundary conditions on the exterior surfaces of walls.By providing empirical insights into WDR absorption,our research contributes to a more comprehensive understanding of moisture behavior in building envelopes,thereby aiding in the development of effective strategies for enhancing building performance and durability. 展开更多
关键词 wind-driven rain Exterior finishing materials POROSITY Capillary absorption coefficient Moisture boundary
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Macro-and Microphysical Characteristics of Freezing Rain and Their Impacts on Wire Icing Mechanisms in the Southwestern Mountainous Areas of China 被引量:1
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作者 Yue ZHOU Chunsong LU +3 位作者 Jingjing Lü Xiaoyun SUN Lingli ZHOU Hui XIAO 《Advances in Atmospheric Sciences》 2025年第8期1620-1635,共16页
Based on comprehensive observations of 20 wire icing events during winter from 2019 to 2021,we investigated the characteristics of the icing properties,the atmospheric boundary layer structure,the raindrop size distri... Based on comprehensive observations of 20 wire icing events during winter from 2019 to 2021,we investigated the characteristics of the icing properties,the atmospheric boundary layer structure,the raindrop size distribution,and their associated effects on the ice accretion mechanism in the mountainous region of Southwest China.The maximum ice weight was positively correlated with the duration of ice accretion in the mountainous area.The duration of precipitation accounted for less than 20%of the icing period in the mountainous area,with solid-phase hydrometeors being predominant.Icing events,dominated by freezing rain(FR)and mixed rain–graupel(more than 70%),were characterized by glaze or highdensity mixed icing.The relationship between the melting energy and refreezing energy reflected the distribution characteristics of the proportion of FR under mixed-phase precipitation.The intensity of the warm layer and the dominant precipitation phase significantly affected the variations in the microphysical properties of FR.The melting of large dry snowflakes significantly contributed to FR in the mountainous areas,resulting in smaller generalized intercepts and larger mass-weighted mean diameters in the presence of a stronger warm layer.Under a weaker warm layer,the value of the massweighted mean diameter was significantly smaller because of the inability of large solid particles to melt.Finally,FR in the mountainous area dominated the ice weight during the rapid ice accumulation period.A numerical simulation of FR icing on wires effectively revealed the evolution of disaster-causing icing in mountainous areas. 展开更多
关键词 freezing rain wire icing macro-and microphysical characteristics mountainous area
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Analysis of Variation Characteristics of Rainstorms in Jining City from 1981 to 2020
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作者 Qi ZHANG Yanlei SONG 《Meteorological and Environmental Research》 2025年第3期4-6,9,共4页
Based on the data of daily precipitation in 11 national ground meteorological observation stations in Jining City from 1981 to 2020,the interdecadal variation,intensity,range and spatial distribution of rainstorms in ... Based on the data of daily precipitation in 11 national ground meteorological observation stations in Jining City from 1981 to 2020,the interdecadal variation,intensity,range and spatial distribution of rainstorms in Jining City were analyzed.The results show that the number of rainstorm days and the total amount of rainstorms in Jining City had significant changes among different decades.There was a continuous upward trend from the 1980s to the early 21 st century and a decrease after the early 21 st century.Rainstorms had distinct seasonal characteristics.They were mainly concentrated in summer,especially in July and August.In terms of spatial distribution,the frequency and intensity of rainstorms in the southeastern regions were significantly higher than those in the northwestern regions.The above results can provide a scientific basis for flood control and disaster reduction in Jining City. 展开更多
关键词 rainstorm intensity rain range Interdecadal variation Jining
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Microphysical processes of the“21·7”Henan extremely heavy rainfall event as simulated with the Thompson microphysics scheme
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作者 Yue Dong Qingqing Li 《Atmospheric and Oceanic Science Letters》 2025年第2期16-21,共6页
