Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts

Thesis (M.C.P.)--Massachusetts Institute of Technology, Dept. of Urban Studies and Planning, 2012. === Cataloged from PDF version of thesis. === Includes bibliographical references (p. 58-61). === There is a growing trend in cities toward establishing localized, shared energy infrastructure. As exis...

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Main Author: Sherman, Genevieve Rose
Other Authors: Stephen Hammer.
Format: Others
Language:English
Published: Massachusetts Institute of Technology 2012
Subjects:
Online Access:http://hdl.handle.net/1721.1/73823
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spelling ndltd-MIT-oai-dspace.mit.edu-1721.1-738232019-05-02T16:34:03Z Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts Organizational models for implementing microgrids and district energy systems in urban commercial districts Sherman, Genevieve Rose Stephen Hammer. Massachusetts Institute of Technology. Dept. of Urban Studies and Planning. Massachusetts Institute of Technology. Dept. of Urban Studies and Planning. Urban Studies and Planning. Thesis (M.C.P.)--Massachusetts Institute of Technology, Dept. of Urban Studies and Planning, 2012. Cataloged from PDF version of thesis. Includes bibliographical references (p. 58-61). There is a growing trend in cities toward establishing localized, shared energy infrastructure. As existing energy infrastructure ages and demand increases, cities face rising energy costs and security risks combined with mandates to decrease carbon emissions. Local energy infrastructure provides cities and neighborhoods with greater control over their energy production and consumption, including the ability to lower the cost of energy, move to low-carbon energy technologies, and improve energy reliability and security. This thesis seeks to understand how stakeholders in urban commercial districts are creating organizations to implement two types of shared local energy infrastructure: district energy and microgrids. Building district energy and microgrids is a complex undertaking, which is one reason that they proliferate in urban environments where that complexity is reduced, such as universities, hospitals, and military bases. These areas may have single property owners, single land-owners or preexisting energy infrastructure that simplifies regulatory, legal, and development complexities of building new energy systems. Commercial businesses districts are significantly more complicated; they have multiple properties that abut public right of ways and that are owned by multiple, unaffiliated customers of legacy energy utilities. Establishing such a system in a commercial district requires addressing local utility rights, public right-of-way and franchise issues, as well as creating a new organizational structure that allows for the involvement of multiple parties in developing the system. This thesis assesses the feasibility of two organizational models for implementing local energy infrastructure in commercial districts: a joint cooperative model and an independent provider model. In a joint cooperative, all properties in a district become customers of a jointly owned, operated, and managed energy system. With an independent provider, all district properties become customers of an independently owned and operated system. These models are evaluated through two cases in which they are currently being tested: a proposed district energy system in Portland, Oregon and a proposed microgrid in Stamford, Connecticut. Therein, barriers to implementation such as perception of risk and lack of familiarity with shared energy systems are also examined. by Genevieve Rose Sherman. M.C.P. 2012-10-10T15:48:51Z 2012-10-10T15:48:51Z 2012 2012 Thesis http://hdl.handle.net/1721.1/73823 811398404 eng M.I.T. theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. See provided URL for inquiries about permission. http://dspace.mit.edu/handle/1721.1/7582 61 p. application/pdf Massachusetts Institute of Technology
collection NDLTD
language English
format Others
sources NDLTD
topic Urban Studies and Planning.
spellingShingle Urban Studies and Planning.
Sherman, Genevieve Rose
Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts
description Thesis (M.C.P.)--Massachusetts Institute of Technology, Dept. of Urban Studies and Planning, 2012. === Cataloged from PDF version of thesis. === Includes bibliographical references (p. 58-61). === There is a growing trend in cities toward establishing localized, shared energy infrastructure. As existing energy infrastructure ages and demand increases, cities face rising energy costs and security risks combined with mandates to decrease carbon emissions. Local energy infrastructure provides cities and neighborhoods with greater control over their energy production and consumption, including the ability to lower the cost of energy, move to low-carbon energy technologies, and improve energy reliability and security. This thesis seeks to understand how stakeholders in urban commercial districts are creating organizations to implement two types of shared local energy infrastructure: district energy and microgrids. Building district energy and microgrids is a complex undertaking, which is one reason that they proliferate in urban environments where that complexity is reduced, such as universities, hospitals, and military bases. These areas may have single property owners, single land-owners or preexisting energy infrastructure that simplifies regulatory, legal, and development complexities of building new energy systems. Commercial businesses districts are significantly more complicated; they have multiple properties that abut public right of ways and that are owned by multiple, unaffiliated customers of legacy energy utilities. Establishing such a system in a commercial district requires addressing local utility rights, public right-of-way and franchise issues, as well as creating a new organizational structure that allows for the involvement of multiple parties in developing the system. This thesis assesses the feasibility of two organizational models for implementing local energy infrastructure in commercial districts: a joint cooperative model and an independent provider model. In a joint cooperative, all properties in a district become customers of a jointly owned, operated, and managed energy system. With an independent provider, all district properties become customers of an independently owned and operated system. These models are evaluated through two cases in which they are currently being tested: a proposed district energy system in Portland, Oregon and a proposed microgrid in Stamford, Connecticut. Therein, barriers to implementation such as perception of risk and lack of familiarity with shared energy systems are also examined. === by Genevieve Rose Sherman. === M.C.P.
author2 Stephen Hammer.
author_facet Stephen Hammer.
Sherman, Genevieve Rose
author Sherman, Genevieve Rose
author_sort Sherman, Genevieve Rose
title Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts
title_short Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts
title_full Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts
title_fullStr Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts
title_full_unstemmed Sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts
title_sort sharing local energy infrastructure : organizational models for implementing microgrids and district energy systems in urban commercial districts
publisher Massachusetts Institute of Technology
publishDate 2012
url http://hdl.handle.net/1721.1/73823
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