Sung-Sung Young
Ewha Womans University · Social Sciences
About the Lab
Professor Sung-Sung Young's research lab specializes in building energy efficiency, with a focus on thermal performance optimization in residential buildings. The lab investigates thermal bridging, insulation systems—particularly vacuum insulation panels and external insulation solutions—and condensation risk mitigation in high-performance windows and building envelopes. Their work integrates experimental testing, 3D thermal simulations, and field data analysis to develop practical solutions for improving energy efficiency and indoor comfort in high-rise apartment buildings, especially in cold climate regions like South Korea.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15To achieve national greenhouse gas reduction in the building sector, heating and cooling energy in buildings should be reduced. The government has strengthened regulations on insulation performance for building energy savings. However, the building envelope has various thermal bridges. In particular, a metal panel curtain wall comprises a number of thermal bridges at joints between the panels and the fixing units, thus degrading the overall thermal performance. To reduce building energy, it is n
Buildings account for a significant portion of a nation’s total energy consumption. To meet the global demand for greater energy efficiency, many countries are drastically strengthening insulation regulations for buildings. Thus, dramatically thicker wall insulation may be required, which can adversely affect the value of a building by reducing its effective floor area. Hence, high-performance insulation materials, such as vacuum insulation panels (VIPs), are of interest in building design. In t
The IIS(Internal Insulation System) is typically applied in most Korean apartment buildings which are the most common type of residential buildings. Consequently, there are many cases in which the layer of insulation is disconnected by the structural components at the wall-slab and wall-wall joints in the envelope. These joints become thermal bridges where the risk of heat transfer increases. In particular, the amount of heat loss is significant at the wall-slab joints adjacent to hot water heat
The accuracy of condensation risk assessment depends on the accuracy of the measured or calculated temperatures. The existing 2D simulation method provides sufficiently accurate results for evaluating average performance values, such as U-values. However, the accuracy of predicting the temperatures in the local areas such as the edge-of-glazing and the frame has been questioned. This study analyzes the effect of the surface thermal resistance on the accuracy of the condensation risk assessment f
To reduce condensation and ensure occupant comfort, the Korean Design Standard for Preventing Condensation in Apartment Buildings was enacted in 2014. However, glazing edges remain vulnerable to condensation. Because this design standard is recent, few window products satisfy the condensation resistance requirement for glazing edges, especially in the coldest region, and there have been limited investigations on improvement measures. This study evaluates and verifies various treatments for impro
The aim of this study was to develop a mathematical regression model for predicting end-use energy consumption in the residential sector. To this end, housing characteristics were collected through a field survey and in-depth interviews with residents of 71 households (15 apartment complexes) in Seoul, South Korea, and annual data on end-use energy consumption were collected from measurement systems installed within each apartment unit. Based on the data collected, correlativity between the fiel
The demand for sustainability capable of coping with worldwide climate changes has been increasing. In korea, the building sector is responsible for over 25% of the total energy consumption, and 68% of the energy consumption in the building sector comes from residential use. Therefore, energy efficient residential buildings are essential for maintaining sustainability. Meanwhile, the improvement of energy efficiency may lead to the rise of construction cost. Consequently, if cost-efficient desig
Research Areas
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