A numerical simulation was performed using the Thompson microphysics scheme to preliminarily investigate the features of the microphysical processes involved in the record-breaking rainfall event that occurred in Hena... A numerical simulation was performed using the Thompson microphysics scheme to preliminarily investigate the features of the microphysical processes involved in the record-breaking rainfall event that occurred in Henan Province,China,on 20 July 2021.The simulation results showed that a strong meso-𝛾-scale vortical updraft was concurrent with the torrential rainfall.The main finding is that this event was characterized by typical midlatitude warm-rain processes.The simulation with the Thompson microphysics scheme further indicated that highly efficient collision-coalescence of cloud water to rainwater resulted in a considerably active rain droplet growth,leading to this record-breaking rainfall event. 展开更多
关键词 Microphysical process Extreme rainfall Mixing ratio tendency budget Warm rain
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Unique Environmental and Cyclogenesis Conditions of Boreal Midsummer Extratropical Cyclones Accompanied by Torrential Rain in Central and Eastern China
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作者 ZHANG Meng XIE Tie-jun +3 位作者 SONG Jia-ning FU Jing LUO Jing-jia LI Dian 《Journal of Tropical Meteorology》 2025年第4期362-378,共17页
In recent years,torrential rain events caused by extratropical cyclones(ETCs)during the boreal midsummer(July-August)in Central and Eastern China have shown an increasing trend.For instence,in August 2024,two ETCs bro... In recent years,torrential rain events caused by extratropical cyclones(ETCs)during the boreal midsummer(July-August)in Central and Eastern China have shown an increasing trend.For instence,in August 2024,two ETCs brought large-scale heavy rainfall to North China,with daily precipitation exceeding 100 mm.Using reanalysis datasets and gridded precipitation data,the ETCs that affected Central and Eastern China during the boreal midsummer from 1981 to 2020 were objectively identified and tracked.ETCs causing precipitation were classified based on maximum daily precipitation,resulting in datasets for ETCs with torrential rain(daily precipitation exceeding 100 mm,referred to as ETC_R100)and heavy rain(daily precipitation exceeding 25 mm,referred to as ETC_R25).Comparative analysis can help highlight the characteristics of ETC_R100.This study compares the spatial distribution,movement paths,weather impacts,large-scale atmospheric circulation,and environmental conditions of these two types of precipitation-related ETCs.The following findings emerged:(1)ETC_R100 is driven by the combined forcing of upper-level troughs and warm-moist airflows at lower levels,exhibiting stronger thermal forcing than ETC_R25.(2)The moisture source for ETC_R100 are the Bay of Bengal and the Northwest Pacific,with moisture transported via the South China Sea.Compared to ETCs with nonextreme rainfall,ETC_R100 is characterized by greater atmospheric instability and better moisture conditions,resulting in higher precipitation intensity.(3)Regardless of the precipitation level,ETCs affected different regions but contributed significantly to precipitation in northern China,accounting for approximately 50%of the total precipitation.The results indicate that ETC_R100 differs significantly from ETCs with varying levels of precipitation in terms of statistical characteristics,weather impact,environmental conditions,and cyclogenesis conditions. 展开更多
关键词 extratropical cyclone(ETC) torrential rains environmental conditions CYCLOGENESIS Central and Eastern China
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Impact of Various Coupled Motions on the Aerodynamic Performance of a Floating Offshore Wind Turbine Within the Wind–Rain Field
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作者 Yazhou Wang Yalong Guo +1 位作者 Xujiang Xia Ning Zhuang 《哈尔滨工程大学学报(英文版)》 2025年第2期370-387,共18页
