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常彬

常彬

泉州文化遗产研究院,讲师


西安交通大学工学博士,受邀担任npj Heritage ScienceInternational Journal of Architectural HeritageIndoor and Built EnvironmentThermal Science and Engineering ProgressPlant and SoilCogent Social Sciences等国际学术期刊审稿人。


研究方向

主要从事土遗址预防性保护、遗址环境监测与调控,以及人工智能与文物保护交叉研究


教育背景

2020.09 – 2025.06 西安交通大学 人居环境与建筑工程学院,地球与人居环境科学及工程专业,工学博士

2022.10 – 2023.10 美国加州大学河滨分校 环境科学系,联合培养博士

2017.09 – 2020.06 西安交通大学 人居环境与建筑工程学院,环境工程专业,工学硕士

2013.09 – 2017.06 南京林业大学 材料科学与工程学院,能源与动力工程专业,工学学士


科研项目

2027 – 2029国家自然科学基金青年科学基金项目(C类)/复杂山地气候下半开放展示古窑遗址劣化作用机制及保护方法,主持

2026 – 2029福建省社会科学基金青年项目/海上丝绸之路视域下福建窑址遗产预防性保护及展示利用研究,主持

2024 – 2025陕西省重点研发计划项目/馆藏土遗址干裂与盐分局部富集病害超声波补水保护技术研究,参与

2021 – 2024国家自然科学基金面上项目/土壤-空气耦合下馆藏遗址文物病害环境致因及赋存环境调控理论研究,参与


学术成果

[1]. Chang B*, Sun XN, Sun J, Chen MH. Sustainable microenvironment control for earthen heritage sites in archaeological museums using atomized water[J]. Indoor and Built Environment, 2026, Accept

[2]. Tu YW, Chen TM, Zhang WJ, Chang B*. Microstructural and Chemical Characteristics of Glaze Flaking in Hongzhou Kiln Celadon, China[J]. Coatings, 2026, 16(5): 560.

[3]. Chang B, Tu YW, Yang XG, Fu F, Zhan CF, Chen MH, Luo XL*. Prediction of the Effects of Indoor Relative Humidity on Moisture and Salt Migration in Earthen Sites at the Emperor Qin’s Mausoleum Site Museum[J]. npj Heritage Science, 2026, 14(1): 18.

[4]. 常彬李佳轩李库马涛顾兆林罗昔联*. 超声波雾化技术在汉阳陵土遗址补水保护实验[J]. 西北大学学报(自然科学版),2025552):379-388.

[5]. Chang B, Li JX, Li K, Luo XL*, Gu ZL*. Prevention of Dry Cracking of Excavated Earthen Sites at Han Yangling Museum Using Ultrasonic Wetting [J]. International Journal of Architectural Heritage, 2025, 19(2): 216-232.

[6]. Xia Y, Chang B, Yu CW, Gu ZL, Luo XL*. Evaluating the impact threshold of soluble salts on preservation of earthen site in Emperor Qin Shi Huang’s mausoleum [J]. Indoor and Built Environment, 2025, 34(2): 388-401.

[7]. Chang B, Li JX, Feng ZB, Li H, Fu F, Luo XL*, Gu ZL*. Dynamic modeling of the moisture and salt's transport in the unearthed terracotta warriors of emperor Qin's mausoleum museum, China [J]. International Communications in Heat and Mass Transfer, 2024, 156: 107664.

[8]. Chang B, Shen C, Luo XL*, Hu TF, Gu ZL*. Moisturizing an analogous earthen site by ultrasonic water atomization within Han Yangling Museum, China [J]. Journal of Cultural Heritage, 2024, 66: 294-303.

[9]. Wang YK, Li JX, Xia Y, Chang B, Luo XL*. A case study investigation-based experimental research on transport of moisture and salinity in semi-exposed relics [J]. Heritage Science, 2024, 12(1): 9.

[10]. Li JX, Huang XY, Chang B, Feng ZB, Gu ZL, Luo XL*. Independent local environment control for visitor and relics area within site museums by displacement ventilation [J]. Applied Thermal Engineering, 2024, 257: 124459.

[11]. Chang B, Liu X, Luo XL*, Feng ZB, Gu ZL. Mold growth under near-saturated preservation environment of unearthed relics within archaeological museums [J]. Sustainable Cities and Society, 2023, 93: 104517.

[12]. Huang XY, Luo XL*, Shen C, Chang B, Gu ZL. Local heating of a visitor corridor within a large site museum exhibition hall via an integrated jet ventilation and air curtain system [J]. Journal of Building Engineering, 2023, 69: 106206.

[13]. Xu W, Chang B, Zhang YW, Gu ZL, Yu CW, Luo XL*. Study on barriers of water salt transfers in earthen sites by plastic-coated sand [J]. Atmosphere, 2023, 14(2): 236.

[14]. Shi F, Chang B, Li JX, Li XR, Yang S, Luo XL*. Evaluating Daylighting and Preservation in Heritage Halls: Shading Retrofit Case Study at Chengdu Jiangnan Pavilion Street Site Museum [J]. Sustainability, 2023, 15(24): 16929.

[15]. Chang B, Wen H, Yu CW, Luo XL*, Gu ZL. Preservation of earthen relic sites against salt damages by using a sand layer [J]. Indoor and Built Environment, 2022, 31(4): 1142-1156.

[16]. Dang YX, Luo XL*, Chang B, Huang XY, Feng ZB, Gu ZL. Local attachment ventilation system for the unearthed relic preservation area within site museum [J]. Sustainable Cities and Society, 2022, 77: 103537.

[17]. Chang B, Dang YX, Luo XL*, Yu CW, Gu ZL*. Sustainability of evaporative cooling system for environment control for preservation of unearthed historical sites within archaeological museums in China [J]. Sustainability, 2020, 12(23): 9882.

[18]. Chang B, Luo XL*, Shen YQ, Li J, Gu ZL. Experimental investigation on an evaporative cooling system for the environmental control in archaeology museum [J]. Environmental Science and Engineering, 2020, 201-209.

[19]. Luo XL*, Chang B, Tian W, Li J, Gu ZL*. Experimental study on local environmental control for historical site in archaeological museum by evaporative cooling system [J]. Renewable Energy, 2019, 143A: 798-809.

[20]. 李娟罗昔联*常彬顾兆林. 回风口位置对文物保存环境置换通风调控性能的影响 [J]. 西安交通大学学报2019535):115-122.