REDESIGN PULVERIZER SHAFT UNIT 2 DI PLTU SEKTOR BUKIT ASAM 4 X 65 MW

Arief Prakoso Hardyanto, Wiji Mangestiyono, Seno Darmanto, Murni Murni
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Abstract

In the operation of the Bukit Asam power plant, in all generating units there are many disturbances that can cause derating the units. Derating of the unit can occur due to decrease in the performance of the steam turbine, decrease in the reliability of the pulverizer, and also disturbances in the coal supply system and various factors. Based on the performance data of the Bukit Asam Generation Sector (Monthly disturbance report) in January 2014, there were 54 derating disturbances recorded. One of the causes of the derating was a broken Pulverizer Shaft with a loss of operating hours for 196.78 [hours] which caused an unallocated electricity loss of 12,422 [GWh]. With the realization of AFI (Action For Improvement) in this final project creation assignment, it aims to redesign the shaft pulverizer, as well as analyze the causes of the pulverizer shaft break. By redesigning the pulverizer shaft and analyzing the cause of the pulverizer shaft breaking, it was found that the cause of the fracture of the shaft made from AISI 1045 with the old design was from calculating the shear stress value of 48.44 x 107 [N/m2], this result exceeded the value of the material permit voltage of 31.8 x 107 [N/m2], so it was not safe to use and the service life was not long. The results of the redesign shaft changed the dimensions of the diameter of the shaft head which was previously 0.174 [m] in diameter to a dwelling of 0.25 [m]. The results of calculating the redesign shaft made from AISI 1045 obtained a shear stress value of 16.33 x 107 [N/m2], this result is smaller than the material clearance voltage value of 31.8 x 107 [N/m2], so it is safer with a relatively longer service life.Keywords: Derating, Pulverizer Shaft, material, Redesign, Shear Stress
在武吉阿萨姆电厂的运行中,所有发电机组都存在许多可能导致机组降额的干扰。机组的降额是由于汽轮机性能下降、粉碎机可靠性下降、供煤系统的扰动和各种因素引起的。根据2014年1月武吉阿萨姆发电部门的运行数据(月度干扰报告),记录了54次降额干扰。降额的原因之一是粉碎机轴损坏,损失运行时间为196.78[小时],造成未分配电力损失12,422 [GWh]。在本次期末项目创作作业中,实现了AFI (Action For Improvement),旨在对轴式粉碎机进行重新设计,并分析粉碎机轴断的原因。通过对粉碎机轴进行重新设计,分析粉碎机轴断裂的原因,发现采用老设计的AISI 1045制粉碎机轴断裂的原因来自于计算48.44 × 107 [N/m2]的剪切应力值,该结果超过了材料允许电压31.8 × 107 [N/m2]的值,使用不安全,使用寿命不长。重新设计轴的结果将轴头直径的尺寸从之前的0.174 [m]改为0.25 [m]。通过对AISI 1045再设计轴的计算,得到的剪应力值为16.33 × 107 [N/m2],小于材料间隙电压值31.8 × 107 [N/m2],因此更安全,使用寿命相对较长。关键词:降额,粉碎机轴,材料,再设计,剪切应力
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