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Thermal comfort study of plastics manufacturing industry in converting process

机译:转换过程中塑料制造业的热舒适性研究

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摘要

Thermal comfort is one of ergonomics factors that can create a significant impact to workers performance. For a better thermal comfort, several environment factors (air temperature, wind speed and relative humidity) should be considered in this research. The object of the study is a building for converting process of plastics manufacturing industry located in Malang, Indonesia. The maximum air temperature inside the building can reach as high as 36°C. The result of this study shows that heat stress is dominantly caused by heat source from machine and wall building. The computational fluid dynamics (CFD) simulation is used to show the air characteristic through inside the building. By using the CFD simulation, some scenarios of solution are successfully presented. Employees thermal comfort was investigated based on predicted mean vote model (PMV) and predicted percentage of dissatisfied model (PPD). Existing condition gives PMV in range from 1.83 to 2.82 and PPD in range from 68.9 to 98%. Meanwhile, modification of ventilation and replacing ceiling material from clear glass into reflective clear glass gave significant impact to reduce PMV into range from 1.63 to 2.18 and PPD into range from 58.2 to 84.2%. In sort, new design converting building process has more comfortable for workers.
机译:热舒适是人体工程学因素之一,可以为工人表现产生重大影响。为了更好的热舒适性,在本研究中应考虑几种环境因素(空气温度,风速和相对湿度)。该研究的目的是一座建筑,用于转换位于印度尼西亚玛朗的塑料制造业的过程。建筑物内的最大空气温度高达36°C。该研究的结果表明,由机器和墙壁建筑物的热源主要引起热应力。计算流体动力学(CFD)仿真用于显示在建筑物内部的空气特性。通过使用CFD仿真,成功呈现了一些解决方案的方案。基于预测的平均投票模型(PMV)研究了员工热舒适度,并预测不满模型(PPD)的预测百分比。现有条件为PMV提供1.83至2.82,PPD的范围为68.9至98%。同时,从透明玻璃到反射透明玻璃中的通风和替换天花板材料的改变,使PMV降至1.63至2.18,PPD的范围为58.2至84.2%。在排序中,新设计转换建筑工程对工人更舒适。

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