- Technological history of the Roman military
The technology history of the Roman military covers the development of and application of technologies for use in the armies and navies of Rome from the Roman Republic to the fall of the Western Roman Empire. The rise of Hellenism and the Roman Republic are generally seen as signalling the end of the Iron Age in the mediterranean. Their iron-working was enhanced by a process known as
carburization , the Romans made use of the better properties in their armaments, and the 1300 years of Roman military technology saw radical changes in technology. The Roman armies of the early empire were much better equipped than early republican armies. Metals used for arms and armour included primarilyiron ,bronze andbrass . For construction, the army used wood, earth and stone. The later use of concrete in architecture was widely mirrored in Roman military technology, especially in the application of a military workforce to civilian construction projects. [John W. Humphrey, John P. Oleson and Andrew N. Sherwood; "Greek and Roman Technology: A sourcebook"]Origins and development
Much of what is described as typically Roman technology, as opposed to that of the Greeks, comes directly from the Etruscan civilization, which was thriving to the North when Rome was just a small kingdom. The
Etruscans had perfected the stonearch , and used it inbridge s as well as buildings. A part of later Roman technologies were taken directly from Greek civilization.After the absorption of the ancient Greek city states into the Roman Republic in 146 BC, the highly advanced
Greek technology began to spread across many areas of Roman influence and supplement the Empire. This included the military advances the Greeks had made, as well as all the scientific, mathematical, political and artistic developments.New materials
However, the Romans made many significant technological advances, such as the invention of
hydraulic cement andconcrete . They used such new materials to great advantage in their structures, many of which survive to this day, like their masonryaqueducts such as thePont du Gard and buildings such as the Pantheon andBaths of Diocletian inRome . Their methods were recorded by such luminaries asVitruvius andFrontinus for example, who wrote handbooks to advise fellow engineers and architects. Romans knew enough history to be aware that widespread technological change had occurred in the past and brought benefits, as shown for example by theNaturalis Historia ofPliny the Elder . That tradition continued as the empire grew in size and absorbed new ideas. Romans thought of themselves as practical, so small-scale innovation was common (such as the development of theballista into the repeating ballista). The traditional view is that their reliance on a plentiful slave labour force and a lack of a patent or copyright system have both been cited as reasons that there was little social or financial pressure to automate or reduce manual tasks. However, this view is being challenged by new research that shows they did indeed innovate, and on a wide scale. Thus thewatermill had been known to the Greeks, but it was the Romans who developed their efficient utilisation. The set of mills atBarbegal in southernFrance were worked by a single aqueduct, which drove no less than 16 overshot mills built into the side of a hill. They probably were built by the army and supplied flour to a wide region. Floating mills were also used to exploit fast flowing rivers.Water power
The Romans also used water power in an unexpected way during mining operations. We know from the writings of
Pliny the Elder that they exploited the alluvialgold deposits of north-westSpain soon after conquest of the region in 25 BC using large-scalehydraulic mining methods. The spectaculargold mine atLas Medulas was worked by no less than 7 long aqueducts cut into the surrounding mountains, the water being played directly onto the soft auriferous ore.The outflow was channelled into sluice boxes, and the heavier gold collected on rough pavements. They also developed many deep mines, such as those for
copper atRio Tinto , where Victorian mining developments exposed the much earlier workings. Dewatering machines such asArchimedean screw s and reverse overshot water wheels were found "in situ", one of which is on show at theBritish Museum . Another fragmentary example was recovered from the Roman gold mine atDolaucothi in westWales , and is preserved at theNational Museum of Wales inCardiff . The army were at the forefront of development of gold mines, since the metal was imperial property, and developed the Dolaucothi mines from the outset by establishing a fort there that was known asLuentinum . They had the expertise to build the infrastructure of aqueducts and reservoirs, as well as control production.The period in which technological progress was fastest and greatest was during the 2nd century and 1st century BC, which was the period in which Roman political and economic power greatly increased. By the 2nd century, Roman technology appears to have peaked.Roman implementation of technology
The Romans advanced military technology significantly, and implemented it on a massive scale. From a few early models of
ballista from Greek city-states the Romans adopted and improved the design, eventually issuing one to every century in the legions.To facilitate this organisation, an engineering corps was developed. An officer of engineers, or praefectus fabrum, is referenced in armies of the Late Republic, but this post is not verifiable in all accounts and may have simply been a military advisor on the personal staff of a commanding officer [Keppie 1984: 99] . There were legion architects (whose rank is yet unknown) who were responsible for the construction of war machines who would also assure that all artillery constructions in the field were level. Ensuring that constructions were level was the job of the libratores, who would also launch missiles and other projectiles (on occasion) during battle [Le Bohec, p. 52] . The engineering corps was in charge of massive production, frequently prefabricating artillery and siege equipment to facilitate its transportation [Goldsworthy, p. 144]
ee also
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Roman aqueducts
*Roman technology
*Sanitation in ancient Rome References
Primary sources
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Frontinus
*Pliny the elder
*Vitruvius Notes
External links
*Roman Swords in the Republic and After, [http://www.unc.edu/courses/rometech/public/content/special/James_Hurst/THE_ROMAN_SWORD_IN_THE_REP.htm]
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