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Modeling mechanistic responses in asphalt pavements under three-dimensional tire-pavement contact pressure 被引量:9
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作者 胡小弟 L.F.WALUBITA 《Journal of Central South University》 SCIE EI CAS 2011年第1期250-258,共9页
A three dimensional finite element program incorporating actually measured vertical tire-pavement contact pressure(TPCP) was utilized for modeling the mechanistic responses in asphalt concrete(AC) layers by simulating... A three dimensional finite element program incorporating actually measured vertical tire-pavement contact pressure(TPCP) was utilized for modeling the mechanistic responses in asphalt concrete(AC) layers by simulating various vehicle motions:stationary and non-stationary(i.e.in acceleration or deceleration mode).Analysis of the results indicated the following items.1) It is critical to use the vertical TPCP as the design control criteria for the tensile strains at the bottom of the AC layer when the base layer modulus is lower in magnitude(e.g.≤400 MPa);however,when the base layer modulus is higher in magnitude(e.g.≥7 000 MPa),the horizontal TPCP and the tensile strains in the X-direction at the surface of the AC layer should also be considered as part of the design response criteria.2) The definition of "overload" needs to be revised to include tire pressure over-inflation,i.e.,a vehicle should be considered to be overloaded if the wheel load exceeds the specification and/or the tire inflation pressure is higher than the specification.3) Light trucks have more structural impact on the strain responses and pavement design when the thickness of the surfacing AC layer is thinner(e.g.≤50 mm).4) The acceleration of a vehicle does not significantly impact the AC surface distresses such as rutting at the top of the upgrade slopes or intersections;however,vehicle deceleration can dramatically induce horizontal shear strains and consequently,aggravate shoving and rutting problems at the highway intersections.Evidently,these factors should be taken into account during mechanistic stress-strain modeling and structural design of asphalt pavements. 展开更多
关键词 asphalt pavement tire-pavement contact pressure vehicle acceleration mechanistic response three-dimensional finiteelement
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Analytical prediction and field validation of transient temperature field in asphalt pavements 被引量:5
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作者 陈嘉祺 李亮 汪浩 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第12期4872-4881,共10页
This work presented the development and validation of an analytical method to predict the transient temperature field in the asphalt pavement.The governing equation for heat transfer was based on heat conduction radia... This work presented the development and validation of an analytical method to predict the transient temperature field in the asphalt pavement.The governing equation for heat transfer was based on heat conduction radiation and convection.An innovative time-dependent function was proposed to predict the pavement surface temperature with solar radiation and air temperature using dimensional analysis in order to simplify the complex heat exchange on the pavement surface.The parameters