The environmental problems such as the drain on the fossil energy and global warming require a new paradigm for national growth and energy. This requirement is drawing attention to the field of renewable energy which means the sustainable energy resource for the future including solar energy, wind v...
The environmental problems such as the drain on the fossil energy and global warming require a new paradigm for national growth and energy. This requirement is drawing attention to the field of renewable energy which means the sustainable energy resource for the future including solar energy, wind velocity, geothermal energy, tidal energy, and so on. Considering the far-reaching economic and social advantages which can be obtained through the renewable energy, many advanced countries are promoting the drastic research and development and the diffusion policies on the sustainable energy in spite of the obstacle of overinvestment on the early stage, in that it is the core answer to the exhaustion of traditional energy and the environmental problems. Moreover, by enacting the Kyoto Protocol which has as its center most developed countries, our country is under the circumstance that we must cut off green gases at least from 2013. Without considering the regulation, we should change our energy system to the renewable energy to establish our energy sovereignty by reducing the country?s dependence (to 97%) on imported energy. ?Green Growth? refers to the growth of economy which can be sustainable in terms of environment and uses green technology and industry increasing eco-friendly factors as its power. In addition, Green Growth promotes Green Technology that cuts back on energy consumption by using renewable energy and minimizes pollutants emissions and industrial waste discharge when we use certain products. Since the activities to supply and use buildings have a greater influence on the global environment than any other human activity, the issue of ?Go Green? is necessary for construction as a movement for lightening the environmental burden. In order to keep the global environment sustainable and comfortable, therefore, the eco-friendly building which alternates the energy used in a structure to renewable energy and prevents excessive energy consumption is an obligation, not an option. As factors of eco-friendly construction technology, there are double skin facade system, atrium system, rainwater application system, dual water system, renewable energy practice system, tree-planting on roof tops or walls system, and so on. In this research, we are going to suggest how to design Building Integrated Photovoltaic System (BIPV System) and apply it as a morphologic design factor. The system generates electricity by directly using solar power among renewable energy resources that is unlimited, clean, and quiet and at the same time, allows other functions to be available by combining it with building skin such as a roof or a blind. To apply BIPV System, we need to investigate and analyze the direction of building site, the status of surrounding buildings and landscape architecture, the forecast of any changes around the site carefully, decide the application spot, the kind of a solar battery, the figure of the designed building, etc, analyze the shade, and then design the building through the feedback based on the evaluation of economical efficiency and feasibility study. As the methods of BIPV System application depend on the purpose of the building, the direction of the building lot, and the location, and the fa?ade is very affected by the system application spot and the kind of the solar battery, in-depth investigation and analysis on the early planning stage should be premised. If it is possible to confer with the engineering department, however, BIPV system can be applied regardless of those factors. BIPV System is expected to be applied at residential or commercial buildings as well as public facilities by renewable energy development and the law for utility promotion because both the generation efficiency of electric power and the developing the system as an exterior material of building has been improving rapidly though it?s application is still on the early stage. We can achieve a synergy when using the system with other green building factors. Most of all, for the sustainable and comfortable global environment, the consumers? complete understanding of energy consumption is primarily required.
The environmental problems such as the drain on the fossil energy and global warming require a new paradigm for national growth and energy. This requirement is drawing attention to the field of renewable energy which means the sustainable energy resource for the future including solar energy, wind velocity, geothermal energy, tidal energy, and so on. Considering the far-reaching economic and social advantages which can be obtained through the renewable energy, many advanced countries are promoting the drastic research and development and the diffusion policies on the sustainable energy in spite of the obstacle of overinvestment on the early stage, in that it is the core answer to the exhaustion of traditional energy and the environmental problems. Moreover, by enacting the Kyoto Protocol which has as its center most developed countries, our country is under the circumstance that we must cut off green gases at least from 2013. Without considering the regulation, we should change our energy system to the renewable energy to establish our energy sovereignty by reducing the country?s dependence (to 97%) on imported energy. ?Green Growth? refers to the growth of economy which can be sustainable in terms of environment and uses green technology and industry increasing eco-friendly factors as its power. In addition, Green Growth promotes Green Technology that cuts back on energy consumption by using renewable energy and minimizes pollutants emissions and industrial waste discharge when we use certain products. Since the activities to supply and use buildings have a greater influence on the global environment than any other human activity, the issue of ?Go Green? is necessary for construction as a movement for lightening the environmental burden. In order to keep the global environment sustainable and comfortable, therefore, the eco-friendly building which alternates the energy used in a structure to renewable energy and prevents excessive energy consumption is an obligation, not an option. As factors of eco-friendly construction technology, there are double skin facade system, atrium system, rainwater application system, dual water system, renewable energy practice system, tree-planting on roof tops or walls system, and so on. In this research, we are going to suggest how to design Building Integrated Photovoltaic System (BIPV System) and apply it as a morphologic design factor. The system generates electricity by directly using solar power among renewable energy resources that is unlimited, clean, and quiet and at the same time, allows other functions to be available by combining it with building skin such as a roof or a blind. To apply BIPV System, we need to investigate and analyze the direction of building site, the status of surrounding buildings and landscape architecture, the forecast of any changes around the site carefully, decide the application spot, the kind of a solar battery, the figure of the designed building, etc, analyze the shade, and then design the building through the feedback based on the evaluation of economical efficiency and feasibility study. As the methods of BIPV System application depend on the purpose of the building, the direction of the building lot, and the location, and the fa?ade is very affected by the system application spot and the kind of the solar battery, in-depth investigation and analysis on the early planning stage should be premised. If it is possible to confer with the engineering department, however, BIPV system can be applied regardless of those factors. BIPV System is expected to be applied at residential or commercial buildings as well as public facilities by renewable energy development and the law for utility promotion because both the generation efficiency of electric power and the developing the system as an exterior material of building has been improving rapidly though it?s application is still on the early stage. We can achieve a synergy when using the system with other green building factors. Most of all, for the sustainable and comfortable global environment, the consumers? complete understanding of energy consumption is primarily required.
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