Numerical simulation analysis on multi-layer low-temperature heating method of asphalt pavement in hot in-place recycling沥青路面就地热再生多层低温加热方法的数值仿真

被引:0
作者
Deng-cheng Ma
Fen Lan
机构
[1] Chang’an University,National Engineering Laboratory for Road Maintenance Equipment
[2] Xi’an Municipal Facilities Management Center,undefined
来源
Journal of Central South University | 2020年 / 27卷
关键词
asphalt pavement; hot in-place recycling; heating speed; heating uniformity; multi-layer; low-temperature; 沥青路面; 就地热再生; 加热速度; 加热均匀性; 多层低温加热;
D O I
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中图分类号
学科分类号
摘要
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.
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页码:3793 / 3806
页数:13
相关论文
共 105 条
  • [1] Cao R-j(2019)Comparative eco-efficiency analysis on asphalt pavement rehabilitation alternatives: Hot in-place recycling and milling-and-filling [J] Journal of Cleaner Production 210 1385-1395
  • [2] Leng Z(2014)Asphalt pavements with high reclaimed asphalt pavement content [J] Transportation Research Record: Journal of the Transportation Research Board 2456 161-169
  • [3] Hsu S C(2016)Comparing life-cycle cost analysis of full-depth reclamation versus traditional pavement maintenance and rehabilitation strategies [J] Transportation Research Record: Journal of the Transportation Research Board 2573 49-59
  • [4] Aurangzeb Q(2016)Influences of preheating temperature of RAP on properties of hot-mix recycled asphalt mixture [J] Journal of Testing and Evaluation 44 762-769
  • [5] Al-Qadi I L(2015)Influence of ageing on the properties of bitumen from asphalt mixtures with recycled concrete aggregates [J] Journal of Cleaner Production 101 165-173
  • [6] Braham A(2014)Weather effects on recycled concrete used as a paving material for roads [J] Natural Hazards 72 109-117
  • [7] Ma T(2014)Performance characterization of hot in-place recycled asphalt mixtures [J] Journal of Transportation Engineering 140 04014029-11
  • [8] Huang X(2020)Study on impact of variables to pavement preheating operation in HIR by using FEM [J] Construction and Building Materials 243 1-599
  • [9] Zhao Y(2016)The feasibility of DEM to analyze the temperature field of asphalt mixture [J] Construction and Building Materials 106 592-7
  • [10] Zhang Y(2016)Study of tunnel pavements behaviour in fire by using coupled cone calorimeter-FTIR analysis [J] Fire Safety Journal 81 1-131