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The base building model was developed by TRNSYS software and validated against the recorded data from the field work in six days out of August-September in 2013.
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Numerical analysis of impact stress distribution on coconut fibre composites based building model is carried out in ABACUS (FEA) software and it is compared with normal conventional building model.
First, a base-case building model is established by EnergyPlus to create a pool of candidate inputs using orthogonal experiment design.
A building model is fabricated based on coconut fibre composites, which is performed better among the three fibre composites is tested in a tsunami wave basin.
With objective costs as thermal comfort (deviation of room temperature from required temperature) and energy measure (Ecm) explicit MPC design for this building model is executed based on its state space representation of the supply water temperature (input)/room temperature (output) dynamics.
A methodology, based on the concept of reference building models, was developed and applied in order to provide reliable demand profiles for a block of buildings.
A critical step in building the model was hypothesizing associations based on conceptual relationships, not simply based on the data available.
The building thermal model is calculated based on the mathematical Equations 33 to 38.
The model was based on building up industrial capacity and exports.
The MLR-GA based model building was performed using the MobyDigs [55] computer program.
The major advantage of building physics based models are the modular structure of their algorithms.
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