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Parametric Architecture With Grasshopper Pdf 180


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The width of the courtyard is determined by the walls of the building’s courtyard. The roof slope does not include the parapet walls in order to allow more privacy to the living space of the building. Both the formal and functional parameters are included in the study of the house, including the building types and configurations of the courtyard. The shape and form of the building have been created by parametric design using grasshopper and then optimized using algorithms of Galapagos Evolutionary Solver and kangaroo physics. Based on the design of the house, we have also conducted a study of its thermal performance. The thermal performance of the building has been studied in terms of heat transfer and thermal comfort. In this study, a 3D model of the building was developed using Rhinohide® (software) and Grasshopper (plugin). It should be noted that the reason for designing this building is to use the thermal comfort of the structure as an index of comfort based on the existing thermal performance. This approach can help us to determine the need for ventilation in the interior of the building and can also help to determine the need for the presence of solar screens in the building. As the heat is a form of energy, it is emitted from the building, directly or indirectly, to the environment. Thermal comfort results from the interaction of heat between generated in the building and used with other factors, such as pollution, air pressure, humidity, clothing worn, warmth perception, etc. Greenhouse buildings, according to statistics, should be ventilated. As this is not possible in a traditional houses, the thermal comfort of buildings with closed environment is lower than the thermal comfort of modern houses [13, 14]. Traditional houses, such as our study, should be left open to the outside environment. The advantage of this is that the heat that is emitted by this structure can be used within this structure, increasing the comfort of our study. Furthermore, the indoor thermal environment can be taken as a secondary effect in relation to the differences in solar performance as the structure has been designed with specific thermal performance in mind. However, this study does not consider the total heat load, so research on this aspect is desired to provide a more accurate assessment of the total energy emission. d2c66b5586






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