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作品数:849被引量:1480H指数:13
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相关作者:刘相华张小松王国栋彭良贵朱锟更多>>
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Adaptive blind control strategy based on iterative optimization to minimize cooling and lighting demands in office space
《Building Simulation》2025年第1期207-223,共17页Shen Zhang Zichuan Nie Sisi Chen Lihua Zhao 
supported by the National Key Research and Development Project of China(No.2019YFE0124500).
The emergence of adaptive facades offers a new approach for buildings to enhance their resilience against external weather conditions while responding to occupants’demands,thereby improving both indoor environmental ...
关键词:adaptive control iterative optimization window blinds building energy efficiency visual comfort 
Multi-objective cooling control optimization for air-liquid cooled data centers using TCN-BiGRU-Attention-based thermal prediction models
《Building Simulation》2024年第12期2145-2161,共17页Jianpeng Lin Wenjun Lin Weiwei Lin Tianyi Liu Jiangtao Wang Hongliang Jiang 
supported by the National Natural Science Foundation of China(62072187);Guangdong Major Project of Basic and Applied Basic Research(2019B030302002);The Major Key Project of PCL under Grant PCL2023A09;uangzhou Development Zone Science and Technology(2023GH02).
With the breakthroughs in generative artificial intelligence(GAI)models,the vast computational demands are placing an unprecedented burden on the data center(DC)energy supply.The cooling system is the second major ene...
关键词:data center thermal prediction cooling control multi-objective optimization energy saving 
Does back cooling improve human thermal comfort in warm environments?A device for heat conduction by the semiconductor Peltier effect
《Building Simulation》2024年第8期1253-1271,共19页Mengyuan He Hong Liu Lianggen Shao Baizhan Li Yuxin Wu 
supported by the 1ll Project(Grant No.B13041);support from the Chinese Scholarship Council(Grant No.202406050003).
The hot environment and the metabolic heat of commuting in summer caused individual overheating and intense thermal discomfort.Local cooling presents huge potential for optimizing thermal comfort.This study investigat...
关键词:back cooling heat conduction summer commuting thermal comfort prediction 
Numerical simulation study on the hygrothermal performance of building exterior walls under dynamic wind-driven rain condition被引量:1
《Building Simulation》2024年第2期207-221,共15页Xing Hu Huibo Zhang Hui Yu 
The work described in this paper was financially supported by the Shanghai Municipality Natural Science Foundation(No.21ZR1434400).
Wind-driven rain(WDR)has a significant influence on the hygrothermal performance,durability,and energy consumption of building components.The calculation of WDR loads using semi-empirical models has been incorporated ...
关键词:wind-driven rain building component hygrothermal model transient simulation cooling and heating loads 
Nationwide evaluation of energy and indoor air quality predictive control and impact on infection risk for cooling season被引量:1
《Building Simulation》2023年第2期205-223,共19页Xuezheng Wang Bing Dong Jianshun(Jensen)Zhang 
This research was jointly sponsored by Honeywell International Inc.and Syracuse University.
Since the coronavirus disease 2019,the extended time indoors makes people more concerned about indoor air quality,while the increased ventilation in seeks of reducing infection probability has increased the energy usa...
关键词:model predictive control indoor air quality infection risk ENERGY-SAVING large-scale simulation 
Energy-saving and economic analysis of passive radiative sky cooling for telecommunication base station in China被引量:4
《Building Simulation》2022年第10期1775-1787,共13页Zengkai Cui Chenyue Guo Dongliang Zhao 
supported by the Natural Science Foundation of Jiangsu Province, China (BK20200373).
The widespread application of 4G and the rapid development of 5G technologies dramatically increase the energy consumption of telecommunication base station (TBS). Remarkably, the air conditioning system accounts for ...
关键词:telecommunication base station radiative sky cooling energy saving economic analysis 
The energy performance and passive survivability of high thermal insulation buildings in future climate scenarios被引量:5
《Building Simulation》2022年第7期1209-1225,共17页Ran Wang Shilei Lu Xue Zhai Wei Feng 
This research was supported by the Science and Technology Project Plan of the Ministry of Housing and Urban-Rural Development of China in 2019(No.2019-K-026).
Given that the passive performance simulation of buildings based on typical meteorological year data and specific design schemes makes it challenging to respond to climate change and refine design requirements on time...
关键词:climate change overheating risk cooling demand heating demand scenarios thermal insulation 
Energy saving potential of a fresh air pre-cooling system using radiative sky cooling被引量:3
《Building Simulation》2022年第2期167-178,共12页Dikai Xu Sebastien Boncoeur Gang Tan Jingtao Xu Hua Qian Dongliang Zhao 
support from the Natural Science Foundation of Jiangsu Province,China(Grant No.BK20200373).
To achieve required indoor air quality,fresh air supply in buildings should meet relevant standards and regulations.However,the handling of fresh air introduced a cooling load that takes up a large portion of building...
关键词:fresh air pre-cooling radiative sky cooling building energy saving 
The effects of portable cooling systems on thermal comfort and work performance in a hot environment被引量:4
《Building Simulation》2021年第6期1667-1683,共17页Jieyu Tang Yu Liu Hui Du Li Lan Yuxiang Sun Jialin Wu 
This work was supported by the National Natural Science Foundation of China(No.51778359 and No.51478260);the State Key Laboratory of Air Conditioning Equipment and System Energy Conservation(No.ACSKL2018KT04)。
There are some special spaces in which there is no air conditioning or the people are in move,thus exposing people to a hot environment.In this study,portable cooling systems were proposed and their effects on thermal...
关键词:work performance thermal comfort cool air towards breathing zone chest and back cooling portable cooling systems 
Characteristic studies of heat sources and performance analysis of free-cooling assisted air conditioning and ventilation systems for working faces of mineral mines
《Building Simulation》2021年第6期1725-1736,共12页Rang Tu Lijuan Huang Aibing Jin Mingfeng Zhang Xiao Hai 
The authors appreciate the support from the National Natural Science Foundation of China(No.51706015);from the Fundamental Research Funds for the Central Universities(FRF-IDRY-19-01).
High temperature heat hazard at mineral mine becomes more and more serious as the increase of mining depth.Heat sources at working faces of mineral mines are complex and are of different characteristics,presenting new...
关键词:working face heat sources characteristics air ventilation system free cooling air conditioning energy efficiency 
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