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Study survey on a high-efficiency environment harmony type energy cascade utilization system; Kokoritsu kankyo chowagata energy cacade riyo system ni kansuru chosa kenkyu

Abstract

The development trend of the technology necessiated in cascade utilization of energy in the regional scale is studied in terms of degree of its feasibility, development effects, etc. The technology for regional cascade utilization of energy has a system in which energy is recovered from various waste heat sources and unused energy sources, and the energy is stored and transported to the place of demand as the need arises. At the place of demand, the energy transported is converted in the forms suitable for utilizations to meet the demand. This technology includes heat recovery technology, heat transport/heat storage technology, and heat utilization technology, and what supports the base of these technologies is common base support technology, environmental load reduction technology, and energy systematizing technology. For materialization of the system, it is indispensable to develop technologies such as recovery/utilization of unused energy, matching of energy supply/demand, efficiency of the energy utilization system and consideration of the environment, as well as to solve the problems such as supply responsibility, cost, pipe installation for waste heat transport, and city planning. 21 figs., 27 tabs.
Publication Date:
Mar 01, 1992
Product Type:
Technical Report
Report Number:
NEDO-P-9108
Reference Number:
SCA: 290400; 290700; PA: NEDO-92:820134; SN: 93000941679
Resource Relation:
Other Information: PBD: Mar 1992
Subject:
29 ENERGY PLANNING, POLICY AND ECONOMY; PREVENTION OF SIGNIFICANT DETERIORATION; ENERGY CASCADE; ENERGY RECOVERY; ENERGY STORAGE; WASTE HEAT UTILIZATION; ENERGY SOURCE DEVELOPMENT; PIPELINES; URBAN AREAS; PLANNING; 290400; 290700; ENERGY RESOURCES; TRANSPORT AND STORAGE
Sponsoring Organizations:
New Energy and Industrial Technology Development Organization, Tokyo (Japan)
OSTI ID:
10125795
Research Organizations:
New Energy and Industrial Technology Development Organization, Tokyo (Japan)
Country of Origin:
Japan
Language:
Japanese
Other Identifying Numbers:
Other: ON: DE93768469; TRN: 92:820134
Availability:
OSTI; NTIS
Submitting Site:
NEDO
Size:
302 p.
Announcement Date:
Jul 04, 2005

Citation Formats

None. Study survey on a high-efficiency environment harmony type energy cascade utilization system; Kokoritsu kankyo chowagata energy cacade riyo system ni kansuru chosa kenkyu. Japan: N. p., 1992. Web.
None. Study survey on a high-efficiency environment harmony type energy cascade utilization system; Kokoritsu kankyo chowagata energy cacade riyo system ni kansuru chosa kenkyu. Japan.
None. 1992. "Study survey on a high-efficiency environment harmony type energy cascade utilization system; Kokoritsu kankyo chowagata energy cacade riyo system ni kansuru chosa kenkyu." Japan.
@misc{etde_10125795,
title = {Study survey on a high-efficiency environment harmony type energy cascade utilization system; Kokoritsu kankyo chowagata energy cacade riyo system ni kansuru chosa kenkyu}
author = {None}
abstractNote = {The development trend of the technology necessiated in cascade utilization of energy in the regional scale is studied in terms of degree of its feasibility, development effects, etc. The technology for regional cascade utilization of energy has a system in which energy is recovered from various waste heat sources and unused energy sources, and the energy is stored and transported to the place of demand as the need arises. At the place of demand, the energy transported is converted in the forms suitable for utilizations to meet the demand. This technology includes heat recovery technology, heat transport/heat storage technology, and heat utilization technology, and what supports the base of these technologies is common base support technology, environmental load reduction technology, and energy systematizing technology. For materialization of the system, it is indispensable to develop technologies such as recovery/utilization of unused energy, matching of energy supply/demand, efficiency of the energy utilization system and consideration of the environment, as well as to solve the problems such as supply responsibility, cost, pipe installation for waste heat transport, and city planning. 21 figs., 27 tabs.}
place = {Japan}
year = {1992}
month = {Mar}
}