This study employed a computational fluid dynamics model with an overset mesh technique to investigate the thrust and power of a floating offshore wind turbine(FOWT)under platform floating motion in the wind–rain fie... This study employed a computational fluid dynamics model with an overset mesh technique to investigate the thrust and power of a floating offshore wind turbine(FOWT)under platform floating motion in the wind–rain field.The impact of rainfall on aerodynamic performance was initially examined using a stationary turbine model in both wind and wind–rain conditions.Subsequently,the study compared the FOWT’s performance under various single degree-of-freedom(DOF)motions,including surge,pitch,heave,and yaw.Finally,the combined effects of wind–rain fields and platform motions involving two DOFs on the FOWT’s aerodynamics were analyzed and compared.The results demonstrate that rain negatively impacts the aerodynamic performance of both the stationary turbines and FOWTs.Pitch-dominated motions,whether involving single or multiple DOFs,caused significant fluctuations in the FOWT aerodynamics.The combination of surge and pitch motions created the most challenging operational environment for the FOWT in all tested scenarios.These findings highlighted the need for stronger construction materials and greater ultimate bearing capacity for FOWTs,as well as the importance of optimizing designs to mitigate excessive pitch and surge. 展开更多
关键词 Floating offshore wind turbine Aerodynamic performance Coupled motions Wind–rain field
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Raining cats and dogs
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作者 予安 《疯狂英语(初中天地)》 2025年第5期46-47,共2页
在英语影视剧或文学作品中,你或许见过这样的场景:主角望着窗外倾盆大雨惊呼“It’s raining cats and dogs!”。其中,raining cats and dogs字面意思是“天上掉猫狗”,实际却用来形容暴雨如瀑布般猛烈。这种超现实的表达并非空穴来风,... 在英语影视剧或文学作品中,你或许见过这样的场景:主角望着窗外倾盆大雨惊呼“It’s raining cats and dogs!”。其中,raining cats and dogs字面意思是“天上掉猫狗”,实际却用来形容暴雨如瀑布般猛烈。这种超现实的表达并非空穴来风,它的诞生糅合了神话想象与历史现实,成为英语文化中一道独特的语言风景。 展开更多
关键词 raining cats and dogs
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Insights into wind-driven heavy metal pollution and human health risk assessment in a typical lead-zinc mining area of northern China
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作者 Zun-zhuang Ke Xue Han +6 位作者 Ran Zhou Yi-fei Zhang Guan-nan Liu Chang-qing Zhang Zhao Liu Xiao-sai Li Wen-bo Li 《China Geology》 2025年第3期487-499,I0001-I0004,共17页
Long-term mining activities can result in the release of heavy metals into soil,ultimately posing a threat to human health.In arid and semi-arid regions,wind-driven transport of these toxic metals from mining areas re... Long-term mining activities can result in the release of heavy metals into soil,ultimately posing a threat to human health.In arid and semi-arid regions,wind-driven transport of these toxic metals from mining areas represents a primary mechanism for their spatial distribution.To evaluate pollution levels and associated health risks of eight metals,A total of 95 soil samples,corresponding 25 vegetable samples and 3 tailing samples were collected from various land types surrounding a typical Pb-Zn mine in northern China’s semi-arid region.The mean concentrations of As,Cd,Cr,Cu,Hg,Ni,Pb and Zn in soils were 62.8,0.27,29.6,11.5,0.02,14.4,49.9 and 109.5 mg/kg,respectively.Among these,As,Cd,Pb,and Zn emerged as the predominant pollutants,with some samples exceeding national risk screening values.The results of contamination factor(CF),pollution load index(PLI)and geo-accumulation index(I_(geo))indicated that heavy metals in most soils exhibited non-polluted level or slight pollution level,though localized severe contamination by As,Cd,Pb,and Zn was observed.Spatial distribution analysis demonstrated similar dispersion patterns for As,Cd,Pb,and Zn,with wind-mediated transport extending up to 2.0 km from contamination sources.Pearson’s correlation analysis and principal component analysis(PCA)suggested that As,Cd,Pb and Zn mainly originated from mining activities,and Cr,Ni,Cu and Hg derived from soil parent materials.All vegetable samples contained metal concentrations below food safety thresholds.Health risk assessment showed hazard quotient(HQ)values for individual metals below 1 across all exposure groups,indicating negligible non-carcinogenic risk.Similarly,carcinogenic risk(CR)values for As,Cd,Cr,and Pb fell within acceptable ranges.While mining activities have induced significant localized contamination,the overall affected area remains limited in arid and semi-arid regions.However,greater attention should be directed toward potential health implications from vegetable consumption in proximity to mining operations within arid and semi-arid regions. 展开更多
关键词 Lead-zinc mine Heavy metals Health risk Soil Semi-arid regions VEGETABLE wind-driven transport Food safety Carcinogenic risk Sustainable Development Goals(SDG 3) Environmental geological survey engineering
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Variation characteristics of acid rain in Zhuzhou,Central China over the period 2011-2020 被引量:2
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作者 Jiahao Ren Liquan Zhu +5 位作者 Xi Zhang Yuqian Luo Xuecai Zhong Bowen Li Yuwen Wang Kai Zhang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第4期496-505,共10页
