Share

Balance of Plant System Analysis and Component Design of Turbo-Machinery for High Temperature Gas Reactor Systems

Download Balance of Plant System Analysis and Component Design of Turbo-Machinery for High Temperature Gas Reactor Systems PDF Online Free

Author :
Release : 2004
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

GET EBOOK


Book Synopsis Balance of Plant System Analysis and Component Design of Turbo-Machinery for High Temperature Gas Reactor Systems by :

Download or read book Balance of Plant System Analysis and Component Design of Turbo-Machinery for High Temperature Gas Reactor Systems written by . This book was released on 2004. Available in PDF, EPUB and Kindle. Book excerpt: The Modular Pebble Bed Reactor system (MPBR) requires a gas turbine cycle (Brayton cycle) as the power conversion system for it to achieve economic competitiveness as a Generation IV nuclear system. The availability of controllable helium turbomachinery and compact heat exchangers are thus the critical enabling technology for the gas turbine cycle. The development of an initial reference design for an indirect helium cycle has been accomplished with the overriding constraint that this design could be built with existing technology and complies with all current codes and standards. Using the initial reference design, limiting features were identified. Finally, an optimized reference design was developed by identifying key advances in the technology that could reasonably be expected to be achieved with limited R & D. This final reference design is an indirect, intercooled and recuperated cycle consisting of a three-shaft arrangement for the turbomachinery system. A critical part of the design process involved the interaction between individual component design and overall plant performance. The helium cycle overall efficiency is significantly influenced by performance of individual components. Changes in the design of one component, a turbine for example, often required changes in other components. To allow for the optimization of the overall design with these interdependencies, a detailed steady state and transient control model was developed. The use of the steady state and transient models as a part of an iterative design process represents a key contribution of this work. A dynamic model, MPBRSim, has been developed. The model integrates the reactor core and the power conversion system simultaneously. Physical parameters such as the heat exchangers; weights and practical performance maps such as the turbine characteristics and compressor characteristics are incorporated into the model. The individual component models as well as the fully integrated model of the power conversion system have been verified with an industry-standard general thermal-fluid code Flownet. With respect to the dynamic model, bypass valve control and inventory control have been used as the primary control methods for the power conversion system. By performing simulation using the dynamic model with the designed control scheme, the combination of bypass and inventory control was optimized to assure system stability within design temperature and pressure limits. Bypass control allows for rapid control system response while inventory control allows for ultimate steady state operation at part power very near the optimum operating point for the system. Load transients simulations show that the indirect, three-shaft arrangement gas turbine power conversion system is stable and controllable. For the indirect cycle the intermediate heat exchanger (IHX) is the interface between the reactor and the turbomachinery systems. As a part of the design effort the IHX was identified as the key component in the system. Two technologies, printed circuit and compact plate-fin, were investigated that have the promise of meeting the design requirements for the system. The reference design incorporates the possibility of using either technology although the compact plate-fin design was chosen for subsequent analysis. The thermal design and parametric analysis with an IHX and recuperator using the plate-fin configuration have been performed. As a three-shaft arrangement, the turbo-shaft sets consist of a pair of turbine/compressor sets (high pressure and low pressure turbines with same-shaft compressor) and a power turbine coupled with a synchronous generator. The turbines and compressors are all axial type and the shaft configuration is horizontal. The core outlet/inlet temperatures are 900/520 C, and the optimum pressure ratio in the power conversion cycle is 2.9. The design achieves a plant net efficiency of approximately 48%.

