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2026 Vol.46, Issue 2 Preview Page

Research Article

20 April 2026. pp. 15-27
Abstract
References
1

Park, S., A Study on the Ventilation Performance Evaluation Method of the Window-Integrated Ventilation System, Journal of Korean Institute of Architectural Sustainable Environment and Building Systems, Vol. 16, No. 5, pp. 400-411, 2022.

2

Korean Agency for Technology and Standards, KS F 2603, Standard Test Method for Measuring Amount of Room Ventilation Rate (Carbon Dioxide Method), 2021.

3

Korean Agency for Technology and Standards, KS C 9314, Air Cleaners, 2024.

4

Korean Agency for Technology and Standards, KS I ISO 16000-1, Indoor air — Part 1: General Aspects of Sampling Strategy, 2024.

5

Korean Agency for Technology and Standards, KS I ISO 16000-2, Indoor Air — Part 2: Sampling Strategy for Formaldehyde, 2024.

6

Korean Agency for Technology and Standards, KS I ISO 16000-5, Indoor Air — Part 5: Measurement Strategy for Volatile Organic Compounds (VOCs), 2024.

7

Korean Agency for Technology and Standards, KS F 2292, The Method of Air Tightness for Windows And Doors, 2024.

8

Korean Agency for Technology and Standards, KS L ISO 9972, Thermal Insulation-Determination of Building Airtightness-Fan Pressurization Method, 2021.

9

Korea Air Cleaning Association, SPS-KACA010-0140, Fan Filter Unit, 2014.

10

Korean Agency for Technology and Standards, KS F ISO 16032, Measurement of Sound Pressure Level from Service Equipment in Buildings - Engineering Method, 2021.

11

Lee, H. J. and Bea, S., The Overall Performance Evaluation for a Natural Vent System, Proceeding of Autumm Annual Conference of the Architectural Institute, Vol. 34, No. 2, pp. 371-372, October 2014, Seoul, Republic of Korea.

12

Yang, Y. K. and Park, J. C., Performance Evaluation of Window Ventilation System for Reducing Indoor particulate matter, Land and Housing Review, Vol. 10, No. 3, pp. 1-7, 2019.

13

Korean Agency for Technology and Standards, KS C 9326, Performance Test Method of Large Scale Air Cleaner, 2021.

14

Geng, C., Wu, X., Wang, T., and Fu, H., Characteristics of Airborne Particles Emitted from Typical Indoor Combustion Sources, Frontiers in Public Health, Vol. 13, 1540166, 2025, https://doi.org/10.3389/fpubh.2025.1540166.

10.3389/fpubh.2025.154016640046112PMC11880257
15

Korea Air Cleaning Association, SPS-KACA0038, Installation Standards and Operation Methods for Simple Indoor Air Quality Monitors, 2023.

16

Korean Agency for Technology and Standards, KS F 2809, Field Measurements of Airborne Sound Insulation of Buildings, 2021.

17

U.S. Green Building Council, LEED BD+C: New Construction v4.1, EQ Credit, Quality View, 2019.

18

Korean Agency for Technology and Standards, KS B 6879, Heat Recovery Ventilators, 2020.

19

Cho, K., Chae, C. U., Cho, D., and Kim, T., Changes in Fan Energy Consumption According to Filters Installed in Residential Heat Recovery Ventilators in Korea, Sustainability, Vol. 13, No. 18, 10119, 2021.

10.3390/su131810119
Information
  • Publisher :Korean Solar Energy Society
  • Publisher(Ko) :한국태양에너지학회
  • Journal Title :Journal of the Korean Solar Energy Society
  • Journal Title(Ko) :한국태양에너지학회 논문집
  • Volume : 46
  • No :2
  • Pages :15-27
  • Received Date : 2026-02-26
  • Revised Date : 2026-03-22
  • Accepted Date : 2026-04-06