纺织学报 ›› 2025, Vol. 46 ›› Issue (06): 250-260.doi: 10.13475/j.fzxb.20241201802
SHI Jia, LI Mengzhu, XIAO Boxiang(
)
摘要:
速度滑冰服装是重要的比赛装备,在提高运动表现和保护运动安全方面发挥着重要作用。为促进速度滑冰功能性服装设计制造技术的专业化应用与发展,首先结合速滑项目竞速特点介绍了速度滑冰服装功能需求和设计要素;然后从减阻、面料、结构3个方面,系统地总结分析了空气动力学减阻机制、减阻技术与工艺、面料减阻结构、面料力学性能与防护功能、版型结构设计,以及基于体型参数的个性化速滑服定制等内容的关键问题和技术研究进展,总结分析了减阻、面料、结构3个方面的现有技术方法优缺点及应用效果。分析认为:使用新材料新工艺并实现版型个性化智能化设计制作是满足运动员对速滑服装功能需求的有效途径,综合考虑减阻、面料性能和个性化需求,实现速滑服装样板的定量化计算与智能化生成是必然发展趋势,能够有效提高制版的效果和效率。
中图分类号:
| [1] | 李博, 刘翠佳, 杨威, 等. 滑得更快的科学:速度滑冰的运动生物学特征[J]. 体育科学, 2021, 41(8): 34-42. |
| LI Bo, LIU Cuijia, YANG Wei, et al. The science of skating faster: sport-biological profile of speed ska-ting[J]. China Sport Science, 2021, 41(8): 34-42. | |
| [2] | YANG Chenhao, XU Yongxin, YANG Yang, et al. Effectiveness of using compression garments in winter racing sports: a narrative review[J]. Frontiers in Physiology, 2020. DOI: 10.3389/fphys.2020.00970. |
| [3] | BROWNLIE W Len,KYLE R Chester. Evidence that skin suits affect long track speed skating perfor-mance[C]// PATRICK Drane, JAMES Sherwood. Engineering of Sport Conference 2012 (Procedia Engineering). Amsterdam: Elsevier,2012: 26-31. |
| [4] | BROWNLIE Len. Aerodynamic drag reduction in winter sports: the quest for free speed[J]. Proceedings of the Institution of Mechanical Engineers: Part P (Journal of Sports Engineering and Technology), 2021, 235(4): 365-404. |
| [5] | 蔺世杰, 郑伟涛, 马勇, 等. 不同雷诺数下速滑运动员阻力特性研究及减阻服装建议[J]. 北京服装学院学报(自然科学版), 2021, 41(4):1-8. |
| LIN Shijie, ZHENG Weitao, MA Yong, et al. Resistance characteristics of speed skater under different Reynolds numbers and suggestions for drag reduction clothing[J]. Journal of Beijing Institute of Fashion Technology(Natural Science Edition), 2021, 41(4):1-8. | |
| [6] | 高淑敏, 王永进. 基于皮肤形变的短道速滑服结构优化设计[J]. 北京服装学院学报(自然科学版), 2020, 40(3):21-28. |
| GAO Shumin, WANG Yongjin. Structure optimization design of short track speed skating suit based on skin deformation[J]. Journal of Beijing Institute of Fashion Technology(Natural Science Edition), 2020, 40(3):21-28. | |
| [7] | 马杰. 短道速度滑冰运动生物学特征研究进展[J]. 体育科学, 2021, 41(8):43-52. |
| MA Jie. Sport-biological profile of short track speed skating[J]. China Sport Science, 2021, 41(8):43-52. | |
| [8] |
KONINGS Marco J, ELFERINK-GEMSER Marije T, STOTER Inge K, et al. Performance characteristics of long-track speed skaters: a literature review[J]. Sports Medicine, 2015, 45:505-516.
doi: 10.1007/s40279-014-0298-z pmid: 25547998 |
| [9] | 郁天成. 速度滑冰运动员生理学特征研究进展[J]. 湖北体育科技, 2022, 41(12):1054-1059. |
| YU Tiancheng. Research progress on the physiological characteristics of speed skating athletes[J]. Hubei Sports Science and Technology, 2022, 41(12):1054-1059. | |
| [10] |
QUINN Andrew, LUN Victor, MCCALL John, et al. Injuries in short track speed skating[J]. American Journal of Sports Medicine, 2003, 31(4):507-510.
