The history of steam navigation — Background and Themes

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Kennedy, John Project Gutenberg 2023 Not confirmed
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Words 94,504
Reading time 411 min
Text sections 63

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John Kennedy's 1903 history traces steam navigation from early inventors through transatlantic liners and turbine steamers, drawing on period newspapers and company records. The opening chapters detail the first passenger steamboat, the Clermont, and early services on the Clyde, Mersey, and Thames, while later sections cover the Great Eastern, railway-owned fleets, and the Parsons turbine.
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duty, or in unflinching determination to save the lives of those weaker than themselves.

It is not possible, nor would it answer any useful purpose, to discuss fully the various claims which have been put forward for the honour of having invented the first Marine Steam Engine. It will be sufficient to refer briefly to the inventors, or alleged inventors, prior to the year 1807.

In the Appendix to Señor Navarette’s “History of the Four Voyages of Columbus,” are copies of certain documents which the historian vouches to be authentic extracts from the series of Spanish Records preserved at Simancas. These documents narrate “that in the month of May or June, 1543, Blasco de Garay, a naval captain in the service of the Emperor Charles V., conducted at Barcelona, a series of experiments upon the applicability to ships of a certain propulsive force, which he alleges he had himself discovered.” De Garay describes the mechanism he employed as consisting of two wheels, one attached to either extremity of a movable axis which traversed the vessel’s waist, and was connected with a large caldron of boiling water. The experiments, it is alleged, were conducted in the presence of several persons of high birth, deputed by the Emperor to witness them, and amongst whom were many naval commanders. It is further alleged that De Garay succeeded in taking to sea a vessel of two hundred tons burthen, without the aid of sail or oar, and that her speed was about one league per hour.[3]

Rear-Admiral Geo. Preble, U.S.N., author of a “History of Steam Navigation,” gives the names of several persons who have searched the documents referred to, none of whom have been able to trace any mention of steam; he, therefore, concludes that the account of De Garay’s invention is a Spanish legend. [4] Papin, who was driven from France by the revocation of the Edict of Nantes, and was elected F.R.S. in 1681, describes, in 1690, a steam cylinder in which a piston descends by atmospheric pressure, and, as one of its uses, he mentions the propulsion of ships by paddle wheels. Towards the close of the 17th century, or the beginning of the 18th, Papin made the acquaintance of Thomas Savory, one of the most ingenious men of his times, and of Thomas Newcomen, a working blacksmith, of Devon. Savory designed a marine engine, which was greatly improved by Newcomen in 1705, and was used by Papin to propel a steamboat on the Fulda.

Thirty years later (1736), Jonathan Hulls, of Berwick-on-Tweed, received a patent for the first steamboat of which there is any authentic record from George II., which recited as follows:—

[5]“Whereas our trusty and well-beloved Jonathan Hulls hath by his petition humbly represented unto our most dearly beloved Consort, the Queen, that he hath, with much labour and with great expense, invented and formed a machine for towing ships and vessels out of, or into any harbour or river, against wind or tide, or in a calm, which the petitioner apprehends may be of great service to our Royal Party and merchant ships, and to boats and other vessels, of which the petitioner hath made oath that he is the sole inventor, as by affidavit to his said petition annexed.

“Know ye, therefore, that we, of our special grace, hath given and granted to the said Jonathan Hulls our special license, full power, sole privilege and authority during the term of fourteen years, and he shall lawfully make use of the same for carrying ships and other vessels out to sea, or into any harbour or river.

“In witness whereof we have caused these our letters to be made patent.

“Queen of Great Britain, &c.

“Given by right of Privy Seal at Westminster, this 21st day of December, 1736.”

In the description of his invention, Hulls states that, in his opinion, it would not be practicable to place his machine on anything but a tow-boat, as it would take up too much room for other goods to be carried on the same vessel with it, and it could not “be used in a storm, or when the waves are very raging.” Hulls’ vessel is stated to have been a stern-wheeler, a type of steamboat which is now extensively used for navigating shallow rivers in the Southern States of America and in India. The steam tow-boat brought its inventor nothing but ridicule, and he died in London in almost destitute circumstances.

