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http://dx.doi.org/10.6106/KJCEM.2013.14.4.055

A Case Study of GHG Reduction Based on Electricity Consumption Pattern of Individual Rooms : In case of Seoul National University  

Kim, Seok-Young (서울대학교 대학원 건축공학과)
Park, Moonseo (서울대학교 건축공학과)
Lee, Hyun-Soo (서울대학교 건축공학과)
Kim, Sooyoung (서울대학교 대학원 건축공학과)
Jung, Hye-Jin (서울대학교 AIEES)
Publication Information
Korean Journal of Construction Engineering and Management / v.14, no.4, 2013 , pp. 55-64 More about this Journal
Abstract
As GHG target management is introduced in Korea, designated establishment takes responsibilities to reduce more than 30% of expected GHG emission until 2020. Although decreasing GHG has been requested to universities which consume great amount of energy, there are difficulties to apply high cost countermeasures. Therefore, this research suggest a low cost, easily-applicable energy saving method, and derive potential GHG reduction amount in the case of SNU, Kwan-ak campus. First of all, 11 rooms of different use were chosen as the samples, and energy consumption in each room was measured. Standard models for each room were built through researching on the electric devices in each room. Moreover, energy consumption was computed for each devices through analyzing the pattern of electricity consumption. 32 GHG reduction technology and action program were chosen, and they were applied to the standard models for individual rooms. Through multiplying energy reduction rate of each program to energy consumption of each electric device, maximum energy reduction of each electric device is derived. Through that, Maximum GHG reduction for individual rooms and each month and the total GHG reduction capacity of Kwan-ak campus were computed. It was found out that approximately $5,311tCO_2$-eq can be reduced, when reduction technology and action program suggested by this research are applied. It appeared 24.48% of requested reduction amount to SNU can be reduced, till 2016.
Keywords
GHG target management; GHG reduction technology; Action program; Maximum GHG reduction amount;
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