for the time-dependent pavement surface temperature function were obtained through the regression analysis of field measurement data.Assuming that the initial pavement temperature distribution was linear and the influence of the base course materials on the temperature of the upper asphalt layers was negligible,a close-form analytical solution of the temperature in asphalt layers was derived using Green's function.Finally,two numerical examples were presented to validate the model solutions with field temperature measurements.Analysis results show that the solution accuracy is in agreement with field data and the relative errors at a shallower depth are greater than those at a deeper one.Although the model is not sensitive to dramatic changes in climatic factors near the pavement surface,it is applicable for predicting pavement temperature field in cloudless days. 展开更多
关键词 asphalt pavement transient temperature field heat transfer dimensional analysis regression analysis Green’s function
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Effects of asphalt pavement texture on hydroplaning threshold speed 被引量:6
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作者 Mohammad Hosein DEHNAD Ali KHODAII 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第1期256-264,共9页
Hydroplaning speed can be affected by pavement texture depth,thickness of water film,tire pressure and tread depth.In this study,to understand the influence of pavement texture on the hydroplaning speed,a new lab-scal... Hydroplaning speed can be affected by pavement texture depth,thickness of water film,tire pressure and tread depth.In this study,to understand the influence of pavement texture on the hydroplaning speed,a new lab-scale apparatus has been designed and manufactured.The lack of proportion between linear movement of vehicle shaft and the wheel rotation was found to be a good index to determine hydroplaning threshold.A 5%drop in the ratio of wheel-to-axle rotation has been assumed as an index to determine hydroplaning threshold.Based on the measures,a simplified model was developed that is able to predict the hydroplaning speed depending on pavement's texture characteristics.The results indicated that a 77%increase in mean texture depth cause 9%increase in hydroplaning threshold speed. 展开更多
关键词 asphalt pavement HYDROPLANING surface texture hydroplaning test machine
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Field measurement of strain response for typical asphalt pavement 被引量:7
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作者 PAN Qin-xue ZHENG Ce-ce +5 位作者 Lü Song-tao QIAN Guo-ping ZHANG Jun-hui WEN Pi-hua MILKOS Borges Cabrera ZHOU Huai-de 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第2期618-632,共15页
In order to reveal the changing law of the mechanical response of asphalt pavements under the action of vehicle load and provide references for the design of durable pavements,three typical asphalt pavement structures... In order to reveal the changing law of the mechanical response of asphalt pavements under the action of vehicle load and provide references for the design of durable pavements,three typical asphalt pavement structures with flexible base(S1),combined base(S2),and semi-rigid base(S3)were selected to perform field strain tests under static and dynamic