Zhuzhou was one of the most polluted cities in China with the serious acid rain.Due to the implementation of air pollution control measures from 2016 to 2018,the acid rain pollution in this city has reduced.In order t... Zhuzhou was one of the most polluted cities in China with the serious acid rain.Due to the implementation of air pollution control measures from 2016 to 2018,the acid rain pollution in this city has reduced.In order to understand the recent situation,a comprehensive study on the acid rain was carried out from January 2011 to December 2020.The pH values during the study period varied from 3.3 to 7.5,with a volume-weighted mean value of 4.7.The predominant acidic components of the precipitation were SO_(4)^(2-)and NO_(3)^(-),accounting for 89.3% of the total anions.The ratio of non-sea-salt SO_(4)^(2-)to NO_(3)^(-)showed a decreasing trend,revealing that the pollution type of acid rain changed from sulfuric acid type to sulfuric acid and nitric acid compound type.The correlation analysis(p<0.05)showed that SO_(4)^(2-)was positively correlated with NH_(4)^(+),Ca^(2+),and Mg^(2+);hence,it predominated in precipitation as(NH_(4))_(2)SO_(4),NH_(4)HSO_(4),CaSO_(4),and MgSO_(4).Significant positive correlation of Ca^(2+)with Mg^(2+)shows that they may originated mainly from crust.Significant positive correlation between SO_(4)^(2-)and F^(-)and Cl^(-)indicate that their source may be related to the non-ferrous metal smelting industry in Zhuzhou.Further correlation analysis shows that emissions from the non-ferrous metal smelting industry in the area have a large significant on SO_(4)^(2-)and F^(-)in precipitation,while Cl^(-)may still be emitted from other anthropogenic sources. 展开更多
关键词 Acid rain pH Chemical composition Neutralization factor Correlation analysis
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Gravity Change Caused by Heavy Rainfall Detected by A gPhone Gravimeter in Zhengzhou,China 被引量:1
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作者 Lelin Xing Yufei Han +1 位作者 Xiaowei Niu Lei Bai 《Journal of Earth Science》 SCIE CAS CSCD 2024年第4期1273-1276,共4页
The short-term effect of heavy rainfall on gPhone gravimeter observation at Zhengzhou Seismic Station is investigated.According to the observation data during Jul.17–20,2021,the corrected gravity residual reflects th... The short-term effect of heavy rainfall on gPhone gravimeter observation at Zhengzhou Seismic Station is investigated.According to the observation data during Jul.17–20,2021,the corrected gravity residual reflects the gravimetric response caused by heavy rainfall.The observed gravity change is dominated by the local effect considering topographic effect on gravity.The deduced water depth near the observation station is about 300 mm. 展开更多
关键词 GRAVITY gravity change GRAVIMETER heavy rain Zhengzhou
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RAIN-128算法的中间相遇攻击 被引量:1
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作者 杜小妮 郑亚楠 +1 位作者 梁丽芳 李锴彬 《电子与信息学报》 EI CAS CSCD 北大核心 2024年第1期327-334,共8页
RAIN是一族SPN结构的轻量级分组密码算法,该算法具有软硬件实现效率高、安_全性强等特点。中间相遇攻击被广泛应用于分组密码算法的安全性分析中。该文通过分析RAIN-128的结构特性和截断差分特征,利用差分枚举技术分别构造了4轮和6轮中... RAIN是一族SPN结构的轻量级分组密码算法,该算法具有软硬件实现效率高、安_全性强等特点。中间相遇攻击被广泛应用于分组密码算法的安全性分析中。该文通过分析RAIN-128的结构特性和截断差分特征,利用差分枚举技术分别构造了4轮和6轮中间相遇区分器,给出了8轮及10轮的中间相遇攻击。当攻击轮数为8轮时,预计算阶段的时间复杂度为2^(68)次8轮RAIN-128加密,存储复杂度为2^(75)bit,在线攻击阶段的时间复杂度为2^(109)次8轮加密,数据复杂度是2^(72)个选择明文;当攻击轮数为10轮时,预计算阶段的时间复杂度为2^(214)次10轮加密,存储复杂度为2^(219)bit,在线攻击阶段的时间复杂度为2^(109)次10轮加密,数据复杂度是2^(72)个选择明文,分析结果显示,RAIN-128可以抵抗中间相遇攻击,并具有较高的安全冗余。 展开更多
关键词 分组密码 rain-128 中间相遇攻击 差分枚举技术
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Effect Evaluation of CBL Combined with Rain Classroom Teaching Method in Medical Statistics 被引量:3
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作者 Man Luo Xiaofang Zhang Wei Liu 《Open Journal of Applied Sciences》 2024年第5期1204-1213,共10页
