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Modeling and simulation of cement clinkering process with compact internal burning of carbon

机译:紧凑内部碳燃烧水泥熟料的建模与仿真

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This article describes a mathematical model of the thermodynamic process for Cement Clinkering Process with Compact Internal Burning of Carbon. Using simplifying assumptions, results of calculations are presented based on relevant computerized numerical simulation for a set of typical process parameters obtained from the existing cement shaft kiln operation and the electrical furnace test on the mechanical and chemical performance of the compact coal containing cement raw meal pellets. It is revealed that, the carbon internal burning mode, combining fuel combustion and gas solid heat transfer together as well as preheating, calcining, clinkering and cooling of the raw pellets together, is the origin of the process superiority in respect of equipment simplicity, process enhancement, high energy efficiency and low pollution. Important process details are determined, e.g. the features and lengths of the process zones, the material residence time and the burning mode of carbon in each zone, the clinkering reaction course and the maximum burning temperature. It is concluded that numerical simulations could be useful tool for understanding the new process ideas, as well as conducting the technical development and optimizing the process design. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文描述了具有紧凑内部燃烧碳的水泥熟料过程​​的热力学过程的数学模型。使用简化的假设,在相关的计算机数值模拟的基础上,给出了计算结果,这些计算结果是从现有的水泥竖窑操作和电炉试验获得的一组典型工艺参数,这些参数对紧凑型含煤水泥生粉颗粒的机械和化学性能。结果表明,碳内部燃烧模式结合了燃料燃烧和气固传热,以及预热,煅烧,熟料和冷却,将原始颗粒结合在一起,这是在设备简单性,工艺方面的优势所在。增强,高能效和低污染。确定重要的工艺细节,例如工艺区的特征和长度,每个区中材料的停留时间和碳的燃烧方式,熟料反应过程和最高燃烧温度。结论是,数值模拟可能是理解新工艺思想,进行技术开发和优化工艺设计的有用工具。 (C)2014 Elsevier Ltd.保留所有权利。

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