load using the fiber Bragg grating optical sensing technology.The changing characteristics of the strain field along the horizontal and depth directions of pavements were analyzed.The results indicate that the most unfavorable asphalt pavement layers were the upper-middle surface layer and the lower base layer.In addition,the most unfavorable loading positions on the surface layer and the base layer were the center of wheel load and the gap center between two wheels,respectively.The most unfavorable layer of the surface layers gradually moved from the lower layer to the upper layer with the increase of base layer modulus.The power function relationships between structural layer strain and vehicle speed were revealed.The semi-rigid base asphalt pavement was the most durable pavement type,since its strain value was lower compared to those of the other structures. 展开更多
关键词 asphalt pavement strain duration curve load position vehicle speed fiber Bragg grating optical sensors
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Application of signal processing and support vector machine to transverse cracking detection in asphalt pavement 被引量:6
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作者 YANG Qun ZHOU Shi-shi +1 位作者 WANG Ping ZHANG Jun 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2451-2462,共12页
Vibration-based pavement condition(roughness and obvious anomalies)monitoring has been expanding in road engineering.However,the indistinctive transverse cracking has hardly been considered.Therefore,a vehicle-based n... Vibration-based pavement condition(roughness and obvious anomalies)monitoring has been expanding in road engineering.However,the indistinctive transverse cracking has hardly been considered.Therefore,a vehicle-based novel method is proposed for detecting the transverse cracking through signal processing techniques and support vector machine(SVM).The vibration signals of the car traveling on the transverse-cracked and the crack-free sections were subjected to signal processing in time domain,frequency domain and wavelet domain,aiming to find indices that can discriminate vibration signal between the cracked and uncracked section.These indices were used to form 8 SVM models.The model with the highest accuracy and F1-measure was preferred,consisting of features including vehicle speed,range,relative standard deviation,maximum Fourier coefficient,and wavelet coefficient.Therefore,a crack and crack-free classifier was developed.Then its feasibility was investigated by 2292 pavement sections.The detection accuracy and F1-measure are 97.25%and 85.25%,respectively.The cracking detection approach proposed in this paper and the smartphone-based detection method for IRI and other distress may form a comprehensive pavement condition survey system. 展开更多
关键词 asphalt pavement transverse crack detection vehicle vibration support vector machine classification model
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Numerical simulation analysis on multi-layer low-temperature heating method of asphalt pavement in hot in-place recycling 被引量:4
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作者 MA Deng-cheng LAN Fen 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第12期3793-3806,共14页