Objective: To explore the application effect of CBL combined with rain classroom teaching method in medical statistics courses. Methods: The undergraduate students of medical imaging technology in 2019 and 2020 in a u... Objective: To explore the application effect of CBL combined with rain classroom teaching method in medical statistics courses. Methods: The undergraduate students of medical imaging technology in 2019 and 2020 in a university were selected as the research objects. A cluster sampling method was used to select 79 undergraduate students from 2019 in the control group and 75 undergraduate students from 2020 in the experimental group. Traditional teaching method and CBL combined with rain classroom teaching method was used in the control group and experimental group respectively. The final examination scores of the two groups were compared. In experimental group, the correlation between the average score in the rain classroom and the final examination score was tested, and the teaching effect was evaluated. Results: The average score of final examination in experimental group and control group was 79.13 ± 10.32 points and 71.54 ± 14.752 points, respectively, which had a statistically significant difference (Z = 2.586, P = 0.012);the final examination scores of the students in the experimental group were positively correlated with the average scores of the rain classroom (r = 0.372, P = 0.001), and the proportion of satisfaction in the experimental group was 94.7%. Conclusion: The CBL combined with rain classroom teaching method can improve the teaching effectiveness of medical statistics courses. 展开更多
关键词 rain Classroom CBL Medical Statistics
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Spatiotemporal characteristics of seed rain and soil seed bank of artificial Caragana korshinskii Kom. forest in the Tengger Desert, China 被引量:1
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作者 SHEN Jianxiang WANG Xin +9 位作者 WANG Lei WANG Jiahui QU Wenjie ZHANG Xue CHANG Xuanxuan YANG Xinguo CHEN Lin QIN Weichun ZHANG Bo NIU Jinshuai 《Journal of Arid Land》 SCIE CSCD 2024年第4期550-566,共17页
Vegetation restoration and reconstruction are effective approaches to desertification control and achieving social and economic sustainability in desert areas.However,the self-succession ability of native plants durin... Vegetation restoration and reconstruction are effective approaches to desertification control and achieving social and economic sustainability in desert areas.However,the self-succession ability of native plants during the later periods of vegetation restoration remains unclear.Therefore,this study was conducted to bridge the knowledge gap by investigating the regeneration dynamics of artificial forest under natural conditions.The information of seed rain and soil seed bank was collected and quantified from an artificial Caragana korshinskii Kom.forest in the Tengger Desert,China.The germination tests were conducted in a laboratory setting.The analysis of species quantity and diversity in seed rain and soil seed bank was conducted to assess the impact of different durations of sand fixation(60,40,and 20 a)on the progress of vegetation restoration and ecological conditions in artificial C.korshinskii forest.The results showed that the top three dominant plant species in seed rain were Echinops gmelinii Turcz.,Eragrostis minor Host.,and Agropyron mongolicum Keng.,and the top three dominant plant species in soil seed bank were E.minor,Chloris virgata Sw.,and E.gmelinii.As restoration period increased,the density of seed rain and soil seed bank increased first and then decreased.While for species richness,as restoration period increased,it gradually increased in seed rain but decreased in soil seed bank.There was a positive correlation between seed rain density and soil seed bank density among all the three restoration periods.The species similarity between seed rain or soil seed bank and aboveground vegetation decreased with the extension of restoration period.The shape of the seeds,specifically those with external appendages such as spines and crown hair,clearly had an effect on their dispersal,then resulting in lower seed density in soil seed bank.In addition,precipitation was a crucial factor in promoting rapid germination,also resulting in lower seed density in soil seed bank.Our findings provide valuable insights for guiding future interventions during the later periods of artificial C.korshinskii forest,such as sowing and restoration efforts using unmanned aerial vehicles. 展开更多
关键词 ecological restoration soil seed bank seed rain artificial forest vegetation desertification Caragana korshinskii Tengger Desert
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Chemical characteristics of long-term acid rain and its impact on lake water chemistry:A case study in Southwest China
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作者 Liuyi Zhang JiaWang +3 位作者 Shuxiao Wang Chunbo Wang Fumo Yang Tingzhen Li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第4期121-131,共11页
