Space Nuclear Fission Electric Power Systems

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9780974144344: Space Nuclear Fission Electric Power Systems

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1.

Buden, David
Editore: POLARIS BOOKS (2011)
ISBN 10: 0974144347 ISBN 13: 9780974144344
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PBShop
(Wood Dale, IL, U.S.A.)
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Descrizione libro POLARIS BOOKS, 2011. PAP. Condizione libro: New. New Book.Shipped from US within 10 to 14 business days.THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000. Codice libro della libreria IP-9780974144344

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2.

Buden, David
Editore: Polaris Books (2011)
ISBN 10: 0974144347 ISBN 13: 9780974144344
Nuovi Paperback Quantità: 10
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Ergodebooks
(RICHMOND, TX, U.S.A.)
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Descrizione libro Polaris Books, 2011. Paperback. Condizione libro: New. Codice libro della libreria INGM9780974144344

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3.

Buden, David
Editore: Polaris Books (2017)
ISBN 10: 0974144347 ISBN 13: 9780974144344
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Murray Media
(North Miami Beach, FL, U.S.A.)
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Descrizione libro Polaris Books, 2017. Paperback. Condizione libro: New. This item is printed on demand. Codice libro della libreria 0974144347

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4.

David Buden
Editore: Polaris Books, United States (2011)
ISBN 10: 0974144347 ISBN 13: 9780974144344
Nuovi Paperback Quantità: 10
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The Book Depository
(London, Regno Unito)
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Descrizione libro Polaris Books, United States, 2011. Paperback. Condizione libro: New. 277 x 213 mm. Language: English . Brand New Book ***** Print on Demand *****.The advantages of space nuclear fission power systems can be summarized as: compact size; low to moderate mass; long operating lifetimes; the ability to operate in extremely hostile environments; operation independent of the distance from the Sun or of the orientation to the Sun; and high system reliability and autonomy. In fact, as power requirements approach the tens of kilowatts and megawatts, fission nuclear energy appears to be the only realistic power option. The building blocks for space nuclear fission electric power systems include the reactor as the heat source, power generation equipment to convert the thermal energy to electrical power, waste heat rejection radiators and shielding to protect the spacecraft payload. The power generation equipment can take the form of either static electrical conversion elements that have no moving parts (e.g., thermoelectric or thermionic) or dynamic conversion components (e.g., the Rankine, Brayton or Stirling cycle). The U.S. has only demonstrated in space, or even in full systems in a simulated ground environment, uranium-zirconium-hydride reactor power plants. These power plants were designed for a limited lifetime of one year and the mass of scaled up power plants would probably be unacceptable to meet future mission needs. Extensive development was performed on the liquid-metal cooled SP-100 power systems and components were well on their way to being tested in a relevant environment. A generic flight system design was completed for a seven year operating lifetime power plant, but not built or tested. The former USSR made extensive use of space reactors as a power source for radar ocean reconnaissance satellites. They launched some 31 missions using reactors with thermoelectric power conversion systems and two with thermionic converters. Current activities are centered on Fission Surface Power for lunar applications. Activities are concentrating on demonstrating component readiness. This book will discuss the components that make up a nuclear fission power system, the principal requirements and safety issues, various development programs, status of developments, and development issues. Codice libro della libreria APC9780974144344

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5.

David Buden
Editore: Polaris Books, United States (2011)
ISBN 10: 0974144347 ISBN 13: 9780974144344
Nuovi Paperback Quantità: 10
Print on Demand
Da
The Book Depository US
(London, Regno Unito)
Valutazione libreria
[?]

Descrizione libro Polaris Books, United States, 2011. Paperback. Condizione libro: New. 277 x 213 mm. Language: English . Brand New Book ***** Print on Demand *****. The advantages of space nuclear fission power systems can be summarized as: compact size; low to moderate mass; long operating lifetimes; the ability to operate in extremely hostile environments; operation independent of the distance from the Sun or of the orientation to the Sun; and high system reliability and autonomy. In fact, as power requirements approach the tens of kilowatts and megawatts, fission nuclear energy appears to be the only realistic power option. The building blocks for space nuclear fission electric power systems include the reactor as the heat source, power generation equipment to convert the thermal energy to electrical power, waste heat rejection radiators and shielding to protect the spacecraft payload. The power generation equipment can take the form of either static electrical conversion elements that have no moving parts (e.g., thermoelectric or thermionic) or dynamic conversion components (e.g., the Rankine, Brayton or Stirling cycle). The U.S. has only demonstrated in space, or even in full systems in a simulated ground environment, uranium-zirconium-hydride reactor power plants. These power plants were designed for a limited lifetime of one year and the mass of scaled up power plants would probably be unacceptable to meet future mission needs. Extensive development was performed on the liquid-metal cooled SP-100 power systems and components were well on their way to being tested in a relevant environment. A generic flight system design was completed for a seven year operating lifetime power plant, but not built or tested. The former USSR made extensive use of space reactors as a power source for radar ocean reconnaissance satellites. They launched some 31 missions using reactors with thermoelectric power conversion systems and two with thermionic converters. Current activities are centered on Fission Surface Power for lunar applications. Activities are concentrating on demonstrating component readiness. This book will discuss the components that make up a nuclear fission power system, the principal requirements and safety issues, various development programs, status of developments, and development issues. Codice libro della libreria APC9780974144344

