会议论文详细信息
World Multidisciplinary Civil Engineering-Architecture-Urban Planning Symposium - WMCAUS
Investigation of Effect Additive Phase Change Materials on the Thermal Conductivity
土木建筑工程
Nakielska, Magdalena^1 ; Chalamoski, Mariusz^1 ; Pawlowski, Krzysztof^1
UTP University of Science and Technology, Faculty of Civil and Environmental Engineering and Architecture, Al. prof. S. Kaliskiego 7, Bydgoszcz
85-796, Poland^1
关键词: Construction parameter;    Conventional fuel;    Environmental standards;    Natural ventilation;    Optimal construction;    Sources of energy;    Technological solution;    Ventilation systems;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/245/2/022048/pdf
DOI  :  10.1088/1757-899X/245/2/022048
学科分类:土木及结构工程学
来源: IOP
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【 摘 要 】
The aim of worldwide policy is to reduce the amount of consumed energy and conventional fuels. An important branch of the economy that affects the energy balance of the country is construction industry. In Poland, since January 1st, 2017 new limit values have been valid regarding energy saving and thermal insulation of buildings. To meet the requirements of more and more stringent technical and environmental standards, new technological solutions are currently being looked for. When it comes to the use of new materials, phase-change materials are being widely introduced into construction industry. Thanks to phase-change materials, we can increase the amount of heat storage. Great thermal inertia of the building provides more stable conditions inside the rooms and allows the use of unconventional sources of energy such as solar energy. A way to reduce the energy consumption of the object is the use of modern solutions for ventilation systems. An example is the solar chimney, which supports natural ventilation in order to improve internal comfort of the rooms. Numerous studies are being carried out in order to determine the optimal construction of solar chimneys in terms of materials and construction parameters. One of the elements of solar chimneys is an absorption plate, which affects the amount of accumulated heat in the construction. In order to carry out the research on the thermal capacity of the absorption plate, the first research work has been already planned. The work presents the research results of a heat-transfer coefficient of the absorption plates samples made of cement, aggregate, water, and phase-change material in different volume percentage. The work also presents methodology and the research process of phase-change material samples.
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