Asphalt mixture pavement reheating is one of the important steps in hot in-place recycling(HIR).To improve the heating speed of asphalt pavement in HIR,based on the numerical analysis model of asphalt mixture heating ... Asphalt mixture pavement reheating is one of the important steps in hot in-place recycling(HIR).To improve the heating speed of asphalt pavement in HIR,based on the numerical analysis model of asphalt mixture heating process,a new multi-layer low-temperature heating method(MLHM)was proposed.Considering input heat flux,the thermal capacity and thermal resistance of asphalt mixture,the heat transfer model was established based on energy conservation law.By heating the asphalt mixture in layers,it changes the situation that the heat energy can only be input from the upper surface of the asphalt mixture pavement.Through the simulation of the heating method of asphalt mixture in the existing technology,the result shows that the existing heating methods lead to serious aging or charring of the asphalt mixture.By MLHM,the upper and the bottom of the asphalt mixture are heated at the same time,and the heating temperature is lower than other heat methods,which not only reduces the heating thickness and increases the heating area of the asphalt mixture pavement,but also improves the heating speed,saves the energy resource and ensures the heating quality.Especially,by MLHM,the heating uniformity is better and speed is faster. 展开更多
关键词 asphalt pavement hot in-place recycling heating speed heating uniformity MULTI-LAYER LOW-TEMPERATURE
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Characterizing properties of magnesium oxychloride cement concrete pavement 被引量:4
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作者 ZHENG Wei-xin XIAO Xue-ying +5 位作者 CHANG Cheng-gong DONG Jin-mei WEN Jing HUANG Qing ZHOU Yuan LI Ying 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第12期3410-3419,共10页
The performance of magnesium oxychloride cement concrete(MOCC)in road engineering in the arid region in northwest China was investigated over a two-year period.Two categories of MOCC pavement,light-burnt magnesia conc... The performance of magnesium oxychloride cement concrete(MOCC)in road engineering in the arid region in northwest China was investigated over a two-year period.Two categories of MOCC pavement,light-burnt magnesia concrete road(Road-L)and dolomite concrete road(Road-D),were prepared with light-burnt magnesia and a mixture of light-burnt magnesia and caustic dolomite(1:3 by mass),respectively.Variations in the properties of the MOCC pavement,such as compressive and flexural strength,mineralogical phase,and microstructure,after being exposed to two rainy seasons in the field were monitored.The compressive strength of the cored samples were conducted after being aged for 28 d,and the compressive and flexural strength were tested at ages of 1,2,3,28,90,180,270,360 and 720 d.The mineralogical phase and microstructure of the pavement were also analyzed by X-ray diffraction(XRD)and scanning electron microscopy(SEM).The results demonstrate that MOCC pavement obtained desirable compressive and flexural strengths after curing for 3 d for Road-L and 28 d for Road-D.Both of the compressive and flexural strength of Road-L and Road-D decreased slightly after experiencing two rainy seasons,with the major hydration products being 5Mg(OH)2 MgCl28H2O(Phase 5)and 3Mg(OH)2 MgCl28H2O(Phase 3).The decomposition of Phase 5 is mainly responsible for reducing the mechanical strength of the MOCC pavement. 展开更多
