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Prediction of Room Air Diffusion for Reduced Diffuser Flow Rates

Prediction of Room Air Diffusion for Reduced Diffuser Flow Rates
Author: Kavita Gangisetti
Publisher:
Total Pages:
Release: 2011
Genre:
ISBN:

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With the ever-increasing availability of high performance computing facilities, numerical simulation through Computational Fluid Dynamics (CFD) is increasingly used to predict the room air distribution. CFD is becoming an important design and analytical tool for investigating ventilation inside the system and thus to increase thermal comfort and improve indoor air quality. The room air supply diffuser flow rates can be reduced for less loading with the help of a variable air volume unit. The reduction in supply flow rate reduces the energy consumption for the unoccupied and reduced load conditions. The present research is to study the comfort consequences for reduced diffuser flow rates and loading and to identify the hot and cold spots inside a room. A small office room with ceiling based room air distribution method is considered for CFD analysis. The CFD results are validated with experimental measured data for the designed diffuser flow rate. A parametric study on different turbulence models, namely, low Reynolds number modification of standard k-epsilon model, re-normalization group k-epsilon model, transition k-kl-w model and Reynolds stress model is carried out, and simulation results in terms of velocity and temperature profiles are compared against the measured data. Other important parameters such as diffuser jet inlet angle and radiation effect are also considered on the benchmark case to validate the results and to recommend the best fit parameters for room air simulations. Analysis has been carried out for a range of flow rates and heat loads. The jet momentum, draft and temperature distribution inside the room are studied for the impact of reduced flow rates and loading. The thermal comfort is quantified in terms of vertical temperature distribution and percentage dissatisfied index. From the research it is found that, for the studied room setup and air distribution method, the diffuser flow rate can be reduced up to 30 percent of the design flow rate, without experiencing a considerable effect on the room air temperature distribution. Also, based on thermal comfort and room air temperature distribution, several recommendations for occupant spacing in a room are suggested for reduced diffuser flow rates.


Diffuser Studies with Single-and Two-Phase Flows

Diffuser Studies with Single-and Two-Phase Flows
Author:
Publisher:
Total Pages: 85
Release: 1962
Genre:
ISBN:

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An experimental investigation was conducted of two problems of diffuser flow which are encountered in a gas-driven jet pump. The first was concerned with determining the feasibility of diffusing a free jet of liquid. The second was concerned with determining the effect of entrained gas in the flowing liquid upon the diffusion process. In all of the experiments, conical diffusers were employed with water and air as the working fluids. It was found that up to 86.5% of the kinetic energy of the free jet could be recovered by employing the proper type and size of diffuser inlet, with the appropriate back pressure. Flow rate and the distance from the nozzle exit to the diffuser inlet had little effect on the energy recovery. The experiments indicated that when a gas is entrained in a liquid being diffused, the pressure recovery of the diffuser is reduced, the amount of reduction depending on the volume of entrained air and the static pressure at the throat of the diffuser. A theoretical analysis indicates that the reduction in pressure recovery due to gas entrainment should become smaller as the entrance velocity to the diffuser is increased. The experiments indicated, however, the possibility that compressibility effects may seriously reduce the pressure recovery for high velocity, two-phase flow in a diffuser.


Air Diffusion Dynamics

Air Diffusion Dynamics
Author: Ralph G. Nevins
Publisher:
Total Pages: 154
Release: 1976
Genre: Science
ISBN:

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Building Performance Simulation for Design and Operation

Building Performance Simulation for Design and Operation
Author: Jan L.M. Hensen
Publisher: Routledge
Total Pages: 958
Release: 2019-04-24
Genre: Architecture
ISBN: 0429688539

