Development of CO2 Concentration Prediction Tool for Improving Office Indoor Air Quality Considering Economic Cost

Author:

Lee Yeo-KyungORCID,Kim Young Il,Lee Woo-Seok

Abstract

Ventilation is becoming increasingly important to improve indoor air quality and prevent the spread of COVID-19. This study analyzed the indoor air quality of office spaces, where occupants remain for extended periods, among multi-use facilities with an increasing need for ventilation system application. A “tool for office space CO2 prediction and indoor air quality improvement recommendation” was developed. The research method was divided into four steps. Step 1: Analysis of indoor air quality characteristics in office spaces was carried out with a questionnaire survey and indoor air quality experiment. Based on the CO2 concentration, which was found to be a problem in the indoor air quality experiment in the office space, Step 2: CO2 concentration prediction tool for office spaces, which requires inputs of regional and spatial factors and architectural and equipment elements, was developed. In Step 3: Development and verification of prediction tool considering economic feasibility, the cost of energy recovery ventilation systems based on the invoices of the energy recovery ventilation manufacturers was analyzed. In Step 4: Energy recovery ventilation proposal and indoor CO2 forecast, Office Space B, which can accommodate up to 15 people, was derived as an example of the proposed tool. As a result of the prediction, the optimal air volume of the energy recovery ventilation was determined according to the “office CO2 prediction and indoor air quality improvement recommendations”. This study introduced simple tools, which can be used by non-experts, that are capable of showing changes in indoor air quality, CO2 concentration and cost according to activities.

Funder

WISET

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference64 articles.

1. A Comparison and Analysis of the Impact of European National Health Care Systems on the Response to COVID-19;Kim,2020

2. Clean technology to respond to COVID-19—Cases suspected of air transmission of COVID-19 and methods of air conditioning and ventilation in buildings;Jo;Air Clean. Technol.,2020

3. Correct Ventilation Method for Me and Us in Summer (3 Principles for Basic Ventilation, 3 Principles for Air Conditioner Operation) https://www.kdca.go.kr/gallery.es?mid=a20503010000&bid=0002&list_no=145194&act=view

4. Social Distancing Step 4 (Pandemic/No Going Out) http://ncov.mohw.go.kr/shBoardView.do?brdId=6&brdGubun=64&ncvContSeq=5619

5. Current Status of COVID-19 Confirmed Cases. Korea Centers for Disease Control and Prevention http://ncov.mohw.go.kr/bdBoardList_Real.do

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