pmid: 12860536 |
| [11] | KHUYAGBAATAR Batbayar, PUREVSUREN Tserenchimed, PARK Won Man, et al. Interjoint coordination of the lower extremities in short-track speed skating[J]. Proceedings of the Institution of Mechanical Engineers: Part H (Journal of Engineering in Medicine), 2017, 231(10):987-993. |
| [12] | 刘楠. 短道速滑运动员运动损伤原因与防护措施[J]. 冰雪运动, 2019, 41(4):12-15. |
| LIU Nan. Causes and protective measures of sports injury of short track speed skaters[J]. China Winter Sport, 2019, 41(4):12-15. | |
| [13] | International Skating Union. Communication No. 2400: cut resistant clothing & protection equipment in short track speed skating[EB/OL]. (2024-12-01) [2024-12-01]. https://www.isu.org/inside-isu/isu-communications/communications/25921-isu-communication-2400/file. |
| [14] | International Skating Union. Protection equipment in speed skating and short track speed skating (Communication No.2586)[EB/OL].(2024-12-01) [2024-12-01] https://wwmglombardia2024.it/. |
| [15] | WANG Yanqing, WENG Ding, WEI Yuju, et al. Aerodynamic drag reduction on speed skating helmet by surface structures[J]. Applied Sciences, 2022. DOI: 10.3390/app13010130. |
| [16] | D'AUTEUIL Annick, LAROSE Guy L, ZAN Steven J. Relevance of similitude parameters for drag reduction in sport aerodynamics[C]// ANTON Sabo, PATRICIA Kafka, STEFAN Litzenberger, et al. The Engineering of Sport 8-Engineering Emotion (Procedia Engineering). Amsterdam: Elsevier, 2010:2393-2398. |
| [17] | CHOWDHURY Harun, ALAM Firoz. An experimental investigation on the aerodynamic drag coefficient and surface roughness properties of sport textiles[J]. Journal of The Textile Institute, 2014, 105(4):414-422. |
| [18] | 吴妍, 胡紫婷, 胡志远, 等. 基于速度滑冰上肢动态皮肤形变的服装结构研究[J]. 毛纺科技, 2022, 50(2):1-7. |
| WU Yan, HU Ziting, HU Zhiyuan, et al. Study on garment structure based on upper limb dynamic skin deformation in speed skating[J]. Wool Textile Journal, 2022, 50(2):1-7. | |
| [19] | HENDRIK Gerard Kuper, STERKEN Elmer. Do skin suits increase average skating speed[J]. Journal of Sports Technology, 2008, 1(4/5): 189-195. |
| [20] | 陈晓东, 何国胜, 杨秀峰, 等. 速度滑冰如何减小空气阻力[J]. 力学与实践, 2022, 44(2):458-465. |
| CHEN Xiaodong, HE Guosheng, YANG Xiufeng, et al. How to reduce air resistance in speed skating[J]. Mechanics in Engineering, 2022, 44(2):458-465. | |
| [21] | MOON Youngjin, SONG Jooho, KWON Kybeom, et al. Development of a functional speed skating uniform through aerodynamic analysis on knit textiles and uniforms[J]. Journal of Engineered Fibers and Fabrics, 2016, 11(4):64-75. |
| [22] | 邓凌, 刘莉, 吴妍, 等. 速滑服空气阻力模拟及减阻设计研究[J]. 棉纺织技术, 2024, 52(11):17-21. |
| DENG Ling, LIU Li, WU Yan, et al. CFD simulation study for drag reduction design of speed skating suit[J]. Cotton Textile Technology, 2024, 52(11):17-21. | |
| [23] | NANDO Timmer, LEO Veldhuis. The impact of skinsuit zigzag tape turbulators on speed skating perfor-mance[J]. Applied Science: Basel, 2021. DOI: 10.3390/app11030988. |