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When used appropriately, building performance simulation has the potential to reduce the environmental impact of the built environment, to improve indoor quality and productivity, as well as to facilitate future innovation and technological progress in construction. Since publication of the first edition of Building Performance Simulation for Design and Operation, the discussion has shifted from a focus on software features to a new agenda, which centres on the effectiveness of building performance simulation in building life cycle processes. This new edition provides a unique and comprehensive overview of building performance simulation for the complete building life cycle from conception to demolition, and from a single building to district level. It contains new chapters on building information modelling, occupant behaviour modelling, urban physics modelling, urban building energy modelling and renewable energy systems modelling. This new edition keeps the same chapter structure throughout including learning objectives, chapter summaries and assignments. Moreover, the book: • Provides unique insights into the techniques of building performance modelling and simulation and their application to performance-based design and operation of buildings and the systems which service them. • Provides readers with the essential concepts of computational support of performance-based design and operation. • Provides examples of how to use building simulation techniques for practical design, management and operation, their limitations and future direction. It is primarily intended for building and systems designers and operators, and postgraduate architectural, environmental or mechanical engineering students.


Air Distribution in Rooms

Air Distribution in Rooms
Author: H.B. Awbi
Publisher: Elsevier
Total Pages: 746
Release: 2000
Genre: Science
ISBN: 9780080430171

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The air distribution in occupied spaces is a major issue of public concern. It is widely recognized that the quality of air and the nature of airflow can affect the health of occupants and the energy consumed in buildings and transport vehicles. ROOMVENT is the principal international conference in the field of air distribution. It was first initiated in 1987 by SCANVAC, the Scandinavian Federation of Heating, Ventilating and Sanitary Engineering Associations in Denmark, Finland, Iceland, Norway and Sweden. The aim of the Conference is to bring together researchers from universities and research institutes, engineers from industry and government officials and policy makers, with the goal of experiencing the latest techniques for measuring and analyzing indoor air flow, the visualization of indoor air flow patterns, the evaluation of ventilation parameters and the most recent developments in computer simulation techniques of room airflow. It is hoped that the theme of ROOMVENT 2000 "Ventilation for Health and Sustainable Environment" will set the scene for room air distribution research and development for the new millennium.


Radial Flow Turbocompressors

Radial Flow Turbocompressors
Author: Michael Casey
Publisher: Cambridge University Press
Total Pages: 789
Release: 2021-06-10
Genre: Science
ISBN: 1108416675

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An introduction to the theory and engineering practice that underpins the component design and analysis of radial flow turbocompressors. Drawing upon an extensive theoretical background and years of practical experience, the authors provide descriptions of applications, concepts, component design, analysis tools, performance maps, flow stability, and structural integrity, with illustrative examples. Features wide coverage of all types of radial compressor over many applications unified by the consistent use of dimensional analysis. Discusses the methods needed to analyse the performance, flow, and mechanical integrity that underpin the design of efficient centrifugal compressors with good flow range and stability. Includes explanation of the design of all radial compressor components, including inlet guide vanes, impellers, diffusers, volutes, return channels, de-swirl vanes and side-streams. Suitable as a reference for advanced students of turbomachinery, and a perfect tool for practising mechanical and aerospace engineers already within the field and those just entering it.


Energy Research Abstracts

Energy Research Abstracts
Author:
Publisher:
Total Pages: 484
Release: 1994-02
Genre: Power resources
ISBN:

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Proceedings

Proceedings
Author:
Publisher:
Total Pages: 918
Release: 1990
Genre: Buildings
ISBN:

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Acoustic Absorbers and Diffusers

Acoustic Absorbers and Diffusers
Author: Trevor J. Cox
Publisher: CRC Press
Total Pages: 495
Release: 2009-01-26
Genre: Architecture
ISBN: 0203893050

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Absorbers and diffusers are two of the main design tools for altering the acoustic conditions of rooms, semi-enclosed spaces and the outdoor environment. Their correct use is important for delivering high quality acoustics. Unique and authoritative, this book decribes how to effectively measure, model, design and apply diffusers and absorbers. It is a resource for new and experienced acousticians, seeking an understanding of the evolution, characteristics and application of modern diffusers. Absorption is a more established technology and so the book blends traditional designs with modern developments. The book covers practical and theoretical aspects of absorbers and diffusers and is well illustrated with examples of installations and case studies. This new edition brings Acoustic Absorbers and Diffusers up-to-date with current research, practice and standards. New developments in measurement, materials, theory and practice since the first edition (published in 2004) are included. The sections on absorbers are extended to include more about noise control.