The chemical composition of acid rain and its impact on lake water chemistry in Chongqing,China,from 2000 to 2020 were studied in this study.The regional acid rain intensity is affected jointly by the acid gas emissio... The chemical composition of acid rain and its impact on lake water chemistry in Chongqing,China,from 2000 to 2020 were studied in this study.The regional acid rain intensity is affected jointly by the acid gas emissions and the neutralization of alkaline substances.The pH of precipitation experienced three stages of fluctuating decline,continuous improvement,and a slight correction.Precipitation pH showed inflection points in 2010,mainly due to the total control actions of SO_(2)and NO_(x)implemented in 2011.The total ion concentrations in rural areas and urban areas were 489.08μeq/L and 618.57μeq/L,respectively.The top four ions were SO_(4)^(2-),Ca^(2+),NH_(4)^(+)and NO_(3)^(-),which accounted for more than 90%of the total ion concentration,indicating the anthropogenic effects.Before 2010,SO_(4)^(2-)fluctuated greatly while NO_(3)^(-)continued to rise;however,after 2010,both SO_(4)^(2-)and NO_(3)^(-)began to decline rapidly,with the rates of-12.03μeq/(L·year)and-4.11μeq/(L·year).Because the decline rate of SO_(4)^(2-)was 2.91 times that of NO_(3)^(-),the regional acid rain has changed from sulfuric acid rain to mixed sulfuric and nitric acid rain.The lake water is weakly acidic,with an average pH of 5.86,and the acidification frequency is 30.00%.Acidification of lake water is jointly affected by acid deposition and acid neutralization capacity of lake water.Acid deposition has a profound impact on water acidification,and nitrogen(N)deposition,especially reduced N deposition,should be the focus of future research. 展开更多
关键词 Acid rain Chemical composition NEUTRALIZATION Nitrogen deposition Water acidification
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Plant life form determines spatiotemporal variability and climate response of plant seed rain in subtropical forests
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作者 Yuyang Xie Zehao Shen +2 位作者 Xuejing Wang Liu Yang Jie Zhang 《Forest Ecosystems》 SCIE CSCD 2024年第2期193-201,共9页
Spatiotemporal variation of seed rain reflects the response of plants in terms of their reproductive strategy to environmental gradients.In this study,we collected seeds from four sites in the Dalaoling Nature Reserve... Spatiotemporal variation of seed rain reflects the response of plants in terms of their reproductive strategy to environmental gradients.In this study,we collected seeds from four sites in the Dalaoling Nature Reserve,Hubei Province,China,between 2011 and 2014,measured seed output and seed mass as seed rain traits,and compared their interannual and elevational variation.Then,we ran phylogenetic generalized mixed linear models(PGLMMs) to explore the effects of temperature and precipitation as well as interspecific differences on seed rain,and fitted the best regression models for seed rain vs.weather of canopy and understory species.The results showed no correlation between values of seed output and seed mass.However,the variation of the two traits showed significantly positive correlation.Seed output of canopy species generally decreased with increasing elevation,and showed significant interannual difference;however,seed output of understory species and seed mass for both canopy and understory species did not show consistency tends along elevational or in interannual variation.Seed output was significantly affected by temperature and precipitation,while seed mass mainly varied due to interspecific differences.Weather explained more the variation of the seed output of canopy species than that of understory species,with R^(2) values of 43.0%and 29.9%,respectively.These results suggested that canopy plants contributed more to the reproductive dynamics of the whole communities,and the canopy's buffer effect on the underground weakened the response of understory plants to weather variation in terms of their reproductive strategy. 展开更多
关键词 Seed rain Seed output Seed mass ELEVATION Interannual variation Lifeform
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A New Algorithm of Rain Type Classification for GPM Dual-Frequency Precipitation Radar in Summer Tibetan Plateau
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作者 Yunfei FU Liu YANG +4 位作者 Zhenhao WU Peng ZHANG Songyan GU Lin CHEN Sun NAN 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2024年第11期2093-2111,共19页
