Optimization of indoor environmental quality and ventilation load in office space by multilevel coupling of building energy simulation and computational fluid dynamics

被引:17
作者
Fan, Yunqing [1 ]
Ito, Kazuhide [1 ]
机构
[1] Kyushu Univ, Interdisciplinary Grad Sch Engn Sci, Kasuga, Fukuoka 8168580, Japan
关键词
integrated simulation; BES; CFD; CO2 demand control; indoor environmental quality; energy recovery ventilator; CFD; PERFORMANCE; BES;
D O I
10.1007/s12273-014-0178-3
中图分类号
O414.1 [热力学];
学科分类号
摘要
The fundamentals, implementation, and application of an integrated simulation as an approach for predicting the indoor environmental quality for an open-type office and for quantifying energy saving potential under optimized ventilation are presented in this paper. An integrated simulation procedure based on a building energy simulation and computational fluid dynamics, incorporated with a conceptual model of a CO2 demand controlled ventilation (DCV) system and proportional integral control of an air conditioning system as the optimization assessment of conceptual model in the occupied zone, was developed. This numerical model quantitatively exhibits energy conservation and represents the non-uniform distribution patterns of airflow properties and CO2 concentration levels in terms of energy recovery and indoor thermal comfort. By means of an integrated simulation, the long-term energy consumption of heating, ventilation, and air conditioning systems are predicted precisely and dynamically. Relative to a ventilation system with a basic constant air volume supply rate characterized by a fixed outdoor air intake rate from the ceiling supply opening, the optimized CO2-DCV system coupled with energy recovery ventilators reduced total energy consumption by 29.1% (in summer conditions) and 40.9% (winter).
引用
收藏
页码:649 / 659
页数:11
相关论文
共 16 条
[1]   COMPARISON OF DIFFERENT K-EPSILON MODELS FOR INDOOR AIR-FLOW COMPUTATIONS [J].
CHEN, Q .
NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS, 1995, 28 (03) :353-369
[2]  
Chen Q, 2000, INDOOR AIR QUALITY H
[3]   Integrated building energy computational fluid dynamics simulation for estimating the energy-saving effect of energy recovery ventilator with CO2 demand-controlled ventilation system in office space [J].
Fan, Yunqing ;
Ito, Kazuhide .
INDOOR AND BUILT ENVIRONMENT, 2014, 23 (06) :785-803
[4]   Field-based study on the energy-saving effects of CO2 demand controlled ventilation in an office with application of Energy recovery ventilators [J].
Fan, Yunqing ;
Kameishi, Keiji ;
Onishi, Shigeki ;
Ito, Kazuhide .
ENERGY AND BUILDINGS, 2014, 68 :412-422
[5]   Energy consumption analysis intended for real office space with energy recovery ventilator by integrating BES and CFD approaches [J].
Fan, Yunqing ;
Ito, Kazuhide .
BUILDING AND ENVIRONMENT, 2012, 52 :57-67
[6]   Coupled simulation of BES-CFD and performance assessment of energy recovery ventilation system for office model [J].
Fan, Yunqing ;
Hayashi, T. ;
Ito, K. .
JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2012, 19 (03) :633-638
[7]   Quantitative relationship of sick building syndrome symptoms with ventilation rates [J].
Fisk, W. J. ;
Mirer, A. G. ;
Mendell, M. J. .
INDOOR AIR, 2009, 19 (02) :159-165
[8]   Thermal simulation: Response factor analysis using three-dimensional CFD in the simulation of air conditioning control [J].
Hiyama, Kyosuke ;
Kato, Shinsuke ;
Ishida, Yoshihiro .
BUILDING SIMULATION, 2010, 3 (03) :195-203
[9]  
Ito K., 2006, P HLTH BUILDINGS 200, P207
[10]   Cost-effectiveness Analysis of Improved Indoor Temperature and Ventilation Conditions in School Buildings [J].
Ito, Kazuhide ;
Murakami, Shuzo .
JOURNAL OF ASIAN ARCHITECTURE AND BUILDING ENGINEERING, 2010, 9 (02) :523-529