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Ancient Web: Citroenet Explains the Hydraulic Suspension That Made Old Citroëns Feel Like Machinery From Another Timeline

Citroën’s old hydropneumatic cars have always sounded slightly fictional to people raised on ordinary springs and shock absorbers. The car rises after startup. It keeps itself level under load. The same high-pressure system can run brakes, steering, clutch functions and, in some models, the gear change. Citroenet explains how the weirdness actually works.

Read Citroenet’s hydraulic-system overview.

The core trick is simple enough to state: gas can be compressed, hydraulic fluid effectively cannot. Citroën trapped nitrogen behind a flexible diaphragm inside metal spheres, using the gas as the spring and pressurized fluid to transmit force, control damping and maintain ride height.

The system first appeared in production form on the rear of the Traction Avant 15CV Six H before becoming one of the defining features of the DS19 in 1955. Variants later appeared on the GS, SM, CX, BX, XM, Xantia, C5 and C6, along with experimental and lower-volume Citroëns.

Citroenet does a good job of explaining why the design was not simply French engineering theater. Soft suspension normally creates compromises: load changes ride height, geometry shifts and body control becomes difficult. Citroën’s self-levelling system corrects vehicle height as weight changes, allowing unusually soft springing without letting the car permanently sag under passengers or luggage.

Later Hydractive systems added electronic control. Sensors for vehicle speed, steering, braking and body motion could switch additional spheres in or out of the hydraulic circuit, changing the suspension between softer and firmer states. The Activa version went further and used hydraulic control to fight body roll.

The site also does not pretend the system was perfect. Early DS hydraulics suffered seal and fluid problems, and the pages discuss low-speed harshness, road noise, pitching and other quirks. The introduction of mineral-based LHM fluid in the 1960s greatly improved reliability.

That balance is what makes the page useful. It is enthusiast material, but it is not just worship. It explains both the engineering elegance and the ways real cars misbehaved.

The larger Citroenet site, maintained by Julian Marsh, contains model histories, brochures and technical material covering decades of Citroën experimentation. It is the kind of specialized reference that search engines can surface but rarely replace.

Explore the hydraulics section at Citroenet. If you have ever wondered why an old Citroën seems to stand up before driving away, this is where the magic trick stops being magic and becomes plumbing.

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Ancient Web: Citroënët Has Been Explaining Hydropneumatic Suspension Since 1995

Citroën spent decades putting high-pressure hydraulics into cars, and Julian Marsh spent decades making sure somebody on the Web explained what all those spheres, pumps and green fluid were actually doing.

Visit Citroënët’s hydraulic-system archive

Citroënët dates back to 1995, when Marsh was helping build the Citroën Car Club website and realized he had enough material to create a separate site of his own. It began with a single reprinted article about the D Sport and eventually expanded into several thousand pages covering production cars, prototypes, concepts, commercial vehicles, books, memorabilia, articles and technical material.

The hydraulic section is one of the best examples of why that kind of enthusiast archive matters.

It gathers brochures, diagrams, historical articles and explanations covering the Traction Avant 15CV H, DS19, GS, GSA, SM, CX, BX, XM, Xantia, Hydractive systems and Citroën’s high-pressure hydraulic philosophy in general.

The system is strange until somebody explains the gas and fluid

Citroën’s hydropneumatic suspension uses a compressible gas as the springing medium and hydraulic fluid to transmit force, provide damping and control vehicle height.

An engine-driven pump pressurizes the system. Spheres containing nitrogen and hydraulic fluid replace conventional steel springs. Because the gas compresses while the fluid effectively does not, the system can provide extremely soft springing while self-leveling compensates for passengers and cargo.

That sounds complicated until the diagrams and descriptions walk through it.

The same high-pressure system could also power other functions. On cars such as the DS, hydraulics were used for suspension, braking, steering, clutch operation and gearchange. Later systems added electronic control through Hydractive suspension, while the Xantia Activa famously used hydraulic control to attack body roll.

Citroënët does not pretend the design was magic. The site also discusses drawbacks: low-speed harshness, road noise, pitching, motion sickness for some occupants and the odd behavior that can occur when height correction reacts to certain road shapes.

That balance is useful. Enthusiast sites are at their best when enthusiasm produces documentation rather than worship.

The archive is also a reminder of how durable subject-specific publishing can be. Citroënët began before Citroën itself had a website, according to Marsh, and the site has continued accumulating material across three decades of automotive and web history.

A modern owner searching for LHM hydraulics, Hydractive 3, DIRAVI steering, DS clutchless gearchange or Xantia Activa suspension can still land on a hand-built enthusiast site from the first years of the commercial Web.

That is exactly the kind of search surface CacheRat’s 1,967 Ancient Web Domains research list is meant to expose.

The cars were weird on purpose.

Thankfully, somebody documented the weirdness properly.

Explore Citroënët’s high-pressure hydraulics pages