凯泽水泥永久厂冷却器升级利用最新技术

C. Schimnosky
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引用次数: 0

摘要

篦系统的发展将改善关键的第一隔间区域的空气分布,这是传统往复式篦冷却器操作特性的重大改进。这项技术在20世纪80年代中期变得普遍,在随后的几年里安装了许多新的冷却器和改造。操作上的优势,特别是对于改造系统,是提高熟料产量,更好的能源效率,并在给定的熟料出口温度下减少排气需求。有了这样一个重大改进清单,很容易看出对存在冷却器问题的水泥厂进行升级的理由。凯撒水泥公司永久工厂的熟料冷却器改造项目并不是基于新炉排系统的“传统”优势。该项目的理由主要是基于提高机械寿命从而降低维护成本。能源改善是次要考虑因素,预计熟料产量不会发生重大变化。经过一年的运行结果证明,这一前提是正确的,项目将达到预期的投资回报。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooler upgrade at Kaiser Cement Permanente Plant utilizing neoteric technology
The development of a grate system which would improve air distribution in the critical first compartment area was a major improvement in the operating characteristics of a conventional reciprocating grate cooler. This technology became common in the mid 1980s with many new coolers and retrofits installed in subsequent years. The operational advantages, particularly for retrofit systems, is improved clinker production rate, better energy efficiency, and a reduced vent air requirement for a given clinker exit temperature. With such a list of major improvements, the justification to upgrade for a cement plant with cooler problems is easily seen. The clinker cooler retrofit project at Kaiser Cement's Permanente Plant was not based on the 'traditional' benefits of the new grate systems. The project justification was primarily based upon improved mechanical life hence reduced maintenance costs. Energy improvement was a minor consideration with no significant changes in clinker production rate expected. The results after one year of operation prove this premise to have been correct and the project payback will be achieved as expected.
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