Smeaton's Tower and the Rebirth of Concrete
[1] In 1756, the Eddystone Rocks, a treacherous reef off the coast of Devon, England, presented a notorious danger to maritime navigation. Two successive wooden lighthouses built on the site had already been destroyed—one swept away by a ferocious storm, and the other consumed by fire. Recognizing that wood was insufficient to withstand the relentless force of the Atlantic, the English engineer John Smeaton resolved to build a structure entirely of stone.
[2] Smeaton’s design was revolutionary. He modeled the lighthouse's shape on the trunk of an oak tree, tapering upward to distribute the impact of waves. Rather than relying on simple gravity to hold the granite blocks in place, Smeaton pioneered a system of interlocking dovetail joints, effectively binding the stones into a single, cohesive monolith. Yet, his most enduring contribution was not the shape of the tower, but the mortar that held it together.
[3] At the time, standard mortar dissolved in water. To find a mixture that would cure under water, Smeaton embarked on a series of rigorous experiments with different compositions of lime and clay. He discovered that lime containing a high proportion of clay produced a cement that was hydraulic—meaning it would set and harden even when completely submerged. This breakthrough revived a technology lost since the fall of the Roman Empire: hydraulic concrete. Smeaton's Eddystone Lighthouse stood for over a century, proving the viability of hydraulic mortar and paving the way for modern civil engineering.
Suppose the writer's goal had been to write an essay that chronicles the history of lighthouse construction in England from the seventeenth century to the modern era. Would this essay fulfill that goal?
- AYes, because it describes how Smeaton's structural and chemical innovations solved the problems of wood-built lighthouses off the English coast.
- BYes, because it explains that Smeaton's development of hydraulic cement revived a building technology that was lost after the fall of the Roman Empire.
- No, because the essay focuses almost exclusively on Smeaton’s specific engineering breakthroughs for one lighthouse rather than tracking the nationwide evolution of lighthouses over centuries.Answer
- DNo, because it demonstrates that Smeaton's design was unsuccessful in weathering the forces of the Atlantic, forcing engineers to abandon stone construction.