Can Light Gauge Steel Frame MMC Homes act as a catalyst for the UK to reach Net-Zero?
Notice bibliographique
Résumé
The United Kingdom faces a dual challenge: an acute housing shortage and a legally binding commitment to achieve net-zero greenhouse gas emissions by 2050. Despite technological advancements, traditional construction appears to be lacking on both fronts. This thesis investigates whether Modern Methods of Construction (MMC), specifically Light Gauge Steel Frame (LGSF) modular housing, can serve as a catalyst in addressing the nation’s housing demand and its climate change targets. The research adopts a performance-based case-study methodology centred on a newly constructed all-electric LGSF modular home in Wirral, UK. Using dynamic simulation and life cycle assessments, it evaluates the Whole Life carbon (WLC) footprint and climate resilience of LGSF MMC homes under current and future UK weather conditions. Energy performance was assessed using IESVE software and validated with 12 months of empirical data, revealing an Energy Use Intensity (EUI) of 35.8 kWh/m²/year, well below the current UK averages and Part L 2021 and RIBA 2025 residential targets. Optimisation strategies, including a fabric-first approach, airtightness improvements, and photovoltaics (PV), enabled the case study to achieve net-zero operational carbon (-0.19 kg CO₂e/m²), surpassing LETI 2030 targets. Thermal-comfort simulations using current and future DSY weather files indicate compliance today until mid-century with orientation-sensitive passive measures; under late-century extremes, limited active cooling is required. These findings suggest that LGSF MMC can deliver reliable, low-carbon housing aligned with long-term policy goals. The Wirral case study is modelled in 11 UK cities to assess climate resilience, each representing the country’s distinct regional climate zones and reflecting areas experiencing major housing crises. Simulations using UKCP18 climate projections show energy reductions ranging from 98% in the south to 16% in the north. The results highlight the suitability of LGSF MMC for scalable deployment across all regions in the UK with geo-responsive design interventions. WLC is evaluated using One Click LCA software. For the base case, WLC is 399 kg CO₂e/m² (310 kg CO₂e/m² after crediting Module D) – well below the UK Green Building Council and LETI’s (2021) maximum recommendation of 500 kg CO₂e/m². Following the optimised scenario, WLC is reduced to 320 kg CO₂e/m² (210 kg CO₂e/m² after crediting Module D), confirming LGSF’s capacity to meet tightening carbon benchmarks. Up-front materials (from stages A1–A3) dominate WLC emissions. Steel members, ready-mix concrete, PIR insulation and short-lived HVAC equipment emerge as key hotspots, reinforcing that net-zero operation must be coupled with low-carbon procurement and design-for-deconstruction. Trade-off analysis across five midpoint impact categories further confirms LGSF’s favourable environmental impact. The research also considers LGSF MMC within the broader UK housing context, demonstrating its potential to accelerate housing delivery while mitigating carbon emissions. While LGSF remains underutilised in the UK, compared to Canada or Australia, its compatibility with rapid off-site manufacturing, reduced site disruption, and improved quality assurance suggests it is well-positioned to meet the government’s target of 380,000 homes per year (including 163,000 affordable units) while conforming to net-zero goals. Collectively, the results show that LGSF modular homes can be delivered rapidly, achieve stringent energy and carbon goals, and be adapted across the UK’s diverse climates - provided envelope performance, renewable integration and circular-material flows are woven into the design brief. The thesis contributes an evidence-based, replicable evaluation that can guide designers, manufacturers, housing associations and policymakers as they strive to align affordable-housing delivery with the net-zero trajectory - building more, better homes for a carbon-constrained future.
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Prédiction distillée sur la base complète
Imitation des enseignantsNi prévalence calibrée, ni vérité terrain. Validation humaine à venir. Apprise à partir de 10 348 étiquettes directes de Codex et de 10 348 étiquettes directes de Gemma. Le mode candidate est l'union des têtes enseignantes seuillées; le consensus est leur intersection. Ces sorties portent le statut machine_predicted_unvalidated et ne sont ni des étiquettes humaines ni des étiquettes directes de modèles de pointe.
Scores Codex et Gemma par catégorie
| Catégorie | Codex | Gemma |
|---|---|---|
| Métarecherche | 0,000 | 0,000 |
| Méta-épidémiologie (sens strict) | 0,000 | 0,000 |
| Méta-épidémiologie (sens large) | 0,000 | 0,000 |
| Bibliométrie | 0,000 | 0,001 |
| Études des sciences et des technologies | 0,000 | 0,000 |
| Communication savante | 0,000 | 0,000 |
| Science ouverte | 0,001 | 0,000 |
| Intégrité de la recherche | 0,000 | 0,000 |
| Charge utile insuffisante (le modèle a refusé de juger) | 0,001 | 0,000 |
Scores machine (provisoires)
Les deux têtes enseignantes du modèle étudiant, lues sur ce travail. Un score ordonne la base pour la relecture; il n'affirme jamais une catégorie, et le statut de validation accompagne chaque rangée tel quel.
Scores de référence d'un modèle non mature (critères de maturité non atteints, 7 itérations). Un score ordonne; il n'affirme jamais une catégorie.
score_only:v0-immature-baseline · tel quel depuis la passe de notation : score_only signifie que le nombre peut ordonner les travaux, et qu'aucune étiquette de catégorie n'en découleClassification
machine, non validéePrédiction automatique; un appel candidat d’une seule tête enseignante, pas un consensus.
Le détail, modèle par modèle et score par score, se trouve en fin de page sous « Comment cette classification a été obtenue ».