| [24] | PEDRO PÉrez-Soriano, GARCÍA-ROIG Á, ROBERTO Sanchis-Sanchis, et al. Influence of compression sportswear on recovery and performance: a systematic review[J]. Journal of Industrial Textiles, 2019, 48(9):1505-1524. |
| [25] | BISHOP Phillip, BALILONIS Gytis, DAVIS Kyle Jon, et al. Ergonomics and comfort in protective and sport clothing: a brief review[J]. Journal of Ergonomics, 2013. DOI: 10.4172/2165-7556.S2-005. |
| [26] | TEYEME Yetanawork, MALENGIER Benny, TESFAYE Tamrat, et al. A review of contemporary techniques for measuring ergonomic wear comfort of protective and sport clothing[J]. Autex Research Journal, 2021, 21(1):32-44. |
| [27] | 郭贤, 李亚运, 付明, 等. 低温复合环境冰雪运动服装保暖性能实验研究[J]. 北京服装学院学报(自然科学版), 2021, 41(4): 42-49. |
| GUO Xian, LI Yayun, FU Ming, et al. Experimental research on thermal insulation performance of ice and snow sports clothing in compound environment under low temperature[J]. Journal of Beijing Institute of Fashion Technology(Natural Science Edition), 2021, 41(4):42-49. | |
| [28] | 马瑜, 李翠翠, 马菡婧, 等. 冬季运动服装装备的功能性设计实践研究[J]. 包装工程, 2024, 45(8):328-336. |
| MA Yu, LI Cuicui, MA Hanjing, et al. Practical research on functional design of winter sportswear equipment[J]. Packaging Engineering, 2024, 45(8):328-336. | |
| [29] | SU Ting, YU Xuliang, CONG Honglian. Design and development of ultra-high molecular weight polyethylene seamless sportswear[J]. Journal of The Textile Institute, 2024. DOI: 10.1080/00405000.2024.2370601. |
| [30] | BRUBACHER Kristina, TYLER David, APEAGYEI Phoebe, et al. Evaluation of the accuracy and practicability of predicting compression garment pressure using virtual fit technology[J]. Clothing and Textiles Research Journal, 2023, 41(2):107-124. |
| [31] | CHENG Pengpeng, WANG Jianping, ZENG Xianyi, et al. Motion comfort analysis of tight-fitting sportswear from multi-dimensions using intelligence systems[J]. Textile Research Journal, 2022, 92(11/12):1843-1866. |
| [32] | 胡紫婷, 王兰敏, 张鸣雯, 等. 冰雪运动服装及装备的发展现状及研究进展[J]. 纺织导报, 2022(2):26-31. |
| HU Ziting, WANG Lanmin, ZHANG Mingwen, et al. Current development status and research progress of ice and snow sports apparel and equipment[J]. China Textile Leader, 2022(2): 26-31. | |
| [33] | ROSSI Michel Rene. Specific testing for performance sportswear[J]. Advanced Characterization and Testing of Textiles, 2018. DOI: 10.1016/B978-0-08-100453-1.00016-7. |
| [34] | 杨宸灏, 杨洋, 胡齐, 等. 紧身服装在冬奥竞速运动项目中的研究与应用现状[J]. 中国体育科技, 2020, 56(1):24-30. |
| YANG Chenhao, YANG Yang, HU Qi, et al. Research and application status of compression garment in winter olympics racing sports[J]. China Sport Science and Technology, 2020, 56(1):24-30. | |
| [35] | KAN HO Sup, KIM Tae-Hee. Aesthetic characteristic study on sportswear uniform[J]. Journal of Fashion Business, 2008, 12(3):99-115. |
| [36] | 卢志华, 王学艺, 刘伏荣.一种速度滑冰比赛服: 201921826572.X[P]. 2020-08-11. |
| LU Zhihua, WANG Xueyi, LIU Furong. A speed skating competition suit: 201921826572.X[P]. 2020-08-11. | |
| [37] |
SCHENAU Gerrit Jan Van Ingen. The influence of air friction in speed skating[J]. Journal of Biomechanics, 1982, 15(6): 449-458.