关键词 magnesium oxychloride cement concrete(MOCC) pavement mechanical strength MICROSTRUCTURE
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Solution of pavement temperature field in“Environment-Surface”system through Green's function 被引量:2
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作者 陈嘉祺 李亮 +2 位作者 赵炼恒 但汉成 姚辉 《Journal of Central South University》 SCIE EI CAS 2014年第5期2108-2116,共9页
In order to simplify the boundary conditions of pavement temperature field,the "Environment-Surface" system which considered the natural environment and pavement surface was established.Based on this system,... In order to simplify the boundary conditions of pavement temperature field,the "Environment-Surface" system which considered the natural environment and pavement surface was established.Based on this system,the partial differential equations of the one-dimensional heat conduction in the pavement were established on the basis of the heat transfer theory.Furthermore,the function forms of the initial and boundary conditions of the equations were created through the field experiments.The general solution of the pavement one-dimensional heat conduction partial differential equations was acquired by using Green's function,and the explicit expression of pavement temperature field under specific constraint conditions was derived.For the purpose of analysis,the pavement temperatures in different seasons were calculated using the explicit expression of pavement temperature field,and the calculation accuracy was analyzed through the comparison between measured and calculated values.Then,the relationship between fitting accuracy and calculation accuracy of pavement temperatures was analyzed.The analysis results show that: the usage of "Environment-Surface" system simplifies the calculation of pavement temperature field; the relative error between calculated and measured values is generally less than 7% and is seldom influenced by seasons; there is a positive correlation between the calculation accuracy and the fitting accuracy of pavement surface temperature; high fitting accuracy would result in less error of pavement temperature prediction. 展开更多
关键词 road engineering pavement temperature field "Environment-Surface" system heat transfer theory Green's function
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System Identification Method for Evaluating the Effect of Thickness Error on Backcalculated Pavement Layer Moduli 被引量:1
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作者 ZHONG Yan-hui WANG Fu-ming ZHANG Bei CAI Ying-chun 《上海交通大学学报》 EI CAS CSCD 北大核心 2004年第z2期182-187,共6页
Based on system identification theory and FWD testing data, the effect of thickness error on backcalculating pavement layer moduli is studied and the method of singular value decomposition (SVD) is presented to solve ... Based on system identification theory and FWD testing data, the effect of thickness error on backcalculating pavement layer moduli is studied and the method of singular value decomposition (SVD) is presented to solve the morbidity problem of sensitivity matrix in this paper.The results show that the thickness error has great effects on the backcalculated pavement layer moduli. The error of backcalculated moduli can be controlled within the range of ±15% by limiting the thickness error within the range of ±5%. 展开更多
