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Atrium Glazing Repair: Common Faults and How They Are Fixed

Leaks, cracked panels, failed seals: expert guide to atrium glazing repair faults and fixes. IRATA-qualified teams. Book a free survey with GLRE Manchester.

atrium glazing

Table Of Contents

The most common faults in commercial atrium glazing are water ingress through failed seals or blocked drainage, cracked or broken glass panels, deteriorating silicone joints, and structural movement causing frame distortion. Atrium glazing repair is a specialist activity because the overhead and steeply-raked nature of most atrium structures makes safe access difficult, and because identifying the true root cause of a leak or fault requires a methodical inspection approach rather than a surface-level assessment. GLRE Manchester has carried out atrium glazing repairs on some of the UK’s largest and most complex commercial glazing structures, including shopping centres, NHS facilities and corporate headquarters.

What Is Atrium Glazing?

An atrium is an internal or partially internal space within a building that is covered or enclosed by a glazed structure, typically overhead or at a steep angle. Atrium glazing systems use specialist glass and framing components designed to handle the loads, thermal movement and drainage demands placed on roof-level and overhead glazing.

Common atrium glazing systems in UK commercial buildings include:

  • Patent glazing using aluminium or steel glazing bars with glass panels seated in rebated channels
  • Structural silicone glazing (SSG) where glass is bonded to the supporting frame using structural silicone sealant, with no external mechanical fixings on the face
  • Point-fixed or bolt-fixed glazing where glass panels are suspended or supported at discrete fixing points, often on frameless or minimal-frame systems
  • Capped curtain wall systems adapted for overhead or sloped use with pressure plates and cappings retaining the glass

Each system has its own characteristic failure modes, which is why a thorough inspection by an experienced glazing specialist is an essential first step before any repair work is specified.

What Are the Most Common Faults in Atrium Glazing?

Atrium glazing faults tend to fall into a small number of categories. Understanding what causes each fault helps building managers identify problems early and prioritise repair work appropriately.

Water Ingress and Leaking Atrium Glazing

Leaks are the most frequently reported problem with atrium glazing and also the most commonly misdiagnosed. A leak presenting at a particular point inside a building will not always originate at the point directly above. Water can travel considerable distances along glazing bars, channels or structural elements before finding a path inward.

Common causes of atrium glazing leaks include:

  • Failed or degraded silicone or mastic sealant joints between glass panels and frames
  • Blocked or collapsed drainage channels within the glazing bar system
  • Damaged or missing flashings at the junction between the glazing system and the main building structure
  • Cracked or broken glass panels allowing direct water entry
  • Failed cappings or pressure plates that no longer hold glass panels securely in the rebate
  • Corrosion of aluminium or steel framing causing deformation of drainage paths

A surface repair to the most visible sealant without investigating drainage and flashing conditions will frequently fail to resolve the leak. GLRE identifies and addresses all contributory causes before carrying out any repair work, and backs completed leak repairs with an insurance-backed warranty.

Cracked or Broken Atrium Glass Panels

Glass panels in atrium structures can crack or break as a result of impact damage, thermal stress, frame movement, or manufacturing defects. Because atrium glazing is typically overhead or steeply raked, a cracked panel represents a safety risk as well as a weather protection issue.

Depending on the specification of the glass and the type of breakage, a cracked panel may remain in place for a period without immediate risk of collapse, but it should be assessed promptly. Laminated glass, commonly used in overhead applications for safety reasons, is designed to remain in position after breakage due to the interlayer bonding the fragments together.

Replacement of broken atrium glass panels requires careful removal of the damaged panel while suspended at height, followed by procurement and installation of a replacement to the correct specification. High-level glass replacement via rope access is the standard approach for overhead atrium work where access platforms are impractical.

Failed Silicone Sealant Joints

The silicone sealant joints in an atrium glazing system serve both a weatherproofing and, in structural silicone systems, a structural function. Over time, silicone degrades through UV exposure, thermal cycling and physical movement, eventually losing its adhesion and flexibility.

Signs of silicone joint failure include visible cracking or splitting along joint lines, separation of the sealant from the glass or frame substrate, discolouration, and in some cases visible mould growth within deteriorating joint material. 

Repair involves removing the failed sealant material in full, preparing the substrate surfaces, and applying new sealant to the correct specification and thickness. For structural silicone systems this work must be carried out by a contractor with the appropriate experience, as incorrect joint geometry or sealant specification can compromise the structural integrity of the glazing.

Condensation and Misting in Double-Glazed Atrium Units

Where atrium glazing uses double-glazed sealed units rather than single glass, hermetic seal failure causes condensation to form between the panes. This presents as persistent misting or fogging that cannot be removed by cleaning. A failed double-glazed unit will not recover and must be replaced.

For atrium applications, replacement units typically need to be manufactured to a bespoke specification matching the original glass dimensions, solar control coating, and safety classification. Standard replacement units produced for vertical glazing applications may not meet the requirements of an overhead or steeply-raked installation.