pmid: 7118959 |
| [38] | ALAM Firoz, CHOWDHURY Harun, MORIA Hazim. A review on aerodynamics and hydrodynamics in sports[C]// CHOWDHURY Harun, RASUL Mohammad, ALAM Firoz, et al. Proc of 2nd International Conference on Energy and Power, ICEP2018 (Energy Procedia). Amsterdam: Elsevier, 2019:798-805. |
| [39] | CHOWDHURY Harun, ALAM Firoz, MAINWARING David, et al. Design and methodology for evaluating aerodynamic characteristics of sports textiles[J]. Sports Technology, 2009, 2(3/4):81-86. |
| [40] | D'AUTEUIL Annick, LAROSE Guy L, ZAN Steven J. Wind turbulence in speed skating: measurement, simulation and its effect on aerodynamic drag[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2012, 104-106: 585-593. |
| [41] | 何崟, 邓凌, 林美霞, 等. 冬季运动智能柔性人台关键技术开发[J]. 纺织学报, 2024, 45(2):221-230. |
| HE Yin, DENG Ling, LIN Meixia, et al. Key technology development of intelligent and flexible mannequin for winter sports[J]. Journal of Textile Research, 2024, 45(2):221-230. | |
| [42] | CHOWDHURY Harun, KOTA Naito, ALAM Firoz. An experimental study on speed skating skinsuits[J]. Mechanical Engineering Research Journal, 2015, 9: 110-114. |
| [43] | JIANG Wei, QIU Jun, MA Guoqiang, et al. An experimental investigation and flow field analysis on cycling clothing fabrics with grooved surface[J]. Journal of Industrail Textiles, 2022, 52(1): 1-16. |
| [44] | ZHANG Yuanzhao, LI Bo. Aerodynamic drag characteristics of skaters in speed skating team pursuit formation[J]. European Journal of Mechanics-B: Fluids, 2024, 103: 116-125. |
| [45] | ICHINOSE Genki, MIYAGAWA Daiki, ITO Junji, et al. Winning by hiding behind others: an analysis of speed skating data[J]. Plos One, 2020. DOI:10.1371/journal.pone.0237470. |
| [46] | TERRA Wouter, SPOELSTRA Alexander, SCIACCHITANO Andrea. Aerodynamic benefits of drafting in speed skating: estimates from in-field skater's wakes and wind tunnel measurements[J]. Journal of Wind Engineering & Industrial Aerodynamics, 2023. DOI:10.1016/j.jweia.2023.105329. |
| [47] | CHOWDHURY Harun, ALAM Firoz, MAINWARING David, et al. Rapid prototyping of high performance sportswear[C]// PATRICK Drane, JAMES Sherwood. Engineering of Sport Conference 2012 (Procedia Engineering). Amsterdam: Elsevier, 2012, 34:38-43. |
| [48] | BROWNLIE Len, YUKI Aihara, JORGE Carbo Jr, et al. The use of vortex generators to reduce the aerodynamic drag of athletic apparel[C]// ARJEN J. The Engineering of SPORT 11 (Procedia Engineering). Amsterdam: Elsevier, 2016, 147(1): 20-25. |
| [49] | LARS Sætran, LUCA Oggiano. Skin suit aerodynamics in speed skating[M]. Vienna: Springer, 2008, 506:93-105. |
| [50] | WANG Yanqing, WEI Yuju, WENG Ding, et al. Aerodynamic drag reduction by the trapezoid spanwise groove inspired by pigeon feathers[J]. Energies, 2023. DOI:10.3390/en16052379. |
| [51] | 何汉伟, 谢南平.一种具有减阻凹坑的经编提花面料:202210636192.X[P].2022-08-02. |
| HE Hanwei, XIE Nanping. A warp knitted jacquard fabric with reduced drag pits: 202210636192.X[P].2022-08-02. | |
| [52] | SENTHILKUMAR Mani, ANBUMANI Natarajan. Dynamics of elastic knitted fabrics for sports wear[J]. Journal of Industrial Textiles, 2011, 41(1): 13-24. |
| [53] |
GUO Nangkuo, SUN Min, CHENG Lan, et al. Strength characteristic and failure criterion of flexible multi-axial warp-knitted fabrics coated with polyurethane on single side[J]. Journal of Industrial Textiles, 2019, 49(3): 318-327.
