利用热成像、超声波和气体分析仪研究医院的蒸汽产生和分配,以提高能源效率

Alex Rivera, W. Quitiaquez, Isaac Simbaña, Patricio Quitiaquez
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引用次数: 0

摘要

这项调查根据 ASME EA-3-2009 标准的程序,分析了一家医院蒸汽系统的能源效率。通过能量平衡,得出锅炉能效为 80.29%,配管热损失为 15.33 千瓦。提出了两个一致的改进方案,首先是将厨房区域的管道直径统一为 5 米,从而将热损失从 828 W 减少到 600 W,这意味着每年可节省约 2.4 GJ 的总能耗。考虑到 9 个月后达到盈亏平衡点,投资成本为 47.40 美元,其中使用玻璃棉对管道进行隔热是第二项考虑因素,可减少 5.98 千瓦的损失,相当于每年总节能约 62.91 千兆焦耳/年,约合 1 672 美元。考虑到净现值计算和可能的节余,49 米长的保温管投资为 462 美元,在大约 4 个月后达到盈亏平衡点,这表明采用所提出的两种改进方案具有经济效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Steam Generation and Distribution in a Hospital to Improve Energy Efficiency Using Thermography, Ultrasound, and Gas Analyzer
This investigation analyzed the energy efficiency of a steam system in a hospital, considering the procedure in ASME EA-3-2009 standard. The obtained boiler energy efficiency was 80.29 %, by applying an energy balance, reaching 15.33 kW for heat losses in the distribution pipes. Two consistent improvement alternatives were proposed, starting by unifying the pipe diameter of the kitchen area of 5 m, generating a reduction of heat loss from 828 to 600 W, which represented a total annual energy saving of around 2.4 GJ/year. The investment cost is USD 47.40, considering the achievement of the break-even point after 9 months, where the insulation of the pipes with glass wool was considered second and it generated a reduction in losses of 5.98 kW, representing a total annual energy saving of about 62.91 GJ/year, which corresponds to approximately USD 1,672. The investment for pipe insulation with a length of 49 m was USD 462, considering the NPV calculation and the possible savings, and the break-even point was reached after approximately 4 months, indicating the economic benefit of applying the two improvement options proposed.
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