Safe boiler operation fundamentals download pdf






















Fireside Controls include burner control, flame detection, fuel temperature, and fuel pressure. Gas is burned with either high pressure or low pressure burners. Fuel Oil is delivered for burning by using an atomization burner or a rotary cup burner. A Rotary Cup Burner atomizes fuel oil using a spinning cup and high velocity air.

A Steam Atomizing Burner uses either air or steam to vaporize the liquid fuel oil. A Pressure Atomizing Burner compensates for load change by increasing or decreasing delivery pressure. Number 2 oil is ignited by spark ignition. Numbers 5 and 6 oils are typically ignited by a gas LP or natural pilot burner. Oil must be vaporized before it will burn. Heavy oils Nos. Combustion Control Systems regulates furnace fuel and air ratio within limits for continuous combustion and stable flame throughout the demand operating limits of the boiler and includes draft control.

The fuel valve maintains the fuel flow and the air damper maintains the air flow. The jackshaft is a shaft that drives the air damper and fuel valve on a power burner. A Parallel control system has one actuator for the fuel valve and one actuator for the air damper.

A steam boiler is controlled by a pressure control commonly called a pressuretrol , while a hot water boiler is controlled by a temperature switch called an aquastat. The boiler burner primary control is the device that safely manages the burner operation.

Sometimes called the programmer or burner management system, the primary control allows fuel to flow only when all of the safe conditions for fuel ignition are met. The sequence of burner operation does not allow fuel to flow unless all controls and safety devices agree that the burner can safely operate. If all the permissives agree, the fuel valves will open as directed by the burner control.

If any one of the permissives is not satisfied, fuel cannot flow, as the permissives are wired in a series circuit. There are five types of flame detectors when used with combustion heating equipment. They are: 1. CAD Cell Cadmium Sulfide the photocell changes resistance as cadmium sulfide is responsive to light 2. Infrared IR Light is sensitive to the infrared radiation emitted by the combustion of fuels such as natural gas, oil and coal.

Photocell sensors that detect visible light 4. Ultraviolet UV Light sensors that detect ultraviolet radiation emitted from all flames 5. Flame Rod is a sensor that has the ability to use a small amount of current, which is conducted by and through the flame. The double block and bleed gas train uses redundant safety shut-off gas valves blocking valves to provide a positive method of preventing gas flow to the burner.

Between the two safety shut-offs, a bleed valve allows any gas in the line to safely flow out of the building. Most boiler accidents are caused by operator error and poor maintenance.

The Chief Engineer of a boiler plant holds the responsibility for directing boiler operations, procedures and maintenance. Log sheets are a paper record of boiler operation and maintenance, and should be used in all boiler rooms to help ensure safe operation. A log sheet will specify the task to be performed, such as blowing down the low water cut-out LWCO , and the operator can then mark the sheet to show that this operation was completed.

If the boiler is to be placed out of service for an extended period of time, proper lay-up procedures are required and must be followed. A low water condition is the most common cause of boiler failure. The first thing a boiler operator should do when entering the boiler room or taking over boiler operation is to check the NOWL. An automatic boiler feedwater regulator is designed to maintain the proper water level in the boiler.

A low water alarm in the system is designed to alert the boiler operator of a low water level. In the event of a low water alarm, secure the fire first before adding water to the boiler.

The gage glass sight glass is a tube that indicates the water level in the boiler. It is installed either directly on the boiler or on the water column. It is connected at the top into the steam section of the boiler and at the bottom into the water section, thus showing the true boiler water level.

The water level in the gage glass is tested by opening and then closing the gauge glass blowdown valve. In addition to the gage glass, some boilers also have try-cocks installed to indicate the water level. The three try-cocks which are drain valves are placed on the water column at various levels. Blowdowns Boiler blowdown is removal of water from the boiler. It is done in order to remove the amount of solids in the water, and is performed as either bottom sludge blowdown, or continuous surface blowdown.

The blowdown frequency and duration is primarily determined by the boiler water analysis. The water quality will vary greatly based on boiler type and size, amount of condensate return, and boiler water treatment program. Inspections A boiler internal inspection is performed to allow the boiler inspection a view of all internal surfaces, i.

The boiler is taken off line, cooled, drained, opened and cleaned in preparation for the internal boiler inspection. All hand holes and manholes are opened, and the low water cut-outs are opened and cleaned. This is a water- pressure test of new installations and repaired boilers.

A handhole provides access to the waterside of the firetube boiler for inspection. Boiler trim, Valves, Fittings, and Controls Boiler trim is the controls and fittings used to operate the boiler. The trim determines whether the pressure vessel is used for steam or hot water production. Trim includes devices such as the low water cut-out, the gage glass sometimes called the sight glass , the pressure gauge, etc.

Valves The safety valve also referred to a relief valve, pop-off valve, or safety relief valve provides protection to the pressure vessel from over pressurization and is the primary safety control on all boilers. They must be of sufficient size capacity to keep the boiler from developing more steam pressure than the valve can relieve, and must be set at or below the boiler MAWP Maximum Allowable Working Pressure.

Valve pressure settings cannot be changed by plant personnel, but must be calibrated by a certified repair facility. There should be no shut off valves between the boiler and the pop-off valve.

Boilers with more than sq ft. Safety valves are spring loaded valves and should be regularly tested by the boiler operator on duty, unless plant policy states otherwise. Testing a safety relief valve is performed by simply lifting the test lever on the side of the valve. Prior to the test, determine that the valve discharge is piped to a safe place. A gate valve is an isolation valve, and is used only for the purpose of stopping or allowing flow.

