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Meta Particle Fabric (MPF) Use in High-Rise Buildings (Research Paper Sample)
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Meta Particle Fabric (MPF) Use in High-Rise Buildings source..
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Meta Particle Fabric (MPF) Use in High-Rise Buildings
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Identification of Problems
Following the changes in the contemporary society, most people have moved from the lower to the middle-class social level and have adequate disposable income to improve their lifestyles. As such, one of the areas in the contemporary society that is experiencing rapid transformations is the real estate sector, as individuals in the middle class in most parts of the globe seek to own homes, whereas individuals in the upper class seek to construct high-rise buildings for living as well as for commercial activities. Conversely, there is an issue in relation to the materials used to construction, especially the high-rise buildings (Chin, et al. 2008). This relates to the demanding levels of security, energy conservation, as well as the vanishing of building materials, a situation that requires civil engineers to establish new building materials that can offer the stipulated requirements. Thus, we aim to establish the utilization of Meta Particle Fabric (MPF) in high-rise buildings.
MPF is a material that will help provide light in most parts of the high-rise building, which cannot access natural light and can only utilize electrical lighting (Cengel and Ghajar, 2011). Conversely, since the material will be incorporated in the building materials used, the high-rise building will not consume much electrical energy, meaning that it will have meant one of the principal requirements in the construction of high-rise buildings, which is energy conservation.
Material still is Non-Existent
One of the problems in relation to the construction of high-rise buildings and the most appropriate materials for the same is that fact that the MPF materials are in the theoretical stage of development as research continue to evaluate their viability in the development of high-rise buildings. The danger with being in the theoretical stage is that, it will take a long time prior to the implementation, because the materials will have to be evaluated by diverse groups of individuals and most especially critics who believe that it is impossible to incorporate an invisible material in the development process of high-rise buildings (Hawilch, Saqan and Abdalla, 2013). There is also limited information regarding the current study of MPF materials and the influence when used in high-rise buildings, a situation that limits the level of success of the theoretical studies that are ongoing. Further, following the completion of the theoretical preparation of the MPF, the researchers will only manufacture a small amount for testing, which means that only a small portion of investors will have access to the material.
Difficulty in Selection of the Appropriate Fiber
Another prime challenge facing the use of MPF in high-rise buildings is the selection of the most appropriate fabric that can handle the components of MPF. MPF cannot be used in concrete, which is currently used in the construction of high-rise buildings; this limits the potential of establishing the appropriate material or fiber that can accommodate the MPF components. In essence, in order to incorporate MPF components in a fabric, the fabric will be need to undergo a delicate engraving process (Cengel and Ghajar, 2011). Currently, there are three fibers under consideration utilized in the development process of high-rise buildings, meaning they are the most appropriate for MPF. They include; carbon fiber, basalt fiber and glass fiber; these materials have diverse components, meaning that adequate research regarding whether they can incorporate MPF components needs to be carried out prior to exposing them to the engraving process. There is also an issue relating to the adhesive material as a technique of bonding the diverse components in order to incorporate MPF in the materials under consideration. That is the process requires adequate structural network to be utilized in the high-rise buildings in order to offer the desired results.
Reduction of Electrical Consumption and Heat Conductivity
Owing to the high rate of resource depreciation, energy conservation has become a crucial factor in all aspects of life. This explains the introduction of the green building, one...
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