[1] 修晓青, 李建林, 李文启, 等. 储能系统商业模式及其优化规划方法 [J]. 电力建设, 2019, 40(6): 41-48. DOI:  10.3969/j.issn.1000-7229.2019.06.005.

XIU X Q, LI J L, LI W Q, et al. Research on business model and optimization planning method of energy storage station [J]. Electric power construction, 2019, 40(6): 41-48. DOI:  10.3969/j.issn.1000-7229.2019.06.005.
[2] 崔文倩, 魏军强, 赵云灏, 等. 双碳目标下含重力储能的配电网多目标运行优化 [J]. 电力建设, 2023, 44(4): 45-53. DOI:  10.12204/j.issn.1000-7229.2023.04.006.

CUI W Q, WEI J Q, ZHAO Y H, et al. Multi-objective operation optimization of distribution network with gravity energy storage under double carbon target [J]. Electric power construction, 2023, 44(4): 45-53. DOI:  10.12204/j.issn.1000-7229.2023.04.006.
[3] 史沁鹏, 郭茹, 洪剑锋, 等. 直线电机在竖井式重力储能中的应用和研究 [J/OL]. 南方能源建设, 1-10 [2024-12-10]. https://www.energychina.press/cn/article/doi/ 10.16516/j.ceec.2024-244. DOI: 10.16516/j. ceec. 2024-244.

SHI Q P, GUO R, HONG J F, et al. Application and research of linear motors in vertical gravity energy storage [J/OL]. Southern energy construction, 1-10 [2024-12-10]. https://www.energychina.press/cn/article/doi/ 10.16516/j.ceec.2024-244. DOI: 10.16516/j. ceec. 2024-244.
[4] 曾小超, 史沁鹏, 洪剑锋, 等. 竖井式重力储能系统模型构建及功率优化 [J/OL]. 南方能源建设, 1-11 [2024-12-10]. https://www.energychina.press/cn/article/doi/ 10.16516/j.ceec.2024-319. DOI:  10.16516/j.ceec.2024-319.

ZENG X C, SHI Q P, HONG J F, et al. Model establishment and power optimization of vertical gravity energy storage system [J/OL]. Southern energy construction, 1-11 [2024-12-10]. https://www.energychina.press/cn/article/doi/ 10.16516/j.ceec.2024-319. DOI:  10.16516/j.ceec.2024-319.
[5] JING H, ZHANG Q, ZHANG R J, et al. Aerodynamic characteristics analysis of ultra-high-speed elevator with different hoistway structures [J]. International journal of structural stability and dynamics, 2022, 22(2): 2250020. DOI:  10.1142/S0219455422500201.
[6] 崔瀚文. 高速电梯轿厢交会过程气动特性及参数影响研究 [D]. 济南: 山东建筑大学, 2021. DOI:  10.27273/d.cnki.gsajc.2021.000088.

CUI H W. Research on aerodynamic characteristics and parameter influence of high speed elevator car rendezvous process [D]. Ji'nan: Shandong Jianzhu University, 2021. DOI:  10.27273/d.cnki.gsajc.2021.000088.
[7] 李超越. 超高速电梯环隙流场流动行为与气动声学特性研究 [D]. 济南: 山东建筑大学, 2024. DOI:  10.27273/d.cnki.gsajc.2024.000228.

LI C Y. Research on the flow behavior and aeroacoustic characteristics of the annular flow field in the ultra-high-speed elevator [D]. Ji'nan: Shandong Jianzhu University, 2024. DOI:  10.27273/d.cnki.gsajc.2024.000228.
[8] 陈西忍, 叶文华, 颜晗, 等. 超高速电梯导流罩气动特性与耗能研究 [J]. 中国工程机械学报, 2023, 21(5): 492-497. DOI:  10.15999/j.cnki.311926.2023.05.021.

CHEN X R, YE W H, YAN H, et al. Research on aerodynamic characteristics and energy consumption of ultra-high-speed elevator fairing [J]. Chinese journal of construction machinery, 2023, 21(5): 492-497. DOI:  10.15999/j.cnki.311926.2023.05.021.
[9] 王田天, 黄大飞, 王钰, 等. 升力翼对高速列车通过隧道时气动效应的影响 [J]. 中南大学学报(自然科学版), 2024, 55(5): 1702-1712. DOI:  10.11817/j.issn.1672-7207.2024.05.004.

WANG T T, HUANG D F, WANG Y, et al. Influence of aerodynamic effect of wings on high-speed trains passing through tunnels [J]. Journal of Central South University (science and technology), 2024, 55(5): 1702-1712. DOI:  10.11817/j.issn.1672-7207.2024.05.004.
[10] 周细赛, 刘堂红, 陈争卫, 等. 头部主型线变化对列车隧道交会气动性能的影响 [J]. 中南大学学报(自然科学版), 2018, 49(2): 493-501. DOI:  10.11817/j.issn.1672-7207.2018.02.031.

