Changeful and complex rural family structure and climatic features of transitional areas in China make the application of variable strategy in energy-saving rural residence designs possible.Aiming at the low cost,seve...Changeful and complex rural family structure and climatic features of transitional areas in China make the application of variable strategy in energy-saving rural residence designs possible.Aiming at the low cost,several effective and reasonable variable strategies were proposed for the design of interior spaces,main bedroom,sunshine room,staircase,west wall,door and window design to satisfy changing structure of a family during different periods and their different thermo-technical requirements in winter and summer.In this way,thermal comfort of rural indoor spaces will be improved,more energy saved,useful experience and thoughts provided for the energy-saving residence design in cold regions and regions hot in summer and cold in winter.展开更多
Based on the field study and site test, the development and evolution of rural residence in Chaoshan Area have been illustrated. Two types of residences, that is, tradition-inheriting type and city-imitating type, hav...Based on the field study and site test, the development and evolution of rural residence in Chaoshan Area have been illustrated. Two types of residences, that is, tradition-inheriting type and city-imitating type, have been classified. Furthermore, residences of tradition-inheriting type have been divided into four types. Then, the construction materials, structure and energy-saving facilities of rural residences in Chaoshan have been analyzed, aiming to provide a foundation for thermal performance and energy saving design of rural residences in Chaoshan Area.展开更多
Geothermal resources are increasingly gaining attention as a competitive,clean energy source to address the energy crisis and mitigate climate change.The Wugongshan area,situated in the southeast coast geothermal belt...Geothermal resources are increasingly gaining attention as a competitive,clean energy source to address the energy crisis and mitigate climate change.The Wugongshan area,situated in the southeast coast geothermal belt of China,is a typical geothermal anomaly and contains abundant medium-and low-temperature geothermal resources.This study employed hydrogeochemical and isotopic techniques to explore the cyclic evolution of geothermal water in the western Wugongshan region,encompassing the recharge origin,water-rock interaction mechanisms,and residence time.The results show that the geothermal water in the western region of Wugongshan is weakly alkaline,with low enthalpy and mineralization levels.The hydrochemistry of geothermal waters is dominated by Na-HCO_(3)and Na-SO_(4),while the hydrochemistry types of cold springs are all Na-HCO_(3).The hydrochemistry types of surface waters and rain waters are NaHCO_(3)or Ca-HCO_(3).The δD and δ^(18)O values reveal that the geothermal waters are recharged by atmospheric precipitation at an altitude between 550.0 and 1218.6 m.Molar ratios of maj or solutes and isotopic compositions of^(87)Sr/^(86)Sr underscore the significant role of silicate weathering,dissolution,and cation exchange in controlling geothermal water chemistry.Additionally,geothermal waters experienced varying degrees of mixing with cold water during their ascent.Theδ^(13)C values suggest that the primary sources of carbon in the geothermal waters were biogenic and organic.Theδ^(34)S value suggests that the sulfates in geothermal water originate from sulfide minerals in the surrounding rock.Age dating using 3H and^(14)C isotopes suggests that geothermal waters have a residence time exceeding 1 kaBP and undergo a long-distance cycling process.展开更多
By taking a modern residence in Meishan area as an example,15 measuring points have been set,and the wind speed of the parlor on the first and second floor and that of many bedding rooms have been measured every other...By taking a modern residence in Meishan area as an example,15 measuring points have been set,and the wind speed of the parlor on the first and second floor and that of many bedding rooms have been measured every other hour from 7:00 to 22:00.Based on the measuring data and indoor architectural pattern,indoor ventilation has been analyzed.The results show that good natural ventilation could be created in modern rural residence by making use of plane layout,orientation and openings' organization,so that indoor air can be distributed evenly,helping to reduce temperature and remove humidness;indoor wind speed of the openings of architectures is the largest;and architectural orientation and opening's position can guide air flow and help to improve natural ventilation obviously.展开更多
基金Supported by 2009 Scientific and Technological Program of Zhengzhou Provincial Department of Science and Technology:Study on the Optimal Energy-Conservation Design of Low-cost Rural Residences in Henan Province2011 Undergraduates' Innovative Program of North China University of Water Resources and Electric Power:Study on the Energy-Conservation Design of Regional Rural Residences in Henan Province
文摘Changeful and complex rural family structure and climatic features of transitional areas in China make the application of variable strategy in energy-saving rural residence designs possible.Aiming at the low cost,several effective and reasonable variable strategies were proposed for the design of interior spaces,main bedroom,sunshine room,staircase,west wall,door and window design to satisfy changing structure of a family during different periods and their different thermo-technical requirements in winter and summer.In this way,thermal comfort of rural indoor spaces will be improved,more energy saved,useful experience and thoughts provided for the energy-saving residence design in cold regions and regions hot in summer and cold in winter.