关键词 system identification SINGULAR value decomposition (SVD) backcalculation pavement FALLING weight DEFLECTOMETER (FWD) MODULI thickness
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Evaluation of reclaimed asphalt pavement binder stiffness without extraction and recovery 被引量:1
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作者 马涛 黄晓明 U.B.Hussain 《Journal of Central South University》 SCIE EI CAS 2011年第4期1316-1320,共5页
A new testing procedure to estimate the low-temperature stiffness of the reclaimed asphalt pavement (RAP) binder was developed. In the testing procedure, the SuperpaveTM Bending Beam Rheometer (BBR) with special m... A new testing procedure to estimate the low-temperature stiffness of the reclaimed asphalt pavement (RAP) binder was developed. In the testing procedure, the SuperpaveTM Bending Beam Rheometer (BBR) with special modifications and binder blending charts by Asphalt Institute were utilized. Modifications involved the development of a new kind of sample mold and different testing parameters were made to BBR testing procedure to capture the theological properties of bitumen mortars produced by mixing fresh binder with fine RAP materials or RAP aggregate. The stiffness relationship between binder and bitumen mortar was established based on the BBR test results. The blended binder stiffness in bitumen RAP mortar was estimated from the RAP mortar stiffness based on the binder-mortar relationship. And finally, the RAP binder stiffness was estimated from the blended binder and fresh binder stiffness based on the blending charts by Asphalt Institute. The results indicate that the new procedure can capture the rheological properties of bitumen mortar and can be used to estimate the low temperature stiffness of RAP binder without binder extraction and/or any chemical treatments. 展开更多
关键词 aged binder reclaimed asphalt pavement MORTAR STIFFNESS Bending Beam Rheometer blending chart
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Study on Performances of the Concrete Pavement from Zincilate
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作者 WANG Yong YAN Ya'nan 《矿物学报》 CAS CSCD 北大核心 2013年第S1期103-103,共1页
The use of zincilate production of concrete pavement brick both use of industrial solid waste, protect the environment and promoting building energy efficiency, there are huge comprehensive benefits. Based on the guiz... The use of zincilate production of concrete pavement brick both use of industrial solid waste, protect the environment and promoting building energy efficiency, there are huge comprehensive benefits. Based on the guizhou bijie zincilate as the main raw material preparation from concrete pavement brick, and the main factors which influence the quality of the products was investigated. The test results show that: Concrete pavement brick compressive strength at 28 days with zinc slag volume increases, zinc slag admixture is 40%, 28 days compressive strength is more than 32 MPa. 展开更多
关键词 zincilate CONCRETE pavement BRICK compression STRENGTH
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基于多物理场耦合的光伏/热一体化路面能效仿真评估
