The acoustic facilities in the present generic architecture education spaces are limited which doesn’t require any specialised acoustic provisions to control the sound. But the architecture education is evolving to be something that exists in some faraway time. Technology and expanded knowledge of the learning process have resulted in a metamorphosis of the design laboratory. For such revitalized learning spaces, new and innovative acoustic solutions are needed to control the sounds created by various activities of the design. To achieve this type of creative sound design, this thesis uses the cork as a base material by using the CNC machining as the main production method to manufacture the acoustic panels needed to furnish the design laboratories. The CNC machining in general deals with longer manufacturing time, higher costs and heavy amounts of wastage. These snags would be dealt in this thesis by tracing the multi-objective optimization methods for the CNC production of the acoustic panels. The work for this thesis includes the developing of algorithms for the acoustic panels which has the capability to control the geometric parameters for any shape and dimensions, maintaining the suitable acoustic parameters for the space, using the parametric software rhino, grasshopper and pachyderm. And proposing few modules through which these panels can be arranged and used in the learning spaces for the future.
Le strutture acustiche negli attuali spazi di educazione all'architettura generica sono limitate, il che non richiede alcuna disposizione acustica specializzata per il controllo del suono. Ma l'educazione all'architettura si sta evolvendo per essere qualcosa che esiste in un tempo lontano. La tecnologia e la conoscenza approfondita del processo di apprendimento hanno portato a una metamorfosi del laboratorio di progettazione. Per tali spazi di apprendimento rivitalizzati, sono necessarie soluzioni acustiche nuove e innovative per controllare i suoni creati dalle varie attività del design. Per realizzare questo tipo di sound design creativo, questa tesi utilizza il sughero come materiale di base utilizzando la lavorazione CNC come metodo di produzione principale per produrre i pannelli acustici necessari per arredare i laboratori di progettazione. Le lavorazioni CNC in generale riguardano tempi di produzione più lunghi, costi più elevati e forti sprechi. Questi aspetti sarebbero trattati in questa tesi tracciando i metodi di ottimizzazione multi-obiettivo per la produzione CNC dei pannelli acustici. Il lavoro per questa tesi comprende lo sviluppo di algoritmi per i pannelli acustici che hanno la capacità di controllare i parametri geometrici per qualsiasi forma e dimensione, mantenendo i parametri acustici adatti per lo spazio, utilizzando il software parametrico rinoceronte, cavalletta e pachiderma. E proponendo alcuni moduli attraverso i quali questi pannelli possono essere organizzati e utilizzati negli spazi di apprendimento per il futuro.
The sound of learning : sound design solutions for digital fabrication laboratory
KOTA, ABHITEJ
2018/2019
Abstract
The acoustic facilities in the present generic architecture education spaces are limited which doesn’t require any specialised acoustic provisions to control the sound. But the architecture education is evolving to be something that exists in some faraway time. Technology and expanded knowledge of the learning process have resulted in a metamorphosis of the design laboratory. For such revitalized learning spaces, new and innovative acoustic solutions are needed to control the sounds created by various activities of the design. To achieve this type of creative sound design, this thesis uses the cork as a base material by using the CNC machining as the main production method to manufacture the acoustic panels needed to furnish the design laboratories. The CNC machining in general deals with longer manufacturing time, higher costs and heavy amounts of wastage. These snags would be dealt in this thesis by tracing the multi-objective optimization methods for the CNC production of the acoustic panels. The work for this thesis includes the developing of algorithms for the acoustic panels which has the capability to control the geometric parameters for any shape and dimensions, maintaining the suitable acoustic parameters for the space, using the parametric software rhino, grasshopper and pachyderm. And proposing few modules through which these panels can be arranged and used in the learning spaces for the future.File | Dimensione | Formato | |
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2019_7_KOTA_ABHITEJ_01.pdf
Open Access dal 16/07/2022
Descrizione: Thesis report
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24.24 MB
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Adobe PDF
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24.24 MB | Adobe PDF | Visualizza/Apri |
2019_7_KOTA_ABHITEJ_02.pdf
non accessibile
Descrizione: Thesis panels
Dimensione
30.4 MB
Formato
Adobe PDF
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30.4 MB | Adobe PDF | Visualizza/Apri |
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https://hdl.handle.net/10589/148159