[1] 俞孔坚,李迪华,袁弘,等. 海绵城市理论与实践[J]. 城市规划,2015,39(6):26-36.[2] Gu Zhangyi, Wang Jinchang, Fang Chenze,et al. Study on relaxation damage properties of high viscosity asphalt sand under uniaxial compression[J]. Advances in Civil Engineering,2018,2018:1-12.[3] Geng Litao, Xu Qian, Ren Ruibo, et al. Performance research of high-viscosity asphalt mixture as deck-paving materials for steel bridges[J]. Road Materials and Pavement Design,2017,18(1):208-220.[4] 马峰,李思琪,傅珍,等. 苯乙烯-丁二烯嵌段共聚物与废橡胶粉复合改性高黏沥青及混合料性能研究[J]. 化工新型材料,2021,49(2):254-258.[5] 倪富健,覃勉,刘清泉,等. TPS改性剂在排水性沥青混合料中的应用研究[J]. 公路交通科技,2004,4(10):17-21.[6] 董泽蛟,周涛,栾海,等. SBS/橡胶粉复合改性SH型混合生物沥青工艺及机理[J].中国公路学报,2019,32(4): 215-225.[7] Liang Ming, Xin Xue, Fan Weiyu,et al. Investigation of the rheological properties and storage stability of CR/SBS modified asphalt[J]. Construction and Building Materials,2015,74:235-240.[8] Ren Shisong, Liu Xueyan ,Wang Haopeng, et al. Evaluation of rheological behaviors and anti-aging properties of recycled asphalts using low-viscosity asphalt and polymers[J]. Journal of Cleaner Production,2020,253:120048.[9] Bahram S, Reza I. Performance evaluation of rubberized and modified porous asphalt mixtures[J]. Construction and Building Materials,2016,107:165-171. [10] Zhou Lu, Huang Weidong, Sun Lijun, et al. Analysis of quantification and mechanism of SBS modifier in SBS-modified asphalt[J]. Journal of Materials in Civil Engineering,2021,33(7):04021158.[11] Nie Xinyao, Hou Tianjue, Yao Hongru, et al. Effect of C9 petroleum resins on improvement in compatibility and properties of SBS-modified asphalt[J]. Petroleum Science and Technology,2019,37(14):1704-1712.[12] Lesueur D. The colloidal structure of bitumen: Consequences on the rheology and on the mechanisms of bitumen modification[J]. Advances in Colloid and Interface science,2009,145(1/2):42-82.[13] Zhu Jiqing, Birgisson B, Kringos N. Polymer modification of bitumen: Advances and challenges[J]. European Polymer Journal,2014,54:18-38. [14] Hong Wei, Mo Liantong, Pan Changluan, et al. Investigation of rejuvenation and modification of aged asphalt binders by using aromatic OIL-SBS polymer blend[J]. Construction and Building Materials,2020,231:117154.[15] Boysen R B, Schabron J F. The automated asphaltene determinator coupled with saturates aromatics, and resins separation for petroleum residua characterization[J]. Energy Fuels,2013,27(8):4654-4661.[16] 韩松. C 9石油树脂的研究现状[J]. 当代化工,2008,37(5):503-506.[17] 丛玉风,徐磊,黄玮,等. SBS-C 9石油树脂改性沥青的研究[J]. 建筑材料学报,2016,19(3):602-605.[18] 聂鑫垚,姚鸿儒,李政,等. C 9石油树脂对高黏度改性沥青性能的影响[J]. 石油学报(石油加工),2019,35(1):176-182.[19] 黄卫东,颜川奇,刘少鹏,等. 溶解性胶粉SBS复合改性沥青低温性能评价[J]. 建筑材料学报,2016,19(6):1088-1091.[20] Dong Fuqiang, Yu Xin, Liu Shengjie, et al. Rheological behaviors and microstructure of SBS/CR composite modified hard asphalt[J]. Construction and Building Materials,2016,115:285-293. [21] 中华人民共和国交通运输部. JTG F 20—2011公路工程沥青及沥青混合料试验规程[S]. 北京:人民交通出版社,2011,161-163.[22] National highway and transportation association. AASHTO-T 315 Standard method of test for determining the rheological properties of asphalt binder using a dynamic shear rheometer (DSR)[S].USA: American Association of State Highway and Transportation Officials,2016:1-10.[23] Yan Yu, Roque R, Hernando D, et al. Cracking performance characterisation of asphalt mixtures containing reclaimed asphalt pavement with hybrid binder[J]. Road Materials and Pavement Design,2019,20(2):347-366.[24] National highway and transportation association. AASHTO TP 70-1 Multiple stress creep recovery (MSCR) test of asphalt binder using a dynamic shear rheometer (DSR)[S]. Washington: American Association of State Highway and Transportation Officials,2009:1-11.[25] 李立寒,耿韩,孙艳娜,等. 高粘度沥青性能评价指标与标准试验[J]. 同济大学学报,2010,38(8):1157-1159.[26] Shi Jingtao, Zhao Pinhui, Fan Weiyu, et al. Facile preparation and application performance evaluation of SBS/C 9 petroleum resin blends as modifier for high viscosity asphalt[J]. Construction and Building Materials,2020,262:120073.[27] Qin Xiantao, Zhu Siyue, He Xiang, et al. High temperature properties of high viscosity asphalt based on rheological methods[J]. Construction and Building Materials,2018,186:476-483.[28] Hu Mingjun , Sun Guoqiang, Sun Daquan, et al. Accelerated weathering simulation on rheological properties and chemical structure of high viscosity modified asphalt: A temperature acceleration effect analysis[J]. Construction and Building Materials,2021,268:121120.[29] 蔡莉莉. 利用多应力重复蠕变恢复(MSCR)方法评价改性沥青胶结料高温性能[J]. 石油沥青,2013,27(6):21-24.[30] 李立寒,耿韩,孙艳娜. 高黏度沥青黏度的评价方法与评价指标[J]. 建筑材料学报,2010,13(3):352-362.