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作者 王超 崔奥 周波超 《北京工业大学学报》 北大核心 2025年第6期705-714,共10页
为了提高光伏路面综合能效并为电池散热,引入光伏/热一体化技术,形成由钢化玻璃面板、光伏电池、蛇形铜管和丙烯腈-丁二烯-苯乙烯(acrylonitrile-butadiene-styrene,ABS)塑料底座组成的光伏/热一体化路面(pavement integrated photovolt... 为了提高光伏路面综合能效并为电池散热,引入光伏/热一体化技术,形成由钢化玻璃面板、光伏电池、蛇形铜管和丙烯腈-丁二烯-苯乙烯(acrylonitrile-butadiene-styrene,ABS)塑料底座组成的光伏/热一体化路面(pavement integrated photovoltaic/thermal,PIPVT)。采用COMSOL Multiphysics进行仿真,将光模块、电模块和固态模块中的热传导和热对流同步耦合,构建PIPVT多物理场仿真模块并展开研究。以2022年北京市的气象数据为基础,选取每个月的第15日代表该月气候情况进行发电性能与集热性能预测。结果表明,太阳能辐照强度与光伏模块发电效率呈正相关,但过高的辐照强度引起的高温会使其对模块发电效率的促进效果降低,冬季的发电效率和集热效率均较低。此外,以北京工业大学为例,预测其校园路面全部采用PIPVT覆盖,一年可获得电量约170万kW·h,满足校本部超3个月的办公用电量,同时,可将约3.4万t的20℃水加热超过30℃。 展开更多
关键词 道路工程 光伏/热一体化路面(pavement integrated photovoltaic/thermal PIPVT) 多物理场仿真 集热性能 发电性能 一次能源节约效率
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飞机轮胎-湿滑道面相互作用SPH算法仿真分析 被引量:2
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作者 蔡靖 黄钰岱 +2 位作者 李琪 李岳 戴轩 《北京航空航天大学学报》 北大核心 2025年第1期53-62,共10页
针对飞机在湿滑道面上的滑水问题,采用光滑粒子流体动力学(SPH)算法建立了飞机轮胎-湿滑道面有限元模型,与流固耦合算法(CEL)模型进行对比,显示了SPH算法的优越性,进而分析了不同轮胎速度及水膜厚度对轮胎与湿滑道面相互作用的影响规律... 针对飞机在湿滑道面上的滑水问题,采用光滑粒子流体动力学(SPH)算法建立了飞机轮胎-湿滑道面有限元模型,与流固耦合算法(CEL)模型进行对比,显示了SPH算法的优越性,进而分析了不同轮胎速度及水膜厚度对轮胎与湿滑道面相互作用的影响规律。结果表明,SPH模型得到的临界滑水速度与CEL模型结果相差不超过5%;舰首波、侧向羽流等流体特征更为明显立体;平均运算效率较CEL模型提高36.5%。利用SPH模型分析可得,道面支撑力随轮胎速度增加呈先平缓下降再急速下降的趋势,水膜厚度为3~13 mm时,急速下降段所在轮胎速度区间为170~260 km/h,基本处于A320飞机的着陆滑跑速度范围内,应增强对飞机滑水事故风险的防范;位移阻力随着轮胎速度增加呈先增大后减小的趋势,且在轮胎达到临界滑水速度时取得最大值,进而提出利用位移阻力最大值确定临界滑水速度的方法;侧向羽流最大溅水高度随轮胎速度增加呈先升高后降低的趋势,在接近临界滑水速度时达到最大值;舰首波最大溅水高度低于侧向羽流最大溅水高度,且随轮胎速度增加而降低,达到临界滑水速度时舰首波接近消失,2种溅水特征的最大溅水高度值均低于A320飞机发动机的最小离地高度0.680 m,不会对发动机产生影响。 展开更多
关键词 交通运输工程 轮胎-道面相互作用 光滑粒子流体动力学算法 临界滑水速度 道面支撑力 位移阻力 溅水高度
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基于变权组合的沥青混凝土路面损坏状况指数预测 被引量:4
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作者 李海莲 周思汝 +2 位作者 李清华 刘忠磊 贾卫东 《兰州大学学报(自然科学版)》 北大核心 2025年第1期35-42,共8页
以某高速公路若干路段为工程背景,运用灰色关联度分析确定影响路面破损的关键因素,基于GM(1,N)模型与BP神经网络模型对路面损坏状况指数进行预测,结合组合原理和赋权思想提出3种变权组合预测模型.通过误差检验对各模型予以综合评价,变... 以某高速公路若干路段为工程背景,运用灰色关联度分析确定影响路面破损的关键因素,基于GM(1,N)模型与BP神经网络模型对路面损坏状况指数进行预测,结合组合原理和赋权思想提出3种变权组合预测模型.通过误差检验对各模型予以综合评价,变权组合预测模型能充分利用各模型的优势,有效提高路面使用性能预测的准确性,并根据特定路段预测结果择优选取.4个路段的预测结果与实际值的均方根误差分别为3.21×10^(-5)、4.24×10^(-5)、2.13×10^(-5)、4.22×10^(-3).路面损坏状况作为路面使用性能评价的组成部分,需要准确把握路面损坏状况指数的发展趋势. 展开更多
关键词 灰色关联度分析 沥青混凝土路面 GM(1 N)模型 路面损坏状况指数 变权组合模型
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水泥生物酶复合固化红砂岩土的力学与耐久性能 被引量:1
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作者 关宏信 张海翔 +2 位作者 杨海荣 杨飞 郑天一 《硅酸盐通报》 北大核心 2025年第2期765-773,共9页
为研究生物酶土壤固化剂与水泥复合固化红砂岩土的性能,探究复合固化红砂岩土用于高速公路底基层的可行性,以及研究生物酶土壤固化剂掺量对固化土力学性能与耐久性能的影响,并结合扫描电子显微镜微观试验分析稳定机理。结果表明:生物酶... 为研究生物酶土壤固化剂与水泥复合固化红砂岩土的性能,探究复合固化红砂岩土用于高速公路底基层的可行性,以及研究生物酶土壤固化剂掺量对固化土力学性能与耐久性能的影响,并结合扫描电子显微镜微观试验分析稳定机理。结果表明:生物酶土壤固化剂的掺入可提高固化土的无侧限抗压强度、劈裂强度、抵抗贯入强度和弹性模量,最佳掺量为2%;相同应力比下,复合固化土的疲劳寿命相比水泥单一固化土增长不明显,相同应力下,复合固化土的疲劳寿命相比水泥单一固化土显著增加。本研究为复合固化红砂岩土用于高速公路底基层提供参考。 展开更多
关键词 生物酶土壤固化剂 红砂岩土 路面底基层 力学性能 耐久性能
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仿生物基温拌再生沥青混合料路用性能影响因素 被引量:1
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作者 杨彦海 孙溢 +1 位作者 金鑫 杨野 《建筑材料学报》 北大核心 2025年第4期340-349,共10页