ZHOU X S, LIU T H, CHEN Z W, et al. Influence of head outlines on aerodynamic effect of two trains intersecting in tunnel [J]. Journal of Central South University (science and technology), 2018, 49(2): 493-501. DOI:  10.11817/j.issn.1672-7207.2018.02.031.
[11] LI F L, LUO J J, WANG L, et al. Analysis of aerodynamic effects and load spectrum characteristics in high-speed railway tunnels [J]. Journal of wind engineering and industrial aerodynamics, 2021, 216: 104729. DOI:  10.1016/j.jweia.2021.104729.
[12] 周苗苗, 刘堂红, 夏玉涛, 等. 不同速度模式下列车通过隧道引起的压力波的比较研究(英文) [J]. 中南大学学报(英文版), 2022, 29(8): 2639-2653. DOI:  10.1007/s11771-022-5098-2.

ZHOU M M, LIU T H, XIA Y T, et al. Comparative investigations of pressure waves induced by trains passing through a tunnel with different speed modes [J]. Journal of Central South University, 2022, 29(8): 2639-2653. DOI:  10.1007/s11771-022-5098-2.
[13] QIU L M, ZHOU H F, WANG Z L, et al. A stepped-segmentation method for the high-speed theoretical elevator car air pressure curve adjustment [J]. Energies, 2020, 13(10): 2585. DOI:  10.3390/en13102585.
[14] 卫梦杰, 刘峰, 邸娟, 等. 高速列车通过最不利隧道气动阻力数值分析 [J]. 西安交通大学学报, 2024, 58(1): 167-177 DOI:  10.7652/xjtuxb202401016.

WEI M J, LIU F, DI J, et al. Numerical analysis of aerodynamic resistance for high-speed trains passing through the most unfavorable tunnel [J]. Journal of Xi'an Jiaotong University, 2024, 58(1): 167-177. DOI:  10.7652/xjtuxb202401016.
[15] 王家斌, 高广军, 张琰, 等. 高速列车周围风雪运动特性及转向架区域积雪成因分析 [J]. 铁道学报, 2024, 46(7): 30-41. DOI:  10.3969/j.issn.1001-8360.2024.07.004.

WANG J B, GAO G J, ZHANG Y, et al. Movement characteristics of wind and snow around high-speed trains and causes of snow accumulation in bogie regions [J]. Journal of the China railway society, 2024, 46(7): 30-41. DOI:  10.3969/j.issn.1001-8360.2024.07.004.
[16] 高广军, 张普阳, 商雯斐, 等. 流线型部位风阻制动板对高速列车气动特性的影响分析 [J]. 中南大学学报(自然科学版), 2023, 54(9): 3708-3718. DOI:  10.11817/j.issn.1672-7207.2023.09.030.

GAO G J, ZHANG P Y, SHANG W F, et al. Analysis of influence of aerodynamic braking plates installed on streamlined parts on aerodynamic characteristics of high-speed train [J]. Journal of Central South University (science and technology), 2023, 54(9): 3708-3718. DOI:  10.11817/j.issn.1672-7207.2023.09.030.
[17] 刘庆杰. 超高速双轿厢电梯井道活塞风特性及多参数影响分析 [D]. 济南: 山东建筑大学, 2024. DOI:  10.27273/d.cnki.gsajc.2024.000572.

LIU Q J. Analysis of piston wind characteristics and multi-parameter effects in the hoistway of the ultra-high-speed double car elevator [D]. Ji'nan: Shandong Jianzhu University, 2024. DOI:  10.27273/d.cnki.gsajc.2024.000572.
[18] 孟令飞, 张雷, 刘赛赛, 等. 高速电梯含导流罩的轿厢气动特性仿真分析 [J]. 中国电梯, 2023, 34(9): 16-18.

MENG L F, ZHANG L, LIU S S, et al. Simulation analysis of aerodynamic characteristics of high-speed elevator car with shroud [J]. China elevator, 2023, 34(9): 16-18.
[19] 史沁鹏, 郭茹, 洪剑锋, 等. 竖井式重力储能系统发电效率影响因素 [J/OL]. 南方能源建设, 1-12 [2024-12-10]. https://www.energychina.press/cn/article/doi/ 10.16516/j.ceec.2024-247?viewType=HTML. DOI:  10.16516/j.ceec.2024-247.

SHI Q P, GUO R, HONG J F, et al. Influencing factors of generation efficiency of vertical gravity energy storage [J/OL]. Southern energy construction, 1-12 [2024-12-10]. https://www.energychina.press/cn/article/doi/ 10.16516/j.ceec.2024-247?viewType=HTML. DOI:  10.16516/j.ceec.2024-247.
[20] 曾天. 通井道高速电梯多运行工况气动特性优化设计及其应用研究 [D]. 杭州: 浙江大学, 2018.

ZENG T. Aerodynamic optimization design of single-shaft multi-car high speed elevator in multiple operation conditions and its application [D]. Hangzhou: Zhejiang University, 2018.