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Building energy efficiency, in developed countries, was originally to reduce the loss of energy in the building, commonly known as "improving the energy utilization rate in the building", in order to ensure the improvement of building comfort, the rational use of energy, and constantly improve the efficiency of energy utilization.
Building energy conservation specifically refers to the implementation of energy-saving standards, the use of energy-saving technologies, processes, equipment, materials and products in the process of planning, design, new construction (reconstruction, expansion), renovation and use of buildings, the use of energy-saving technologies, processes, equipment, materials and products, improve thermal insulation performance and the efficiency of heating, air conditioning and refrigeration heating systems, strengthen the operation and management of building energy systems, the use of renewable energy, under the premise of ensuring the quality of indoor thermal environment, increase indoor and outdoor energy exchange thermal resistance, so as to reduce heating systems, air conditioning and refrigeration heating, lighting, hot water** Energy consumption due to large amounts of heat consumption.
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It does not fall under the category of mandatory insulation.
However, temporary buildings should also consider their own thermal insulation effect, and choose different materials with thermal insulation effect according to different situations.
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The country does not have temporary steel structures do not need to do energy-saving regulations, is it a temporary building, when to demolish who said clearly? Temporary buildings such as the construction team do not need to be submitted for review. Since it is necessary to submit the drawings to the company for review, it must meet the requirements of national regulations.
Whether to do energy saving mainly depends on the building function, if you change to do not need thermal insulation space, you can avoid the link of energy saving, can not change according to the usual building to do energy-saving calculations, out of the energy-saving report, review or record form, energy-saving article.
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Take a look at your design drawings, does what is written on the general design description involve energy saving?
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The design institute is right, no matter what kind of building should be energy-saving. However, temporary buildings and industrial plants are not included in the scope of the adjustment. Because most of the temporary buildings are of a transitional nature, the energy consumption is not large and the energy saving cost is large; The factory building cannot achieve energy-saving effect in architectural design, so the technical transformation of the production process is generally the main thing in the treatment.
For example, no one would design a toilet to be energy-efficient, right, because it doesn't belong to a place where people stay for a long time. Usually no one would do anything to save energy for such a thing. Specific to the situation of your school, this steel structure does not have to be energy-saving.
It may be because the design institute's opinion on the name of the student internship building is that it should be energy-saving, and it is recommended to change it to a student internship workshop. If the design institute wants to say anything, it will be changed to consider it according to the envelope structure, but it would be good if the drawings do not show that there is a wall, and after the review, the wall will be added.
Hope it helps.
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No matter what kind of building it is, it must be energy-efficient.
Temporary buildings refer to buildings, structures and other facilities that are temporarily constructed or erected due to production and living needs, and have simple structures that must be demolished within a time limit. For example: shacks, sheds and other sheds and short-term exhibition houses (model houses, exhibition rooms), etc.
The life is generally not more than two years, the structure does not exceed two floors, and durable materials such as cast-in-place reinforced concrete are generally not used if there are no special requirements for materials.
In accordance with the provisions of the "Town and Country Planning Law" and the "Land Management Law"."The service life of temporary buildings shall not exceed two years, and shall be dismantled within the approved service period. "If the temporary building (structure) is not confirmed and issued, and the nature of use shall not be changed, and the use needs to be extended due to special reasons, the construction unit shall apply for an extension before the expiration of the period, and the extension application can only be made once.
If the two-year period has elapsed and no extension has been granted, then it is illegal in nature.
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This is simple, don't call this building a practice building, call it a school practice factory, according to the energy-saving specifications, the plant does not need to do energy-saving. If you have to name it as the internship building, it can't be built according to the factory report, change the name, and this will be solved.
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Energy saving 65% is the index, if you go through the formal procedures, there is no energy-saving design, the drawing review can not pass!
If you don't go through the formalities, it doesn't matter.
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The literal understanding is different, building energy efficiency is the study of building energy saving methods, and energy-saving buildings are the study of buildings, this is my understanding.
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Building energy saving is not the same as saving energy for buildings! Energy-efficient buildings are environmentally friendly.
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Building energy efficiency is a verb. Energy-efficient buildings are a noun. One is the process and the other is the result. Buildings built using building energy efficiency techniques are called energy-efficient buildings. ok
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It is different, it refers to different directions, the former refers to energy saving, and the latter refers to buildings.
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The scope of green buildings should be large, not only including building and energy saving, but also environmental protection and conservation. It refers to a building that is harmless to the environment, can fully utilize environmental natural resources, and is built under the condition of not destroying the basic ecological balance of the environment, which can also be called sustainable development building, ecological building, return to nature building, energy-saving and environmental protection building, etc.
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1. Thermal insulation and insulation technology and materials for new energy-saving walls and roofs;
2. Thermal insulation and sealing technology of energy-saving doors and windows;
3. Central heating and combined heat, electricity and cold cogeneration technology;
4. Temperature control and household heat metering technology and device for heating and heating system;
5. Renewable energy application technology and equipment such as solar energy and geothermal;
6. Architectural lighting energy-saving technology and products;
7. Air-conditioning and refrigeration energy-saving technology and products;
8. Other energy-saving technologies and energy-saving management technologies with mature technologies and remarkable effects.