Gate valves are used as steam stop valves, blowdown valves, etc. Gate valves should always be fully open or completely closed, never in- between. The stem and yoke are outside the valve body. A rising stem valve allows the boiler operator to know the position of the valve by looking at the stem. If the stem is extended up or out the valve is open. In an open position, the valve provides no resistance to the flow of steam.

If the stem is down or in, the valve is closed. These valves are typically seen in steam lines. A globe valve is a modulation valve, not an isolation valve.

A globe valve disrupts the flow of the fluid, even in the fully open position. A check valve allows flow in one direction only. These are often seen in feedwater lines between the pumps and the boiler. When opening any manual valve, the boiler operator should open the valve slowly in order to prevent water hammer. The control opens the burner circuit, stopping the burner if it senses a low-water level. Controls may also operate the feedwater pump or valve or a make-up water valve as well as the burner.

They are called dual or triple element controls. In addition, you find useful examinations of special topics including rules for accreditation and certification; perspective on cyclic, impact, and dynamic loads; functionality and operability criteria; fluids; pipe vibration; stress intensification factors, stress indices, and flexibility factors; code design and evaluation for cyclic loading; and bolted-flange joints and connections.

Nuclear Safety Nuclear Safety Offshore Operation Facilities: Equipment and Procedures provides new engineers with the knowledge and methods that will assist them in maximizing efficiency while minimizing cost and helps them prepare for the many operational variables involved in offshore operations. This book clearly presents the working knowledge of subsea operations and demonstrates how to optimize operations offshore. The first half of the book covers the fundamental principles governing offshore engineering structural design, as well as drilling operations, procedures, and equipment.

The second part includes common challenges of deep water oil and gas engineering as well as beach shallow oil engineering, submarine pipeline engineering, cable engineering, and safety system engineering. Many examples are included from various offshore locations, with special focus on offshore China operations. In the offshore petroleum engineering industry, the ability to maintain a profitable business depends on the efficiency and reliability of the structure, the equipment, and the engineer.

Offshore Operation Facilities: Equipment and Procedures assists engineers in meeting consumer demand while maintaining a profitable operation. Comprehensive guide to the latest technology, strategies, and best practices for offshore operations Step-by-step approach for dealing with common challenges such as deepwater and shallow waters Includes submarine pipeline, cable engineering, and safety system engineering Unique examples from various offshore locations around the world, with special focus on offshore China.

Develop a Complete and Thorough Understanding of Industrial Steam Systems Industrial Steam Systems: Fundamentals and Best Design Practices is a complete, concise user's guide for plant designers, operators, and other industry professionals involved with such systems. Focused on the proper safety design and setup of industrial steam systems, this text aligns essential principles with applicable regulations and codes.

Incorporating design and operation guidelines from the latest available literature, it describes the industrial steam system equipment and its operation, outlines the requirements of a functioning boiler room, and explains how to design and engineer an industrial steam system properly. From Beginner to Advanced—All within a Single Volume Industrial steam systems are one of the main utility support systems used for almost all manufacturing.

This text describes the design and operation of industrial steam systems in simple steps that are extremely beneficial for engineers, architects, and operators. The text includes a sample project, executed in detail, to explain the system. It also presents relevant examples throughout the text to aid in faster learning. This author covers: Industrial steam system fundamentals and elementary information System setup and required equipment Applicable codes and regulations Equipment operation principals Best design practices for system setup, piping and instrumentation, equipment and pipe sizing, and equipment selection Execution of a sample project Industrial Steam Systems: Fundamentals and Best Design Practices presents an overview of the design, installation, and operation of industrial steam systems.

Understanding the system setup, controls, and equipment, and their effect on each other enables readers to learn how to troubleshoot, maintain, and operate an industrial steam system that provides high quality steam efficiently. Sanders Roy E. Author : Roy E. Gives insight into eliminating specific classes of hazards, while providing real case histories with valuable messages.

There are practical sections on mechanical integrity, management of change, and incident investigation programs, along with a long list of helpful resources. New chapter in this edition covers accidents involving compressors, hoses and pumps. Stay up to date on all the latest OSHA requirements, including the OSHA required Management of Change, Mechanical Integrity and Incident Investigation regulations Learn how to eliminate hazards in the design, operation and maintenance of chemical process plants and petroleum refineries World-renowned expert in process safety, Roy Sanders, shows you how to reduce risks in your plant Learn from the mistakes of others, so that your plant doesn't suffer the same fate Save lives, reduce loss, by following the principles outlined in this must-have text for process safety.

There is no other book like it! McLaughlin Ronald K. Author : Ronald K. Heating Services Design focuses on the design of heating systems. The book first discusses the fundamentals of fluid flow. Topics include fluid properties, viscous fluids in motion, fluid flow in pipes, and additional losses in pipes. The text explains automatic control and considers feedforward and feedback control, process reaction rate, system time lags, control valves, modes of control, and cascade and multi-controller systems.

The book also discusses heating system design; estimation of the heating system load and energy consumption; and steady-state heat losses. Boiler inspections, maintenance, operating controls testing, and troubleshooting will all be discussed.

Also, the protection and burner management system will be discussed. This GL O MACS Steam Boilers training seminar will be delivered along workshop principles with formal lectures, video clips, multimedia illustrations and interactive worked examples.

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