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Introductory technical guidance for mechanical engineers and other professional engineers and construction managers interested in boiler control systems. Here is what is discussed: 1. INTRODUCTION, 2. PANEL INSTRUMENTS, 3. LOCAL DEVICES AND INSTRUMENTATION 4. RECOMMENDED BOILER INSTRUMENTATION, 5. REFERENCES.
Introductory technical guidance for mechanical and electrical engineers interested in boiler control systems. Here is what is discussed: 1. INTRODUCTION 2. PANEL INSTRUMENTS 3. LOCAL DEVICES AND INSTRUMENTATION 4. RECOMMENDED BOILER INSTRUMENTATION 5. REFERENCES.
Introductory technical guidance for mechanical engineers, electrical engineers and construction managers interested in instruments and controls for boiler plants. Here is what is discussed: 1. GENERAL, 2. COMBUSTION CONTROLS, 3. BOILER CONTROLS, 4. NONBOILER CONTROLS, 5. CONTROL PANELS, 6. FIELD INSTRUMENTATION.
This book is for anyone who works with boilers as a utilities manager, power plant manager, control systems engineer, maintenance technician or operator. The information deals primarily with water tube boilers with Induced Draft (ID) and Forced Draft (FD) fan(s) or boilers with only a FD fan. However, it can apply to any steam generator requiring the firing of fuel. The book addresses issues to be considered when defining measurement transmitters and specification for transmitters. Final control elements are reviewed as to characteristics and sizing. Engineering details on control systems and the setup of the various control functions are covered with specific examples of boiler control including configuration and tuning. The book also contains some of the primary requirements for a Burner Management System.
Introductory technical guidance for mechanical engineers, construction managers, and hospital facility managers interested in hot water boilers for hospitals and medical clinics. Here is what is discussed: 1. DESIGN PARAMETERS/REQUIREMENTS, 2. GENERAL CRITERIA, 3. HEATING PLANT, 4. EQUIPMENT LAYOUT, 5. BOILER ROOM ENVIRONMENT, 6. SYSTEMS AND EQUIPMENT, 7. FUEL, 8. BURNERS, 9. COMBUSTION AIR, 10. BOILER STACK AND EMISSIONS, 11. CONTROLS AND INSTRUMENTATION, 12. OPERATION OF BOILERS, 13. FREEZE PROTECTION, 14. WARRANTY.
Introductory technical guidance for professional engineers interested in air pollution control engineering. Here is what is discussed: 1. AIR QUALITY AND AUXILIARY EQUIPMENT, 2. INCINERATOR EMISSIONS PERMITTING, 3. POLLUTION CONTROL FOR STEAM POWER PLANTS, 4. SOLID WASTE INCINERATION, 5. STEAM BOILER EMISSIONS PERMITTING, 6. CYCLONE COLLECTORS, 7. FABRIC FILTERS, 8. SCRUBBERS AND PRECIPITATORS, 9. SULFUR AND NITROGEN OXIDES CONTROL, 10. AIR STRIPPING.
Introductory technical guidance for civil engineers, structural engineers, bridge engineers and construction managers interested in hydraulic analysis of bridges. Here is what is discussed: 1. INTRODUCTION, 2. HYDRAULIC MODELING CRITERIA AND SELECTION, 3. SELECTING UPSTREAM AND DOWNSTREAM MODEL EXTENT, 4. IDENTIFYING AND SELECTING MODEL BOUNDARY CONDITIONS.
A classic resource that helps reduce boiler operating costs through a detailed, comprehensive, and applicable explanation of all aspects of boiler processes. It presents the basics of boiler control, the interrelationships of the process characteristics, and the dynamics involved, with a signifcant emphasis on start-up, shut down, flame monitoring, and safety interlock measures. Designed for professionals with a good understanding of boiler jargon, thermodynamics, and math fundamentals.
This book is aimed at engineers and technicians who need to have a clear, practical understanding of the essentials of process control, loop tuning and how to optimize the operation of their particular plant or process. The reader would typically be involved in the design, implementation and upgrading of industrial control systems. Mathematical theory has been kept to a minimum with the emphasis throughout on practical applications and useful information.This book will enable the reader to:* Specify and design the loop requirements for a plant using PID control* Identify and apply the essential building blocks in automatic control* Apply the procedures for open and closed loop tuning* Tune control loops with significant dead-times* Demonstrate a clear understanding of analog process control and how to tune analog loops* Explain concepts used by major manufacturers who use the most up-to-date technology in the process control field·A practical focus on the optimization of process and plant·Readers develop professional competencies, not just theoretical knowledge·Reduce dead-time with loop tuning techniques