A decision matrix for the three most specified opening styles
Request a Quote →When a project moves from concept to window schedule, the first decision is not glass, hardware, or finish — it is the opening style. Casement, sliding, and double-hung windows all do the same basic job, but they diverge sharply on ventilation, sealing, cleaning, egress, cost, and architectural character. Choose the wrong style and no amount of premium glazing will fix the result; choose well and the window quietly serves the building for decades.
This guide compares the three most specified aluminum glass windows exported from China — casement, sliding, and double-hung — with an honest decision matrix at the end. If you are procuring for a housing development, a hotel, or a commercial fit-out, this is the framework to hand your window supplier before the first quote.
"We designed a coastal apartment building with double-hung windows for the traditional street elevation. After two wind-driven rain events, the developer asked us to switch to casements for the west facade. Same glass, same profiles — but the compression seal stopped the leaks the double-hung units could not." — Facade consultant, Sydney
| Criteria | Casement | Sliding | Double-Hung |
|---|---|---|---|
| Ventilation area (open) | Up to 100% of opening | Up to 50% of opening | Up to 50% (both sashes) |
| Airflow control | Fine (stay + friction hinge) | Coarse (full slide only) | Good (top/bottom split) |
| Draft direction | Side deflection possible | Horizontal, low level | Vertical convection (ideal) |
| Best climate fit | Windy & wet regions | Mild, sheltered sites | Temperate, low-rise |
Ventilation physics explains most style choices. A fully open casement captures side wind and can be steered; a double-hung window creates gentle vertical convection — warm air exits at the top while cooler air enters at the bottom — which is why it suits bedrooms and temperate climates. A sliding window opens only half its width and directs airflow horizontally at low level, which is fine for mild sites but weak for stack-effect ventilation in multi-storey buildings.
Sealing is where the styles diverge most sharply, and it is a direct consequence of the opening mechanism:
| Practical Factor | Casement | Sliding | Double-Hung |
|---|---|---|---|
| Interior glass cleaning | Outer pane hard (high floors) | One half cleanable from inside | Both sashes tilt inward — best |
| Egress (fire escape) | Good when fully open | Excellent — full half-width | Poor — sill height blocks |
| Sash in front of sinks/counters | Swing obstructs | Ideal — no swing | Ideal — vertical travel |
| Cost (per m², comparable spec) | Highest | Lowest | Mid |
| Project Condition | Recommended Style | Why |
|---|---|---|
| Coastal, high wind, or high-rise | Casement | Compression seal and multi-point locking resist wind-driven rain |
| Budget-driven, sheltered site | Sliding | Lowest cost, simplest operation, good egress |
| Traditional / heritage street facade | Double-hung | Vertical proportion and classic character |
| Behind kitchen counters | Sliding or double-hung | No swing clearance needed |
| High-rise cleaning from inside | Double-hung (tilt) | Both sashes cleanable without exterior access |
| Passive-house / premium energy spec | Casement (or tilt & turn) | Highest airtightness achievable |
Aluminum changes two parts of this comparison versus timber or uPVC. First, aluminum frames carry slim sightlines, so casement and double-hung styles look cleaner at the same glass area — a real architectural benefit. Second, aluminum is strong but thermally conductive, so thermal break profiles (PA66-GF25) are mandatory for energy-efficient aluminum windows in cold climates, regardless of opening style. Specify the thermal break first; the opening style second.
For double-hung aluminum windows specifically, demand counterbalance systems with tested cycle life (30,000+ operations), and check the meeting-rail seal design — it is the double-hung window's equivalent of the sliding window's interlock, and the most common source of drafts.
| Style / Configuration | Glazing / Hardware | Indicative FOB (USD/m²) |
|---|---|---|
| Sliding, 2-track | 6+12A+6, standard hardware | $65-95 |
| Double-hung, single counterbalance | 6+12A+6, spiral balance | $95-135 |
| Casement, thermal break | Low-E double, multi-point lock | $115-160 |
| Double-hung, tilt-in premium | Low-E double, block & tackle balance | $140-190 |
Prices are indicative 2026 factory FOB ranges for project volumes (100+ m²), excluding freight and installation. Final quotation depends on size, glazing, finish, hardware brand, and certification documents. Contact Rogenilan Windows Doors for a style-matched quote.
Casement and sliding dominate. Casement is preferred for its sealing performance (particularly on coastal sites and for wind load compliance under AS2047), while sliding remains popular for its cost advantage on sheltered, budget-driven projects. Double-hung is a niche but growing choice for character homes and heritage streetscapes.
At equivalent size and glazing, double-hung is typically slightly less expensive than a casement with multi-point locking hardware, but more expensive than a simple sliding window. The counterbalance mechanism adds cost over sliding, while the hardware package is simpler than a premium casement lock set.
The glazing and thermal break determine U-value, so all three can reach similar thermal numbers. But airtightness — the other half of energy performance — favors casement (compression seal), then double-hung, then sliding. For the same U-value, a sliding window will still leak more air than a casement at the same pressure.
Casement with multi-point locking and laminated glass is the strongest choice for impact-resistant glazing systems. Double-hung and sliding windows can be impact-rated with the right glass and framing, but the compression-sealed casement delivers the highest structural and weather performance per dollar in cyclone-prone regions.
Casement, sliding, or double-hung — same project, three quotes · 2026 FOB pricing in 24 hours.
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