通过正交试验设计,优化了仿生物基温拌再生沥青混合料的空隙率、高低温性能及水稳定性,得到最佳组合参数.同时,采用傅里叶红外光谱(FTIR)技术,分析了仿生物基温拌再生剂对老化苯乙烯-丁二烯-苯乙烯嵌段共聚物(SBS)改性沥青的作用机理.... 通过正交试验设计,优化了仿生物基温拌再生沥青混合料的空隙率、高低温性能及水稳定性,得到最佳组合参数.同时,采用傅里叶红外光谱(FTIR)技术,分析了仿生物基温拌再生剂对老化苯乙烯-丁二烯-苯乙烯嵌段共聚物(SBS)改性沥青的作用机理.结果表明:在试件击实成型温度为130℃、沥青混合料回收料(RAP)掺量为50%且仿生物基温拌再生剂掺量为4.5%条件下,温拌再生沥青混合料的性能达到最优;掺入4.5%仿生物基温拌再生剂能够有效恢复老化SBS改性沥青的官能团结构,这进一步验证了仿生物基温拌再生沥青混合料宏观性能优化的准确性. 展开更多
关键词 道路工程 温拌再生沥青混合料 仿生物基温拌再生剂 路用性能
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沥青路面降温技术研究进展与展望 被引量:2
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作者 金娇 皮培屹 +3 位作者 刘培 高玉超 张扮 LIU Pengfei 《北京工业大学学报》 北大核心 2025年第6期736-755,共20页
沥青路面高温会带来车辙等病害,并增加城市热岛效应,这对路面的使用质量、使用寿命和人类的生活环境产生不利影响,所以急需开发行之有效的沥青路面降温技术,以减少车辙等病害和缓解城市热岛效应。现有的沥青路面降温技术分为被动降温技... 沥青路面高温会带来车辙等病害,并增加城市热岛效应,这对路面的使用质量、使用寿命和人类的生活环境产生不利影响,所以急需开发行之有效的沥青路面降温技术,以减少车辙等病害和缓解城市热岛效应。现有的沥青路面降温技术分为被动降温技术和主动降温技术,而主动降温技术能够更为有效地降低沥青路面温度,且具有智能性、自发性等特点。主动降温技术对应的降温沥青路面主要有热反射路面、相变调温路面、热阻路面、透水路面、能量收集路面、高导热路面。针对上述沥青路面主动降温技术,总结了沥青路面主动降温技术的原理特点、应用方式、运用于沥青路面的实际降温及路用效果,以及降温技术的新方法、新思路,探讨了沥青路面主动降温技术的缺陷和局限性,并对未来沥青路面降温技术发展趋势进行展望。 展开更多
关键词 沥青路面 降温技术 热反射 热传导 能量收集 能量转换
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改进YOLOv5s的路面坑槽目标检测模型 被引量:1
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作者 赵江平 王欣然 吴立舟 《中国安全科学学报》 北大核心 2025年第1期67-74,共8页
为提高道路安全巡检工作中路面坑槽隐患的检测效率和自动化水平,降低交通事故发生概率,构建一种基于改进YOLOv5s的路面坑槽隐患智能检测模型。在原YOLOv5s网络中加入自适应空间特征融合(ASFF)模块,将主干网络替换为FasterNet网络,引入... 为提高道路安全巡检工作中路面坑槽隐患的检测效率和自动化水平,降低交通事故发生概率,构建一种基于改进YOLOv5s的路面坑槽隐患智能检测模型。在原YOLOv5s网络中加入自适应空间特征融合(ASFF)模块,将主干网络替换为FasterNet网络,引入轻量通道注意力(ECA)模块;通过消融试验分析改进模块对检测模型性能的影响,验证目标检测效果,并开发交互式可视化检测界面。结果表明:改进后的模型精度、召回率和平均检测精度分别提升了4.1%、9.9%和5.6%。较原网络有较为显著的提升,具有良好的检测效果,能够满足路面坑槽自动化检测的应用需求,提高巡检效率,减少因路面坑槽导致的交通事故。 展开更多
关键词 YOLOv5s 路面坑槽 目标检测 自适应空间特征融合(ASFF) FasterNet
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园路铺装碳排放的生命周期评价 被引量:1
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作者 王沛永 逯瑞星 《风景园林》 北大核心 2025年第1期67-75,共9页
[目的]园林工程建造阶段是风景园林项目中碳足迹比重最大的部分,而园路铺装又是工程建造碳排放最多的分项。园路铺装的材料生产、工程建造及运输、使用维护以及材料回收再利用,各阶段都产生了大量的碳排放。评估不同面层类型园路铺装的... [目的]园林工程建造阶段是风景园林项目中碳足迹比重最大的部分,而园路铺装又是工程建造碳排放最多的分项。园路铺装的材料生产、工程建造及运输、使用维护以及材料回收再利用,各阶段都产生了大量的碳排放。评估不同面层类型园路铺装的生命周期碳排放量,可以为园林工程低碳减排研究提供理论依据。[方法]以25种常见的园路铺装为例,构建园路铺装生命周期碳排放计算模型,厘清并计算各种园路铺装的生命周期碳排放量,并将结果进行归一化处理和评价。[结果]发现25种园路铺装中,生命周期内碳排放量最高的3种园路铺装是胶粘石路面、防腐木路面、石灰岩路面;碳排放量最低的3种园路铺装是混凝土路面、再生骨料混凝土路面和压膜艺术地坪。而将碳排放量进行单位面积和年均处理后,碳排放量最高的3种园路铺装是胶粘石路面、透水混凝土砖路面、砂基透水砖路面;排放量最低的3种园路铺装是再生骨料混凝土路面、压膜艺术地坪和混凝土路面。[结论]将碳排放量计算结果和具体实践结合进行分析评价,得出园路铺装碳排放量生命周期评价结论:生命周期年均碳排放的高低与面层材料耐久性有较大的关系;混凝土作为园路铺装的基础性结构,在其上增加其他面层的做法会增加碳排放量;以高强、薄型材料作为园路铺装面层材料的路面,生命周期内所产生的碳排放较低;面层材料的寿命对年均碳排放量的影响高于其他因素。 展开更多
关键词 风景园林 园林工程 低碳园林建造 碳排放 铺装材料 生命周期评价
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路面材料应力-应变测试方法及设备研究综述
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作者 潘勤学 胡嘉 +5 位作者 郑健龙 吕松涛 张军辉 姜舜君 宋小金 周怀德 《土木工程学报》 北大核心 2025年第8期128-152,共25页
现行路面材料应力施加与测试方法难以实现三向独立及拉伸加载,真三轴仪可开展三向全应力状态下路用材料三轴力学性能试验,对路面结构与材料的设计及研究均具有重要意义。该文在综述国内外不同应力状态下路面(含岩土)方向材料应力-应变... 现行路面材料应力施加与测试方法难以实现三向独立及拉伸加载,真三轴仪可开展三向全应力状态下路用材料三轴力学性能试验,对路面结构与材料的设计及研究均具有重要意义。该文在综述国内外不同应力状态下路面(含岩土)方向材料应力-应变测试方法与设备测试原理、特点及发展现状的基础上,总结现行常用施加不同应力状态设备的技术特点,其中重点分析3类典型真三轴仪的应力施加方法及其优缺点,并对应变测量方法与技术进行归纳,据此提出路面材料真三轴试验设备的发展方向。结果表明:真三轴仪可准确模拟路用材料的实际受力状态,适用于三向不同应力状态下路面材料的强度、模量、本构模型等大部分材料力学特性研究;刚性加载真三轴仪可实现路面材料三向全应力状态组合,且采用三向滑动互扣式夹具可有效解决刚性加载板间的相互顶托、消除应力空白角和端部效应,使得试件的三向应力-应变均匀分布;LVDT位移传感器精度高、灵敏度及抗干扰性能好,较适合路面材料应变测试。据此建议采用滑动互扣式刚性加载真三轴仪及LVDT位移传感器进行三维复杂应力状态下路面材料的力学特性研究。 展开更多
关键词 路面材料 测试方法 真三轴 应力 应变 综述
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