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Design and Full-scale Implementation of the Largest Operational Electrically Conductive Concrete Heated Pavement System

机译:设计和全尺寸实现最大的可操作导电混凝土升温路面系统

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Many aviation and transportation agencies allocate significant time and resources each year to remove ice and snow from their paved surfaces to achieve a safe, accessible, and operational transportation network. An electrically conductive concrete (ECON) heated pavement system (HPS) has been shown to be a promising alternative to the conventional snow removal operations using snowplows and deicing chemicals, which is time-consuming, labor-intensive and environmentally unfriendly. ECON HPS utilizes the inherent electrical resistance of concrete to maintain the pavement surface above freezing and thus prevent snow and ice accumulation on the surface. This sustainable concrete pavement system improves the resiliency of infrastructure by allowing it to be safe, open, and accessible during even harsh winter storms. The purpose of this study was to demonstrate the full-scale implementation of 10 ECON HPS slabs at the Iowa Department of Transportation headquarter south parking lot in Ames, Iowa. This study consists of system design and control, field implementation, and sensor instrumentation procedures for the construction of the ECON system, which took place on October 2018. A programmable logic controller (PLC) was designed, programmed, and utilized to control, operate, and monitor the system remotely. The heating performance of the remotely-operated ECON slabs was evaluated using the instrumented sensors under snow and ice events in 2019. The performance evaluation showed promising results in providing snow, and ice-free pavement surfaces through several winter weather events. (C) 2020 Elsevier Ltd. All rights reserved.
机译:许多航空和运输机构每年分配重要的时间和资源,以从铺砌的表面上除去冰雪,以实现安全,无障碍和运营的运输网络。导电混凝土(ECON)加热的路面系统(HPS)已被证明是使用散发斯和除冰化学品的传统雪移除操作的有希望的替代品,这是耗时,劳动密集型和环境不友好的。 ECON HPS利用混凝土的固有电阻,将路面表面保持在冻结上方,从而防止雪和冰积聚在表面上。这种可持续的混凝土路面系统通过在甚至是恶劣的冬季风暴中可以安全,开放和可访问,可以提高基础设施的弹性。本研究的目的是展示Iowa Imes,爱荷华州艾姆斯南部停车场南部停车场10家ECON HPS板的全规模实施。本研究包括系统设计和控制,现场实施和用于建造ECON系统的传感器仪表程序,该系统于2018年10月举行。可编程逻辑控制器(PLC)设计,编程,用于控制,操作,操作并远程监控系统。通过2019年雪和冰事件下的仪表传感器评估了远程操作的ECON板的加热性能。绩效评估表明,通过几个冬季天气事件提供雪和无冰路面表面的有希望的结果。 (c)2020 elestvier有限公司保留所有权利。

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