doi: 10.1177/1528083718779448 |
| [54] | JING Lingxiao, GUO Nangkuo, XU Haiyan, et al. Tensile characteristics of flexible PU-coated multi-axial warp-knitted fabrics[J]. Journal of Industrial Textiles, 2017, 47(1):38-56. |
| [55] | KOTHARI Vijay Kumar, DAS Apurba, SREEDEVI R. Cut resistance of textile fabrics: a theoretical and an experimental approach[J]. Indian Journal of Fibre & Textile Research, 2007, 32(3):306-311. |
| [56] | ZHAI Yanru, MAO Lizhou, SHEN Yue, et al. Research progress of cut-resistant textile materials[J]. Frontiers in Chemistry, 2021. DOI:10.3389/fchem.2021.745467. |
| [57] | SHI Yajing, YAN Taohai, LAI Wanni, et al. Fabric preparation of stab-resistant functional clothing[J]. Design Studies and Intelligence Engineering, 2023.DOI: 10.3233/FAIA220714. |
| [58] | YANG Hui, LE Yingchun, ZHANG Ruobi, et al. Cut-resistance of elastic high-performance composite yarn[J]. Textile Research Journal, 2024, 95(1/2):93-106. |
| [59] | MONTES Juan, THOMASZEWSKI Bernhard, MUDUR Sudhir, et al. Computational design of skintight clo-thing[J]. ACM Transactions on Graphics, 2020. DOI: 10.1145/3386569.3392477. |
| [60] | LEIPNER Anja, KRZYWINSKI Sybille. 3D product development based on kinematic human models[C]// D'APUZZO N. Proc of the 4th International Conference on 3D Body Scanning Technologies. Lugano: 3DBody Tech, 2013: 310-316. |
| [61] | DEVARAJA Punitha. Odah-speedskater: development of a virtual video dataset for kinematic analysis in speed skating (MSc Thesis)[D]. Delft: Delft University of Technology, 2024:1-19. |
| [62] | KWOK Tsz Ho, ZHANG Yanqiu, WANG Charlie C L, et al. Styling evolution for tight-fitting garments[J]. IEEE Transactions on Visualization and Computer Graphics, 2015, 22(5): 1580-1591. |
| [63] | HUANG Zhenzhen, SAHARI Faridah. An overview of current technological developments in apparel fit customization[J]. Research Journal of Textile and Apparel, 2025. DOI: 10.1108/RJTA-09-2024-0167. |
| [64] | 雷鸽, 李小辉. 数字化服装结构设计技术的研究进展[J]. 纺织学报, 2022, 43(4):203-209. |
| LEI Ge, LI Xiaohui. Review of digital pattern-making technology in garment production[J]. Journal of Textile Research, 2022, 43(4):203-209. | |
| [65] | 肖伯祥, 施佳, 王渊霞, 等. 速滑服装版型参数化模型构建方法[J]. 北京服装学院学报(自然科学版), 2023, 43(2):64-70. |
| XIAO Boxiang, SHI Jia, WANG Yuanxia, et al. Parameterized model construction of speed skating suit pattern[J]. Journal of Beijing Institute of Fashion Technology (Natural Science Edition), 2023, 43(2):64-70. | |
| [66] | LIU Yongjin, ZHANG Dongliang, YUEN Mingfai. A survey on CAD methods in 3D garment design[J]. Computers in Industry, 2010, 61(6): 576-593. |
| [67] | 黄海峤, 莫碧贤, 郭绮莲, 等. 从三维人体扫描生成服装样板[J]. 纺织学报, 2010, 31(9):132-136. |
| HUANG Haiqiao, MO Bixian, GUO Qilian, et al. Garment patterns generating based on 3D body scan-ning[J]. Journal of Textile Research, 2010, 31(9):132-136. | |
| [68] | 肖伯祥, 张悦, 胡志远, 等. 速度滑冰比赛服个性化样板生成方法[J]. 纺织学报, 2024, 45(9):146-153. |
| XIAO Boxiang, ZHANG Yue, HU Zhiyuan, et al. Personal pattern generating method for speed skating suits[J]. Journal of Textile Research, 2024, 45(9):146-153. | |
| [69] | LIU Kaixuan, ZENE Xianyi, BRUNIAUX Pascal, et al. 3D interactive garment pattern-making technology[J]. Computer: Aided Design, 2018, 104(11):113-124. |
| [70] | 晏轶超, 程宇豪, 陈琢, 等. 基于神经网络的生成式三维数字人研究综述:表示、渲染与学习[J]. 中国科学:信息科学, 2023, 53(10):1858-1891. |
| YAN Yichao, CHENG Yuhao, CHEN Zhuo, et al. A survey on generative 3D digital humans based on neural networks:representation, rendering,and learning[J]. Scientia Sinica Informationis, 2023, 53(10):1858-1891. | |
| [71] | 魏雪霞, 徐增波, 王巧丽. 基于二维图像的参数化人体建模[J]. 服装学报, 2023, 8(1):24-30. |
| WEI Xuexia, XU Zengbo, WANG Qiaoli. Arametric human modeling based on two-dimensional image[J]. Journal of Clothing Research, 2023, 8(1):24-30. | |
| [72] | XIAO Boxiang, HU Zhiyuan, LIU Zhengdong, et al. A dynamic virtual try-on simulation framework for speed skating suits[J]. Journal of The Textile Institute, 2024, 115(5): 713-723. |
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