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A Combined Experiment-Simulation Study on Temperature Regime of Roller-Compacted Concrete Applying for Dam Construction

机译:电压施工辊压力混凝土温度制度的组合实验仿真研究

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Similar to most of the other developing countries, Vietnam has national programs for industrial waste recycling including fuel, ash, and slag. In which, fly ash (FA) has been used commonly as a pozzolanic additive in the roller-compacted concrete (RCC) mixture for the dam construction of hydropower projects. This usage allows reducing the concrete cost, the hydration heat, and the thermal cracking during the construction process of the RCC. In this study, the optimal concrete mixture and the maximum temperature of the RCC dam were determined using the experiment planning method, Matlab, Maple 13, and Midas Civil. In addition, the mathematical model has been used to adequately describe the influence of the intensity concreting (IC) and the initial temperature of the concrete mixture (ITC) on the temperature regime of the RCC dam. The calculation of the temperature regime during the construction of the RCC dam of 45 m high and 1 m thick in Vietnamese climate conditions was performed with considering the IC and the ITC. As the results, the maximum temperature of the RCC dam was determined depending on the IC and the ITC. Calculation found that at IC = 0.6 m/day and ITC = 20°C, the maximum temperature in the central dam zone reached 36.38°C after 1800 hours from the beginning of construction. The results of the present study further support the safe and durable construction of the RCC dam in the future.
机译:与其他大多数其他发展中国家类似,越南有国家工业废物回收计划,包括燃料,灰和渣。其中,粉煤灰(FA)通常被用作滚子压实混凝土(RCC)混合物中的火山灰添加剂,用于水电项目的大坝建设。这种用途允许在RCC的施工过程中减少混凝土成本,水化热量和热裂化。在这项研究中,使用实验计划方法,Matlab,Maple 13和Midas Cinfir确定了最佳混凝土混合物和RCC坝的最高温度。此外,已经使用数学模型来充分描述强度混凝土(IC)和混凝土混合物(ITC)的初始温度对RCC坝的温度制度的影响。考虑IC和ITC,进行了在越南气候条件下施工45米高45米高和1米厚度的RCC大坝期间的温度调节。结果,根据IC和ITC确定RCC坝的最大温度。计算发现,在IC = 0.6米/天和ITC = 20°C时,中央坝区域的最高温度从施工开始时1800小时后达到36.38°C。本研究结果进一步支持未来RCC大坝的安全和耐用结构。

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