Balance of Plant Analysis for High Temperature Gas Cooled Reactors

Download Balance of Plant Analysis for High Temperature Gas Cooled Reactors PDF Online Free

Author :
Release : 2009-09
Genre :
Kind : eBook
Book Rating : 894/5 ( reviews)

GET EBOOK


Book Synopsis Balance of Plant Analysis for High Temperature Gas Cooled Reactors by : Chunyun Wang

Download or read book Balance of Plant Analysis for High Temperature Gas Cooled Reactors written by Chunyun Wang. This book was released on 2009-09. Available in PDF, EPUB and Kindle. Book excerpt: As a Generation IV nuclear system, the High Temperature Gas Cooled Reactor (HTGR) desires a gas turbine cycle (Brayton cycle) as the power conversion system for it to achieve economic competitiveness. The availability of compact heat exchangers and helium turbo-machinery are thus the critical enabling technology for the gas turbine cycle. This book performs an extensive study on the power conversion system: design constraints, cycle variations, compact heat exchangers, high efficiency helium turbo-machinery and cycle control methods. A detailed steady state and dynamic model is developed for studying the cycle design in terms of efficiency and controllability. An indirect closed helium cycle design is developed in this book by identifying key advances in the technology that could reasonably be expected to be achieved with limited R&D. The modular conceptual design for the intermediate heat exchanger (IHX) and recuperator is also performed.

Fiscal Year 2001 Budget Authorization Request

Download Fiscal Year 2001 Budget Authorization Request PDF Online Free

Author :
Release : 2001
Genre : Energy development
Kind : eBook
Book Rating : /5 ( reviews)

GET EBOOK


Book Synopsis Fiscal Year 2001 Budget Authorization Request by : United States. Congress. House. Committee on Science. Subcommittee on Energy and Environment

Download or read book Fiscal Year 2001 Budget Authorization Request written by United States. Congress. House. Committee on Science. Subcommittee on Energy and Environment. This book was released on 2001. Available in PDF, EPUB and Kindle. Book excerpt:

Turbo-Machinery Dynamics

Download Turbo-Machinery Dynamics PDF Online Free

Author :
Release : 2005-05-05
Genre : Technology & Engineering
Kind : eBook
Book Rating : 041/5 ( reviews)

GET EBOOK


Book Synopsis Turbo-Machinery Dynamics by : A. S. Rangwala

Download or read book Turbo-Machinery Dynamics written by A. S. Rangwala. This book was released on 2005-05-05. Available in PDF, EPUB and Kindle. Book excerpt: This comprehensive text details the design, development, and operation of turbo-machinery. Starting with the fundamentals of thermodynamics and advancing to the latest trends in the development and production of turbo-machines, the author provides in-depth methods for analyzing new design procedures and maximizing their structural integrity and operating efficiency.

The Design of High-Efficiency Turbomachinery and Gas Turbines, second edition, with a new preface

Download The Design of High-Efficiency Turbomachinery and Gas Turbines, second edition, with a new preface PDF Online Free

Author :
Release : 2014-09-12
Genre : Technology & Engineering
Kind : eBook
Book Rating : 689/5 ( reviews)

GET EBOOK


Book Synopsis The Design of High-Efficiency Turbomachinery and Gas Turbines, second edition, with a new preface by : David Gordon Wilson

Download or read book The Design of High-Efficiency Turbomachinery and Gas Turbines, second edition, with a new preface written by David Gordon Wilson. This book was released on 2014-09-12. Available in PDF, EPUB and Kindle. Book excerpt: The second edition of a comprehensive textbook that introduces turbomachinery and gas turbines through design methods and examples. This comprehensive textbook is unique in its design-focused approach to turbomachinery and gas turbines. It offers students and practicing engineers methods for configuring these machines to perform with the highest possible efficiency. Examples and problems are based on the actual design of turbomachinery and turbines. After an introductory chapter that outlines the goals of the book and provides definitions of terms and parts, the book offers a brief review of the basic principles of thermodynamics and efficiency definitions. The rest of the book is devoted to the analysis and design of real turbomachinery configurations and gas turbines, based on a consistent application of thermodynamic theory and a more empirical treatment of fluid dynamics that relies on the extensive use of design charts. Topics include turbine power cycles, diffusion and diffusers, the analysis and design of three-dimensional free-stream flow, and combustion systems and combustion calculations. The second edition updates every chapter, adding material on subjects that include flow correlations, energy transfer in turbomachines, and three-dimensional design. A solutions manual is available for instructors. This new MIT Press edition makes a popular text available again, with corrections and some updates, to a wide audience of students, professors, and professionals.

You may also like...