基金Supported by Key Project of National Natural Science Foundation (51038005)Youth Foundation Project of National Natural Science Foundation (51108194)
文摘Based on the field study and site test, the development and evolution of rural residence in Chaoshan Area have been illustrated. Two types of residences, that is, tradition-inheriting type and city-imitating type, have been classified. Furthermore, residences of tradition-inheriting type have been divided into four types. Then, the construction materials, structure and energy-saving facilities of rural residences in Chaoshan have been analyzed, aiming to provide a foundation for thermal performance and energy saving design of rural residences in Chaoshan Area.
基金funded by the project of China Geological Survey(Grant No.DD20221677-2)the Central Public-Interest Scientific Institution Basal Research Fund(Grant No.JKYQN202307)。
文摘Geothermal resources are increasingly gaining attention as a competitive,clean energy source to address the energy crisis and mitigate climate change.The Wugongshan area,situated in the southeast coast geothermal belt of China,is a typical geothermal anomaly and contains abundant medium-and low-temperature geothermal resources.This study employed hydrogeochemical and isotopic techniques to explore the cyclic evolution of geothermal water in the western Wugongshan region,encompassing the recharge origin,water-rock interaction mechanisms,and residence time.The results show that the geothermal water in the western region of Wugongshan is weakly alkaline,with low enthalpy and mineralization levels.The hydrochemistry of geothermal waters is dominated by Na-HCO_(3)and Na-SO_(4),while the hydrochemistry types of cold springs are all Na-HCO_(3).The hydrochemistry types of surface waters and rain waters are NaHCO_(3)or Ca-HCO_(3).The δD and δ^(18)O values reveal that the geothermal waters are recharged by atmospheric precipitation at an altitude between 550.0 and 1218.6 m.Molar ratios of maj or solutes and isotopic compositions of^(87)Sr/^(86)Sr underscore the significant role of silicate weathering,dissolution,and cation exchange in controlling geothermal water chemistry.Additionally,geothermal waters experienced varying degrees of mixing with cold water during their ascent.Theδ^(13)C values suggest that the primary sources of carbon in the geothermal waters were biogenic and organic.Theδ^(34)S value suggests that the sulfates in geothermal water originate from sulfide minerals in the surrounding rock.Age dating using 3H and^(14)C isotopes suggests that geothermal waters have a residence time exceeding 1 kaBP and undergo a long-distance cycling process.
基金Supported by Fund of State Key Laboratory of Subtropical Building Science (2010KB15)Fund of Education Department of Guangdong Province (1184510150)
文摘By taking a modern residence in Meishan area as an example,15 measuring points have been set,and the wind speed of the parlor on the first and second floor and that of many bedding rooms have been measured every other hour from 7:00 to 22:00.Based on the measuring data and indoor architectural pattern,indoor ventilation has been analyzed.The results show that good natural ventilation could be created in modern rural residence by making use of plane layout,orientation and openings' organization,so that indoor air can be distributed evenly,helping to reduce temperature and remove humidness;indoor wind speed of the openings of architectures is the largest;and architectural orientation and opening's position can guide air flow and help to improve natural ventilation obviously.