The recycling of construction waste is not included in the festival.
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In the process of site selection, planning, design, construction and use, through the use of energy-saving building materials, products and equipment, the implementation of building energy-saving standards, strengthen the operation and management of energy-saving equipment used in buildings, rationally design the thermal performance of building envelopes, improve the operation efficiency of heating, cooling, lighting, ventilation, water supply and drainage and piping systems, as well as the use of renewable energy, under the premise of ensuring the use of building functions and indoor thermal environment quality, reduce building energy consumption, rational and effective use of energy. Comprehensive building energy conservation is a systematic project, which must be led by national legislation and national legislation, make comprehensive and clear policy provisions on building energy efficiency, and formulate comprehensive building energy efficiency standards by relevant departments in accordance with the national energy conservation policy;
In order to truly achieve comprehensive building energy conservation, it is necessary to fully implement various energy-saving measures in strict accordance with the provisions of the national energy-saving policy and energy-saving standards, so that every citizen can truly establish a comprehensive view of building energy conservation and truly implement building energy conservation.
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Building energy conservation mainly includes external wall insulation, roof insulation, stairwell and basement roof insulation, energy-saving doors and windows, hollow aerated blocks and other materials. Waste recycling is not a building energy saving product.
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It includes not only wall insulation, solar energy and coated glass, but also the ecological design of the building.
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1) Wall energy-saving system measures.
By adopting energy-saving wall materials or energy-saving measures, the thermal insulation performance of building walls can be greatly improved, thereby reducing building energy consumption.
2) Door and window energy-saving system.
Doors and windows are the main channels for communication and integration between living and outdoor natural environment, and their energy-saving potential is huge, and the use of energy-saving materials or energy-saving measures can effectively reduce the indoor energy consumption of buildings.
3) Water system.
Through the use of water-saving appliances and equipment, as well as the best water system, such as reclaimed water flushing system, rainwater greening irrigation system, etc., to achieve the rational use of water resources and universities.
4) Rainwater harvesting and utilization.
The roof rainwater of mobile buildings, the rainwater on the road surface, the use of artificial wetland method, artificial soil filter method, etc., are treated as non-potable water for a variety of purposes, and at the same time, through ground infiltration, recharge to supplement groundwater and surface water sources.
5) Comprehensive utilization of renewable energy.
development and utilization of renewable energy, such as ground source heat pumps for heating and cooling; Solar energy; photovoltaic solar thermal; wind power, etc.
6) Natural ventilation utilization.
It is of great significance to use outdoor wind pressure and indoor thermal pressure to form natural ventilation to reduce building energy consumption, improve indoor air quality, and improve the comfort of indoor personnel.
7) Land-saving system.
Take measures such as roof greening, rational development and utilization of underground space, etc., to achieve the goal of making full use of the site and saving land.
8) Economical use of building materials.
Develop and utilize local building materials according to local conditions.
9) Constructed wetland system.
Artificially constructed, controlled, and engineered wetland systems for wastewater treatment. It is generally composed of an artificial substrate and aquatic plants that grow on it, such as reeds, cattails, etc. When sewage passes through the system, the pollutants and nutrients in it are absorbed, transformed or decomposed by the system, so that the water quality is purified.
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Answer pro Hello Specifically, it includes the following: 1. The building energy efficiency division includes the following sub-items; 1. Wall energy-saving engineering, 2. Curtain wall energy-saving engineering, 3. Door and window energy-saving engineering, 4. Roof energy-saving engineering, 5. Ground energy-saving engineering 6. Heating energy-saving engineering, 7. Ventilation and air-conditioning regulation energy-saving engineering, 8. Cooling and heating source and pipe network energy-saving engineering of air-conditioning and heating system 9. Power distribution and lighting energy-saving engineering, 10. Monitoring and control energy-saving engineering.
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Energy saving of walls, curtain walls, doors and windows, roofs, heating, ventilation and air conditioning, cold and heat sources and pipe networks of air conditioning and heating systems, power distribution and lighting, monitoring and control.
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Maintain the structure.
It mainly refers to: doors, windows, external sunshades, exterior walls, roofs and other places;
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The building energy-saving project belongs to a sub-project of the unit's construction project. You can check the "Code for Quality Acceptance of Building Energy Conservation Engineering".
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Construction equipment is also within the scope of construction engineering, construction engineering divisions include: foundation and foundation (9 subdivisions), main structure (6 subdivisions), building decoration (10 subdivisions), building roofing (5 subdivisions), building water supply, drainage and heating (10 subdivisions), Building Electrical (7 sub-divisions), Intelligent Building (10 sub-divisions), Ventilation & Air Conditioning (7 sub-divisions), Elevators (3 sub-divisions), Building Energy Conservation Engineering (4 sub-divisions, 71 sub-divisions, 71 sub-divisions, 71 sub-divisions, ,,, 71 sub-divisions.
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Yes, just sent over for stamping!
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The current building energy efficiency work is a bit overkill, you just need to follow the mandatory provisions in the relevant standards to do it
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The bold text is a strong bar and must be enforced.
In fact, this is a paradox, isn't it possible to not execute it in bold font? Ha ha.
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