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6.

Buden, David
ISBN 10: 0974144347 ISBN 13: 9780974144344
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BWB
(Valley Stream, NY, U.S.A.)
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Descrizione libro Condizione libro: New. This item is Print on Demand - Depending on your location, this item may ship from the US or UK. Codice libro della libreria POD_9780974144344

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7.

Buden, David
Editore: POLARIS BOOKS (2011)
ISBN 10: 0974144347 ISBN 13: 9780974144344
Nuovi Quantità: > 20
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Books2Anywhere
(Fairford, GLOS, Regno Unito)
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Descrizione libro POLARIS BOOKS, 2011. PAP. Condizione libro: New. New Book. Delivered from our US warehouse in 10 to 14 business days. THIS BOOK IS PRINTED ON DEMAND.Established seller since 2000. Codice libro della libreria IP-9780974144344

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8.

Buden, David
Editore: Polaris Books (2011)
ISBN 10: 0974144347 ISBN 13: 9780974144344
Nuovi Paperback Quantità: 1
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Irish Booksellers
(Rumford, ME, U.S.A.)
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Descrizione libro Polaris Books, 2011. Paperback. Condizione libro: New. book. Codice libro della libreria 0974144347

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9.

Buden, David
Editore: Polaris Books
ISBN 10: 0974144347 ISBN 13: 9780974144344
Nuovi PAPERBACK Quantità: > 20
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Russell Books
(Victoria, BC, Canada)
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Descrizione libro Polaris Books. PAPERBACK. Condizione libro: New. 0974144347 Special order direct from the distributor. Codice libro della libreria ING9780974144344

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10.

David Buden
Editore: Polaris Books
ISBN 10: 0974144347 ISBN 13: 9780974144344
Nuovi Paperback Quantità: 20
Da
BuySomeBooks
(Las Vegas, NV, U.S.A.)
Valutazione libreria
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Descrizione libro Polaris Books. Paperback. Condizione libro: New. Paperback. 284 pages. Dimensions: 10.9in. x 8.4in. x 0.7in.The advantages of space nuclear fission power systems can be summarized as: compact size; low to moderate mass; long operating lifetimes; the ability to operate in extremely hostile environments; operation independent of the distance from the Sun or of the orientation to the Sun; and high system reliability and autonomy. In fact, as power requirements approach the tens of kilowatts and megawatts, fission nuclear energy appears to be the only realistic power option. The building blocks for space nuclear fission electric power systems include the reactor as the heat source, power generation equipment to convert the thermal energy to electrical power, waste heat rejection radiators and shielding to protect the spacecraft payload. The power generation equipment can take the form of either static electrical conversion elements that have no moving parts (e. g. , thermoelectric or thermionic) or dynamic conversion components (e. g. , the Rankine, Brayton or Stirling cycle). The U. S. has only demonstrated in space, or even in full systems in a simulated ground environment, uranium-zirconium-hydride reactor power plants. These power plants were designed for a limited lifetime of one year and the mass of scaled up power plants would probably be unacceptable to meet future mission needs. Extensive development was performed on the liquid-metal cooled SP-100 power systems and components were well on their way to being tested in a relevant environment. A generic flight system design was completed for a seven year operating lifetime power plant, but not built or tested. The former USSR made extensive use of space reactors as a power source for radar ocean reconnaissance satellites. They launched some 31 missions using reactors with thermoelectric power conversion systems and two with thermionic converters. Current activities are centered on Fission Surface Power for lunar applications. Activities are concentrating on demonstrating component readiness. This book will discuss the components that make up a nuclear fission power system, the principal requirements and safety issues, various development programs, status of developments, and development issues. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Codice libro della libreria 9780974144344

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