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From "The Blitz" in London, to the United Military and Civil Defense program in the United States, this book covers the little known firefighting units that were an integral part of fire fighting efforts during WWII. This book discusses the purpose, use, and construction of these two wheeled fire fighting vehicles and outlines how they were used to protect both Europe and the United States. TMFFP's also discusses the various manufacturers and their challenges with developing and building these units. There are a large number of historical photos, advertisements, and technical information on these units as well as modern photos of the very limited number of trailer pumps that survive today.
The vehicles and other firefighting equipment of the Milwaukee Fire Department, like the department itself, are unique among the fire service. It built more of its own apparatus than any other American city and few can match the scope and character of apparatus used to serve and protect life and property in Milwaukee. Through detailed research, firsthand narratives, and captivating photos, the author walks the reader through the fascinating history of the incredible machines that served Cream City from the mid-nineteenth century to modern times. This volume traces the ever-changing face of Milwaukee's fire-fighting and life-saving equipment in parallel with the city's own history and growth. The fire department workshop's reputation for ingenuity is shown through its adaptations to disastrous fires that brought about changes in laws, economic growth and decline, the establishment of Milwaukee's ethnic neighborhoods, the difficult transition from horses to motorization, the wartime and post-war experience, the corporate world of apparatus manufacturers, and Milwaukee's fireboat fleet.
Written by an experienced engineer, this book contains practical information on all aspects of pumps including classifications, materials, seals, installation, commissioning and maintenance. In addition you will find essential information on units, manufacturers and suppliers worldwide, providing a unique reference for your desk, R&D lab, maintenance shop or library.* Includes maintenance techniques, helping you get the optimal performance out of your pump and reducing maintenance costs * Will help you to understand seals, couplings and ancillary equipment, ensuring systems are set up properly to save time and money * Provides useful contacts for manufacturers and suppliers who specialise in pumps, pumping and ancillary equipment
War was coming. Everyone knew that confrontation with Nazi Germany was inevitable and that London was likely to be a prime target of Hitler’s bombers. So, in January 1939, Aylmer Firebrace, the Chief Officer of London Fire Brigade, was seconded to the Home Office to plan for the capital’s fire defence. Before joining the Fire Brigade, Aylmer Firebrace had been a Royal Navy officer who had fought in the Battle of Jutland during the First World War. It was following the Armistice that, in 1919, he became principal officer in the London Fire Brigade. He was promoted to deputy chief and finally chief officer in June 1938.. That war struck London soon enough, but it was on 7 September 1940, that Firebrace’s preparations were truly tested with the start of the Blitz. For the next fifty-seven days and nights London was subjected to the longest continuous bombing campaign in history. Then, as the Luftwaffe ranged wider and further across Britain’s towns and cities, Firebrace was tasked with toured the nation to see the effects of the bombing, at which point he saw the need for a national response. The result was the creation of the National Fire Service. Formed in August 1941, by the amalgamation of some 1,600 separate brigades, this remarkable organisation had, at its peak, a strength of 370,000 men and women. It was led for its entire existence by Aylmer Firebrace. As the war continued, Firebrace became Chief of the Fire Staff and Inspector-in-Chief of the Fires Services, being the first and, to date, only person to head all the fire-fighting services in Britain. This body had to deal with the expansion of the Blitz as well as the so-called ‘Baedeker’ raids, the ‘tip-and-run’ attacks, Baby Blitz and V1 and V2 offensives of the later years of the war. In his fascinating account, written immediately the war, Firebrace reflects on the functioning of the fire service at its most testing time. This book is an essential addition to the understanding of the Blitz and how London and the rest of the country survived its darkest hour.
Every oil and gas refinery or petrochemical plant requires sufficient utilities support in order to maintain a successful operation. A comprehensive utilities complex must exist to distribute feedstocks, discharge waste streams, and remains an integrated part of the refinery's infrastructure. Essentials of Oil and Gas Utilities explains these support systems and provides essential information on their essential requirements and process design. This guide includes water treatment plants, condensate recovery plants, high pressure steam boilers, induced draft cooling towers, instrumentation/plant air compressors, and units for a refinery fuel gas and oil systems. In addition, the book offers recommendations for equipment and flow line protection against temperature fluctuations and the proper preparation and storage of strong and dilute caustic solutions. Essentials of Oil and Gas Utilities is a go-to resource for engineers and refinery personnel who must consider utility system design parameters and associated processes for the successful operations of their plants. - Discusses gaseous and liquid fuel systems used to provide heat for power generation, steam production and process requirements - Provides a design guide for compressed air systems used to provide air to the various points of application in sufficient quantity and quality and with adequate pressure for efficient operation of air tools or other pneumatic devices. - Explains the water systems utilized in plant operations which include water treatment systems or raw water and plant water system; cooling water circuits for internal combustion engines, reciprocating compressors, inter- cooling and after-cooling facilities; and "Hot Oil" and "Tempered Water" systems