[1] SHI Y, YANG H Q, ZHOU S H, et al. Effect of atmospheric pressure on performance of AEA and air entraining concrete[J]. Advances in Materials Science and Engineering, 2018, 2018(1): 6528412.
[5] ZENG X H, LAN X L, ZHU H S, et al. Investigation on air-voids structure and compressive strength of concrete at low atmospheric pressure[J]. Cement and Concrete Composites, 2021, 122: 104139.
[7] LI Y, WANG Z D, WANG L. The influence of atmospheric pressure on air content and pore structure of air-entrained concrete[J]. Journal of Wuhan University of Technology-Mater Sci Ed, 2019, 34(6): 1365-1370.
[8] GE X, GE Y, LI Q F, et al. Effect of low air pressure on the durability of concrete[J]. Construction and Building Materials, 2018, 187: 830-838.
[13] SU F, MA X, LIN Y, et al. Exploring the factors influencing the abrasion resistance of hydraulic concrete based on underwater steel ball test[J]. Case Studies in Construction Materials, 2024, 20: e03020.
[14] CHATZOPOULOS A, SIDERIS K K, TASSOS C. Production of concretes using slag aggregates: contribution of increasing the durability and sustainability of constructions[J]. Case Studies in Construction Materials, 2021, 15: e00711.
[17] GAO W Z, QI J Y, YANG X, et al. Experimental investigation on bubble departure diameter in pool boiling under sub-atmospheric pressure[J]. International Journal of Heat and Mass Transfer, 2019, 134: 933-947.
[18] HUO J Y, WANG Z J, CHEN H X, et al. Impacts of low atmospheric pressure on properties of cement concrete in plateau areas: a literature review[J]. Materials, 2019, 12(9): 1384.
[19] LAN X L, ZENG X H, ZHU H S, et al. Experimental investigation on fractal characteristics of pores in air-entrained concrete at low atmospheric pressure[J]. Cement and Concrete Composites, 2022, 130: 104509.