In this study,a new rain type classification algorithm for the Dual-Frequency Precipitation Radar(DPR)suitable over the Tibetan Plateau(TP)was proposed by analyzing Global Precipitation Measurement(GPM)DPR Level-2 dat... In this study,a new rain type classification algorithm for the Dual-Frequency Precipitation Radar(DPR)suitable over the Tibetan Plateau(TP)was proposed by analyzing Global Precipitation Measurement(GPM)DPR Level-2 data in summer from 2014 to 2020.It was found that the DPR rain type classification algorithm(simply called DPR algorithm)has mis-identification problems in two aspects in summer TP.In the new algorithm of rain type classification in summer TP,four rain types are classified by using new thresholds,such as the maximum reflectivity factor,the difference between the maximum reflectivity factor and the background maximum reflectivity factor,and the echo top height.In the threshold of the maximum reflectivity factors,30 d BZ and 18 d BZ are both thresholds to separate strong convective precipitation,weak convective precipitation and weak precipitation.The results illustrate obvious differences of radar reflectivity factor and vertical velocity among the three rain types in summer TP,such as the reflectivity factor of most strong convective precipitation distributes from 15 d BZ to near 35 d BZ from 4 km to 13 km,and increases almost linearly with the decrease in height.For most weak convective precipitation,the reflectivity factor distributes from 15 d BZ to 28 d BZ with the height from 4 km to 9 km.For weak precipitation,the reflectivity factor mainly distributes in range of 15–25 d BZ with height within 4–10 km.It is also shows that weak precipitation is the dominant rain type in summer TP,accounting for 40%–80%,followed by weak convective precipitation(25%–40%),and strong convective precipitation has the least proportion(less than 30%). 展开更多
关键词 satellite precipitation radar rain type classification method Tibetan Plateau strong convective precipitation
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Diagnosis of the Kinetic Energy of the“21·7”Extreme Torrential Rainfall Event in Henan Province,China
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作者 Xiuping YAO Ruoying LI +1 位作者 Xiaohong BAO Qiaohua LIU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2024年第1期73-83,共11页
An extreme torrential rain(ETR)event occurred in Henan Province,China,during 18-21 July 2021.Based on hourly rain-gauge observations and ERA5 reanalysis data,the ETR was studied from the perspective of kinetic energy(... An extreme torrential rain(ETR)event occurred in Henan Province,China,during 18-21 July 2021.Based on hourly rain-gauge observations and ERA5 reanalysis data,the ETR was studied from the perspective of kinetic energy(K),which can be divided into rotational wind(V_(R))kinetic energy(K_(R)),divergent wind kinetic energy(K_(D)),and the kinetic energy of the interaction between the divergent and rotational winds(K_(RD)).According to the hourly precipitation intensity variability,the ETR process was divided into an initial stage,a rapid increase stage,and maintenance stage.Results showed that the intensification and maintenance of ETR were closely related to the upper-level K,and most closely related to the upperlevel K_(R),with a correlation coefficient of up to 0.9.In particular,the peak value of hourly rainfall intensity lagged behind the K_(R) by 8 h.Furthermore,diagnosis showed that K transformation from unresolvable to resolvable scales made the ETR increase slowly.The meridional rotational wind(u_(R))and meridional gradient of the geopotential(φ)jointly determined the conversion of available potential energy(APE)to K_(R) through the barotropic process,which dominated the rapid enhancement of K_(R) and then caused the rapid increase in ETR.The transportation of K by rotational wind consumed K_(R),and basically offset the K_(R) produced by the barotropic process,which basically kept K_(R) stable at a high value,thus maintaining the ETR. 展开更多
关键词 extreme torrential rain rotational kinetic energy kinetic energy generation and transport barotropic process
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庆阳北石窟寺风驱雨崖面潮湿分布的CFD模拟研究
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作者 孟祥武 王永昊 +1 位作者 裴强强 韩增阳 《文物保护与考古科学》 北大核心 2025年第5期149-156,共8页
近些年,庆阳北石窟崖体受降水侵蚀、洞窟渗水等问题频发,严重威胁着北石窟寺石窟文物本体的安全保存。其中,风驱雨作为北石窟主要的水害因素之一,对其崖面潮湿分布情况亟待揭示。通过庆阳北石窟计算流体力学(CFD)风驱雨模拟,以石窟崖面... 近些年,庆阳北石窟崖体受降水侵蚀、洞窟渗水等问题频发,严重威胁着北石窟寺石窟文物本体的安全保存。其中,风驱雨作为北石窟主要的水害因素之一,对其崖面潮湿分布情况亟待揭示。通过庆阳北石窟计算流体力学(CFD)风驱雨模拟,以石窟崖面潮湿占比作为评价指标,评估了现有临时防雨棚对北石窟风驱雨有显著的遮蔽作用;同时探究了在不同高度、不同悬挑距离以及不同降雨强度下的崖面潮湿分布与占比情况。分析结果表明:当悬挑距离为2 m时,可以对崖面部分区域产生较为理想的遮蔽效果;当悬挑距离为3~4 m时,可以对崖面整体区域起到更为理想的遮蔽效果。研究表明,通过调整崖面的悬挑距离,可以有效改善北石窟崖面的潮湿状况,建议在设计和实施保护措施时,充分考虑悬挑距离和高度,以实现对石窟崖面的最佳保护效果。 展开更多
关键词 风驱雨 北石窟寺 CFD 潮湿分布 潮湿占比
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