Structural Frame Movement and Glazing Bar Distortion

Commercial buildings move over time due to settlement, thermal expansion and contraction, and in some cases changes to the loading of the structure. This movement can distort glazing frames and bars, causing glass panels to bear unevenly on their supports, drainage channels to fall out of level, and sealant joints to open up or compress beyond their design range.

Where frame distortion is identified, a repair programme needs to address the glazing and the frame condition together. In some cases, this will require liaison with a structural engineer before glazing repairs can be finalised.

How Is Atrium Glazing Repair Carried Out?

The repair process for atrium glazing follows a structured sequence designed to identify all faults accurately before any remedial work is specified. This approach is what allows GLRE to offer insurance-backed warranties on leak repair projects rather than surface-level fixes that may recur.

Step 1: Inspection and Root Cause Investigation

A thorough inspection is carried out by an IRATA Level 3 supervisor from rope access, allowing every area of the atrium structure to be examined directly rather than from ground level or an adjacent platform. The inspection covers glass panels, sealant joints, drainage channels, flashings, cappings, fixings and frame condition throughout the structure.

Where leaks are present, the inspection traces all possible water entry and travel paths rather than simply identifying the most visible wet area. A written inspection report is produced, documenting all faults found and their likely causes.

Step 2: Specification of Repair Works

Based on the inspection findings, a schedule of repair works is produced. This sets out exactly what work is required, in what sequence, and to what specification. Where glass replacement is needed, the specification includes the glass type, thickness, safety classification and any coating requirements.

Step 3: Risk Assessment and Safe Working Plan

All atrium glazing repair work requires a detailed risk assessment and method statement before work begins. Given the overhead working environment and the proximity to occupied building areas, the safe working plan will address how the work area below the atrium is managed, what protection is provided against debris or falling materials, and how access is controlled during the works.

Step 4: Repair Works via Rope Access

Repair works are carried out by IRATA-qualified rope access technicians working under the continuous supervision of a Level 3 supervisor. The specific works depend on the fault types identified, but typically include sealant removal and replacement, drainage clearance, flashing repair or replacement, glass panel removal and installation, and frame cleaning and treatment.

Step 5: Post-Repair Testing and Sign-Off

Where leak repairs have been carried out, a water test is conducted to verify that the identified ingress points have been resolved. The Level 3 supervisor signs off all completed works and the full project documentation is retained and provided to the client.

Atrium Glazing Faults and Their Repairs: A Summary

Fault TypeLikely CauseRepair Approach
Water ingress / leakFailed sealant, blocked drainage, damaged flashingsFull root cause investigation, targeted repair of all contributory factors
Cracked or broken glassImpact damage, thermal stress, frame movementPanel removal and replacement via rope access to original or upgraded specification
Failed silicone jointsUV degradation, thermal cycling, ageFull removal of failed sealant and replacement to correct specification
Misted double-glazed unitsHermetic seal failureReplacement of affected units to matching specification
Frame distortionStructural movement, corrosion, settlementFrame assessment, remedial frame works, re-glazing as required
Blocked drainage channelsDebris accumulation, collapsed componentsClearance, flush testing, repair or replacement of drainage components

When Should Atrium Glazing Be Inspected?

Atrium glazing should be inspected on a planned basis rather than only in response to visible problems. Overhead and steeply-raked glazing is more exposed to weathering and loading than vertical glazing and tends to develop faults that are not visible from ground level until they have progressed significantly.

Circumstances that should prompt an inspection include:

  • Any report of water ingress from within the building, however minor
  • Visible cracking, discolouration or distortion in any glass panel or joint
  • Following any significant weather event such as high winds or heavy snow loading
  • As part of a building dilapidations assessment or lease event
  • If a maintenance inspection has not been carried out within the previous two years

An inspection by rope access gives a direct, close-range view of every component of the structure that cannot be replicated from ground level or from a cherry picker positioned at building perimeter. Early identification of deteriorating sealant or blocked drainage allows repair work to be carried out before a leak develops, which is significantly less disruptive and less costly than responding to an active ingress problem.

Can Atrium Glazing Repairs Be Carried Out in an Occupied Building?

Yes, in most cases. One of the practical advantages of rope access over scaffolding or access platforms for atrium repair work is that the ground-level footprint of the operation is limited to the area directly below the work zone, which can be cordoned off and managed while the rest of the building continues to operate.

For shopping centres, hospitals, offices and other continuously occupied commercial buildings, the ability to complete repair work without closing the building or large sections of it is a significant operational consideration. Our project managers work with facilities teams to schedule works to minimise disruption, including out-of-hours working where required.

GLRE has experience delivering atrium repair projects across a range of occupied building types, including NHS facilities, shopping centres and corporate campuses. Our completed projects are available to review on our projects page.


If your atrium glazing has developed a fault or has not been inspected recently, our team can arrange a no-obligation site survey. Contact GLRE Manchester to discuss your requirements.

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