【24】Hong Yidu, Zhang Y, Pei Xiongfei et al. A novel accident causation analysis model of hazardous chemical production accidents based on 2-4Model and Bayesian Network[J]. Process Safety and Environmental Protection, 2026, 205.(IF=7.8, 中科院二区, top 期刊)
【23】洪溢都, 彭庚, 章雨, 等. 微波辐射下煤岩颗粒间的电场强化机理研究[J]. 煤炭学报, 2026,51(7):4114−4136.(EI)
【22】孙晓婉, 洪溢都*, 龙盛壹, 等. 微波激励下煤岩颗粒间电场强化特性研究[J]. 煤炭学报, 2025, 50(03): 1597–1608. (EI)
【21】Sun Xiaowan, Long Shengyi, Hong Yidu, et al. Microwave induced plasma of coal particles by numerical simulation[J]. Fuel, 2025, 384. (IF=7.4, 中科院一区, top 期刊)
【20】Hong Yidu, Long Shengyi, Sun Xiaowan. Numerical Simulation of Microwave-Induced Cracking of Coal Containing Pyrite Powder Based on a Multi-Field Coupling Model[J]. APPLIED SCIENCES-BASEL, 2024, 14(24).(SCI)
【19】龙盛壹, 洪溢都*, 孙晓婉, 等. 搅拌模型下矿物的微波加热温升特性研究[J]. 中国矿业大学学报, 2024, 53(02): 318–333. (EI)
【18】孙晓婉, 龙盛壹, 阳富强, 洪溢都*. 福建省应急产业现状及发展对策[J]. 中国安全科学学报, 2023, 33(S1): 12–19.
【17】Huang Yujie, Guo Yong, Yang Fuqiang, Qiu Dongyang, Hong Yidu*. Inhibiting Effects of Inhibitors on Different Temperature Oxidation of Sulfide Ores[J]. Combustion Science and Technology, 2022, 2142043. (IF=1.9, 中科院四区)
【16】Yang Fuqiang, Guo Yong, Lai Yong, Hong Yidu*, Yuan Shuaiqi. Kinetic Analysis of Thermal Decomposition Process of Emulsion Explosive Matrix in the Presence of Sulfide Ores[J]. Sustainability, 2022, 14(18). (IF=3.9, 中科院三区)
【15】陈昊, 郭进, 王金贵, 洪溢都*. 破膜压力对氢气-甲烷-空气泄爆的影响[J]. 爆炸与冲击, 2022, 42(11): 163–172. (EI)
【14】张凯, 杜赛枫, 陈昊, 郭进, 王金贵, 洪溢都*. 泄爆和氮气惰化耦合作用对氢–空气爆炸影响的实验研究[J]. 爆炸与冲击, 2022, 42(12): 167–175. (EI)
【13】康硕, 洪溢都, 张建辉, 刘茹, 饶昱贝. 土体结构与含水量对弹性波传播特性的影响[J]. 科学技术与工程, 2022, 22(03): 945–952.
【12】饶昱贝, 刘祖文, 洪溢都. 含孔洞红砂岩超声波传播特性研究[J]. 采矿技术, 2021, 21(05): 195–197.
【11】洪溢都, 陈伯辉. 基于常规理化参数的瓦斯吸附量快速预测模型研究[C]//中国煤炭学会瓦斯地质专业委员会. 瓦斯地质与瓦斯治理(2020–2021)——中国煤炭学会瓦斯地质学术年会论文集. 中国矿业大学出版社, 2021: 8.
【10】Hong Yidu, Lin Baiquan, et al. Temperature rising characteristic of coal powder during microwave heating[J]. Fuel, 2021, 294(120495). (IF=7.4, 中科院一区, top 期刊)
【9】Hong Yidu, Lin Baiquan, et al. Image and ultrasonic analysis-based investigation of coal core fracturing by microwave energy[J]. International Journal of Rock Mechanics and Mining Sciences, 2020, 127: 104232. (IF=7.2, 中科院一区, top 期刊)
【8】Hong Yidu, Lin Baiquan, Nie Wen, Zhu Chuanjie, Wang Zheng, Li He. Microwave irradiation on pore morphology of coal powder[J]. Fuel, 2018, 227: 434–447. (IF=7.4, 中科院一区, top 期刊)
【7】Hong Yidu, Lin Baiquan, et al. Variable pore structure and gas permeability of coal cores after microwave irradiation[J]. Geofluids, 2018, 1–13. (IF=1.7, 中科院四区)
【6】Hong Yidu, Lin Baiquan, Zhu Chuanjie, Li He. Effect of microwave irradiation on petrophysical characterization of coals[J]. Applied Thermal Engineering, 2016, 102: 1109–1125. (IF=6.4, 中科院一区, top 期刊)
【5】Hong Yidu, Lin Baiquan, Li He, Dai Huaming, Zhu Chuanjie, Yao Hao. Three-dimensional simulation of microwave heating coal sample with varying parameters[J]. Applied Thermal Engineering, 2016, 93: 1145–1154. (IF=6.4, 中科院一区, top 期刊)
【4】Hong Yidu, Lin Baiquan, Zhu Chuanjie, Li He. Influence of microwave energy on fractal dimension of coal cores: implications from nuclear magnetic resonance[J]. Energy & Fuels, 2016, 30: 10253–10259. (IF=5.3, 中科院二区)
【3】Hong Yidu, Lin Baiquan, Zhu Chuanjie. Premixed methane/air gas deflagration simulations in closed-end and open-end tubes[J]. International Journal of Spray and Combustion Dynamics, 2016, 8: 271–284. (IF=1.6, 中科院四区)
【2】洪溢都, 林柏泉, 朱传杰. 开口型管道内瓦斯爆炸冲击波动压的数值模拟[J]. 爆炸与冲击, 2016, 36(02): 198–209. (EI)
【1】林柏泉, 洪溢都, 朱传杰, 等. 瓦斯爆炸压力与波前瞬态流速演化特征及其定量关系[J]. 爆炸与冲击, 2015, 35(01): 108–115. (EI)