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Design and Development of a Novel Natural Turf Shear Stability Tester

机译:设计与开发新型天然草皮剪切稳定性测试仪

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The stability of natural Rugby Union pitches continues to be a recurring problem at all levels of the game. The effects of poor stability are seen when the pitch surface shears under player loading, creating unsightly divots and an uneven and potentially injurious surface. This observed instability is a real concern for many stakeholders, from the groundsmen to the revenue-generating television companies, and is arguably increasing caused by greater popularity of sports, more intensive use of natural turf pitches and advances in player physical conditioning. However, perhaps surprisingly, ho objective quantitative mechanical test method currently exists for assessing the shear stability of the natural turf prior to games being played. This paper presents the findings from a (ongoing) research study into the design and development of a prototype turf stability apparatus ('Turf Tester'). The key aim was to measure the shearing stability of natural and hybrid turf in order to assess a recurring failure problem. In order to be relatable to sporting performance, this failure imitates conditions to simulate player(s) interaction. The prototype and test method was developed with properties suggested from published papers discussing rugby and agronomists' experience. It was theorized that there was a potential zone susceptible to failure within the top 100 mm of the sports turf. The position of this zone was variable and depended on pitch construction. The prototype was built to explore this variable failure zone using a 50 mm and 100 mm pin that sheared through the soil when a known load was applied to it. Both the Clegg Impact Hammer (CIH) and the rotational traction (RTD) were suggested to be relatable to penetration and shear stability;; however, their relatability to the failure zone was an unknown. This paper details the background behind the study, the prototype design and principle, the observed failure mechanisms of sports turf, and presents the results of the prototype apparatus trailed on a range of turf constructions at venues used for the 2015 Rugby World Cup. Data was collected at each venue using Labosport's Scoreplay system detailing full agronomic classifications and a suite of industry standard player performance tests. The combined data from 13 of the venues provided a powerful data set to evaluate and refine the prototype apparatus, providing validity of its conceptual design. The findings show that the shear tester assessed the upper level of ability of pitches with a 50 mm depth pin and the lower ability with the 100 mm pin. There was some evidence of a relationship to the CIH and RTD, albeit weak, and it was concluded the shear tester was assessing a characteristic of the sport turf not currently measured by standard industry tests currently utilized. The shear tester differentiated between the high stability of the hybrid pitch constructions and the weaker natural pitches. The shear tester rankings for pitch quality also approximated well the ranking from the Scoreplay pitch quality system. Incorporation of the shear tester into routine pitch evaluations could benefit a scoring system approach
机译:自然橄榄球联盟音高的稳定性在游戏各级持续是一个经常性问题。当球场剪切在球员载荷下剪切时,可以看到稳定性差的影响,创造难看的阴影和不均匀和潜在伤害的表面。这种观察到的不稳定对许多利益相关者来说是一个真正关注的人,从地球到创收电视公司来说,通过更大的体育普及,自然草皮投球和球员物理调理的进步造成的更大普及,可以随之增加。然而,也许令人惊讶的是,HO客观定量机械测试方法目前存在用于评估在播放游戏之前天然草皮的剪切稳定性。本文介绍了(正在进行的)研究研究进入原型草皮稳定装置('草皮测试仪)的设计和开发的研究结果。关键目标是测量天然和混合草皮的剪切稳定性,以评估经常性的失败问题。为了与体育性能相关,这种故障模拟了模拟播放器相互作用的条件。原型和测试方法是由发布论文讨论橄榄球和农学学家经验的特性开发的。理论上是有一个潜在的区域,易于失败的体育草坪前100毫米。该区域的位置是可变的,依赖于俯仰结构。采用原型来探索使用50 mm和100mm销的该变量故障区,当应用已知负载时,通过土壤剪切。建议CLEGG撞击锤(CH)和旋转牵引(RTD)与渗透和剪切稳定性相比;然而,它们对失败区的可比性是一个未知的。本文详细介绍了研究背后的背景,原型设计和原理,观察到的运动草坪的失效机制,并呈现了原型设备的结果,落在了用于2015年橄榄球世界杯的场地的一系列草皮结构。使用Labosport的搜索系统在每个场地收集数据,详细说明了全文分类和一系列行业标准播放器性能测试。从13个场景的组合数据提供了强大的数据集,以评估和改进原型设备,提供其概念设计的有效性。调查结果表明,剪切测试仪评估了俯仰能力的高级,50毫米深度销和100mm销的低能力。有一些证据证明了与CIH和RTD的关系,尽管薄弱,并且得出结论,剪切测试仪评估了目前使用标准行业测试目前未测量的运动草皮的特征。剪切测试仪在混合间距结构的高稳定性和较弱的天然间距之间分化。俯仰质量的剪切测试仪排名也近似于记分音高质量系统的排名。将剪切测试仪纳入常规音高评估可以使得分系统方法受益

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