巴基斯坦教育机构的能源审计、改造和太阳能化:节能的有效途径

M. Latif, Tallal Ahmed, W. Khalid, Meryam Anis, T. Mahmood
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引用次数: 6

摘要

教育机构在能源需求中占相当大的一部分,但却经常被忽视,因为这是导致能源需求上涨的原因之一。随着对建筑节能的日益重视,教育机构纷纷启动能源管理计划,以减少能源需求,以减少能源费用。本文在塔克西拉工程技术大学进行的能源审计的基础上进行了批判性分析,旨在分析当前电力系统的需求模式和改进前景。本文详细介绍了用改进的高效负荷改造高耗能负荷所可能产生的节能潜力。收集的数据使用DIALux进行照明负荷分析,使用每小时分析程序(HAP)进行供暖和制冷系统分析。估计每日可减少63.02%的负荷,方法是将旧的照明负荷改装为较新的照明负荷。包括利用率在内,每天可节省高达2907千瓦时的能源消耗。更换旧冷气及空调设备后,估计每日可节省25.01%的能源,包括利用系数在内,每日可节省2336.48度电。照明设备的净投资回收期为1.95年,空气冷却和空调负荷的净投资回收期为6.30年。为了向可持续校园迈进一步,我们对校园的太阳能潜力和可行性进行了计算。屋顶太阳能潜力的峰值计算为2.81兆瓦,预计年发电量约为4,434,000千瓦时。利用光伏系统软件进行太阳能电势计算。能源审计方法以及对建议的设备改进、投资回收期和太阳能收集潜力的成本估计在论文中进行了计算。建议的改善措施将有助于我们节约能源和实现可持续发展的校园。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Audit, Retrofitting and Solarization in Educational Institutes of Pakistan: An Effective Approach Towards Energy Conservation
Educational institutions form a considerable portion of the energy demand and are often ignored as a contributor to this demanding hike. With the increased emphasis on energy conservation in buildings, educational institutions have started Energy management programs to reduce the energy demand in order to cut the energy expenses. This paper presents a critical analysis on the base of Energy Audit conducted in University of Engineering and Technology Taxila aimed to analyze the demand pattern and the prospects of improvements in the current electrical system. The paper present the details regarding the saving potential possible through retrofitting of energy-guzzling loads with improved and efficient ones. The data collected is analyzed using DIALux for the lighting loads and Hourly Analysis Program (HAP) for heating and cooling systems. An estimated load reduction of 63.02% can be achieved per day by retrofitting old lighting load with a newer one. This energy consumption saving accounts up to 2907 kWh per day including utilization factor. An estimated reduction of 25.01% is achieved per day by the replacement of old Air-Cooling and Air-conditioning appliances with the new ones with the energy consumption saving up to 2336.48 kWh per day including utilization factor. The net payback period for retrofitting is calculated to be 1.95 years for lighting and 6.30 years for air-cooling and air-conditioning load. In order to take one step forward towards a sustainable campus, the solar potential and feasibility of the campus are calculated. The peak rooftop solar potential is calculated to be 2.81 MW with expected annual generation around 4,434,000kWh. PV System software is used to carry out the solar potential results. Energy Audit methodology alongside cost estimation for the suggested improvements in appliances, payback periods, and solar harvesting potential is calculated in the paper. The recommended improvements will help us in energy conservation and achievement of a sustainable campus.
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