Next in chronological sequence come the Abbé Arnal and the Marquis de Jouffroy, of France, who, in 1781, made experiments to show the practicability of applying steam power to vessels.

John Kennedy opens his 1903 history with a chapter on inventors before 1807, naming figures such as De Garay (1543), Papin, and Symington, and devoting particular attention to the Charlotte Dundas (1803) and the Clermont (1807), which he calls “the first passenger steamboat in the world.” The preface states that the information was “collected from the Press of the period,” chiefly the Times, Liverpool Mercury, and Glasgow Herald, and that some chapters in Part II first appeared as articles in the Journal of Commerce. Kennedy thanks directors and managers of steamship companies, as well as librarians in Bootle, Glasgow, and Liverpool, for access to publications “printed nearly a hundred years ago.”

From the Clermont to the Comet

The first four chapters move chronologically from Fulton’s Clermont (1807) to the early steamboats on the Clyde, the first Irish steamer City of Cork (1815), and the arrival of the first steampacket on the Mersey in 1815. Kennedy includes a narrative of the Thames voyage from Glasgow to London. The text is built around specific vessels, their dimensions, routes, and occasional mishaps—such as the loss of the Regent in 1817. The author’s method is to cite newspaper accounts and, where possible, name the authority; otherwise he offers a general acknowledgment. This section establishes the pattern of treating each steamer as a case study, with dates and technical details drawn from contemporary sources.

Transatlantic Giants and Railway Steamers

Later chapters cover the great ocean liners of the mid‑ to late‑nineteenth century, including the Great Eastern and the vessels of the Cunard, White Star, and other lines. Kennedy also describes the steamer services operated by railway companies, such as the Harwich‑Hook of Holland route, where ships like the Vienna were “powerful twin‑screw ocean‑going ships of 5,000 indicated horse‑power.” He notes that these vessels carried electric light and “all latest passenger comforts, including dining, smoking, and ladies’ saloons.” The text emphasises that railway company steamers sailed under the British flag and were subject to Board of Trade safety regulations. The detail on specific tonnages, engine types, and speeds reflects Kennedy’s reliance on company records and trade journals.

The Turbine Revolution

The final chapter, “Turbine Steamers,” introduces the Parsons marine steam turbine, invented by the Hon. C. A. Parsons. Kennedy describes the experimental vessel Turbinia, only 100 feet long but capable of 34½ knots, and notes that her main engines weighed “only about 4 tons” yet developed 2,100 I.H.P. The first mercantile turbine steamer, the King Edward (1901), achieved 20½ knots on trial and sailed 12,116 knots in 79 days on the Firth of Clyde. The Queen Alexandra (1902) followed, a three‑deck passenger steamer with five propellers driven by three turbines. Kennedy’s account is factual and technical, drawing on published trials and company orders, and it closes the narrative on a note of technological progress without predicting future developments.

Structure and Sources

The book is divided into two parts: Part I covers the general history up to the early 1900s, while Part II, originally a series of articles on “Historical Steamship Companies,” focuses on individual firms. Kennedy’s preface acknowledges Lindsay’s Merchant Shipping and other works, but his primary sources are newspapers and periodicals. The text includes many direct quotations from these sources, though the excerpts provided do not reveal the full extent of his citation practice. Readers should note that the narrative is organised by vessel and company rather than by theme, and that the later chapters become increasingly detailed on engineering specifications. The book is best read as a reference work, with each chapter largely self‑contained.

Kennedy’s history is a compilation of newspaper reports, company data, and earlier secondary works, assembled into a chronological survey that privileges factual detail over interpretation. Readers interested in the development of specific steamship lines or in the technical evolution of marine engines will find the later chapters most useful. The early chapters, though brief, provide a useful summary of the first decades of steam navigation as understood by a Liverpool‑based writer in 1903. Because the book is organised by vessel and company, it can be consulted selectively without losing context.

Years of watching the Clermont push past doubts into steam, I found a similar patience in the model-builder’s bench, coaxing spruce and tissue toward flight. Both books share that quiet faith in small, careful hands. The Model aeroplanes The building of model monoplanes, biplanes, etc., together with a chapter on building a model airship — A Closer Reading felt like an old friend’s echo, the same hopeful tinkering, just a different sky.

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