詳細検索

詳細検索

お問い合わせ

Australia Green Data Center Market  Size, Share, Trends, Growth Forecast, and Competitive Analysis (20252030)

Australia Green Data Center Market Size, Share, Trends, Growth Forecast, and Competitive Analysis (20252030)


The Australia Green Data Center Market is segmented by Component (Solutions, Services), by Type (Hyperscale, Colocation, Enterprise, Edge), by Tier (Tier I, Tier II, Tier III, Tier IV), by Data Cen... もっと見る

 

 

出版社
IHR Insights
アイエイチアールインサイト
出版年月
2026年2月10日
電子版価格
US$3,000
シングルユーザライセンス
ライセンス・価格情報/注文方法はこちら
納期
5営業日以内
ページ数
167
言語
英語

日本語のページは自動翻訳を利用し作成しています。
実際のレポートは英文のみでご納品いたします。


 

Summary

The Australia Green Data Center Market is segmented by Component (Solutions, Services), by Type (Hyperscale, Colocation, Enterprise, Edge), by Tier (Tier I, Tier II, Tier III, Tier IV), by Data Center Size (Small <5 MW, Medium 5–20 MW, Large 20–100 MW, Mega/Hyperscale >100 MW), by Energy Source (Solar, Wind, Hydroelectric, Nuclear, Hybrid Renewable, On-Site Generation vs Grid Renewable PPAs), by Deployment Model (Greenfield, Brownfield Retrofit, Prefabricated Modular, Containerized), by End User, and by Geography (Australia). Report Overview The Australia green data center market is entering a phase of accelerated, structurally driven expansion, supported by rising cloud and AI workloads, tightening sustainability requirements, and increasing investment in energy-efficient digital infrastructure. In 2024, the market is valued at USD 0.85 billion and is projected to grow to USD 5.20 billion by 2030, registering a robust ~34.7% CAGR over the forecast period. Market growth is hyperscale-led, with colocation playing a strong complementary role as enterprises and digital platforms continue to outsource infrastructure to high-availability, energy-optimized facilities. Structural shifts toward Tier III and Tier IV architectures, combined with consolidation into large and mega-scale campuses, are reshaping Australia’s data center landscape. Energy sourcing strategies are evolving rapidly. Solar, wind, hybrid renewable systems, and emerging nuclear integration gain share at materially faster rates than conventional grid-linked renewable PPAs, reflecting a transition from compliance-driven renewable adoption to strategy-driven energy planning. The dominance of greenfield construction and prefabricated modular deployments highlights operator preference for scalable, standardized, and ESG-transparent infrastructure capable of supporting high-density AI and cloud workloads across major Australian metros. ________________________________________ Market Drivers Strong demand for energy-efficient digital infrastructure in a high-cost power environment Australia’s green data center market expands from USD 0.85 billion (2024) to USD 5.20 billion (2030) at a ~34.7% CAGR, reflecting the need to manage power costs and energy efficiency as digital workloads scale. Operators increasingly prioritize green designs to achieve lower PUE, higher rack density, and long-term energy cost stability, particularly in energy-intensive hyperscale campuses. Hyperscale and colocation investments driven by cloud, AI, and digital platforms Investment momentum is concentrated in hyperscale data centers (~38.8% CAGR) and colocation facilities (~34.7% CAGR). By 2030, hyperscale alone accounts for ~47% of total market value, up from ~40% in 2025, driven by global cloud providers, SaaS platforms, and AI training workloads. In contrast, enterprise data centers grow more slowly (~27.5% CAGR), underscoring a clear migration away from on-premise infrastructure. Structural migration toward higher-tier, high-availability facilities Australia exhibits a pronounced tier migration, with Tier III (~34.3% CAGR) and Tier IV (~40.3% CAGR) facilities capturing the majority of new capacity additions. Tier IV data centers increase their share from ~33% in 2025 to ~38.5% by 2030, reflecting heightened demand for uptime, redundancy, and ESG-aligned infrastructure from BFSI, government, and mission-critical digital services. Consolidation into large and mega-scale facilities to unlock efficiency at scale Capacity expansion is increasingly concentrated in large (20–100 MW) and mega/hyperscale (>100 MW) facilities. Mega-scale data centers grow at ~42.1% CAGR, expanding their share from ~35.7% in 2025 to ~46.3% by 2030. This consolidation enables more efficient cooling architectures, deeper renewable integration, and improved cost economics versus smaller facilities. Accelerating adoption of diversified low-carbon energy strategies Energy sourcing trends highlight rapid growth in solar (~37.7% CAGR), wind (~35.5%), hybrid renewable systems (~35.2%), and emerging nuclear (~47.1%) integration. Nuclear, while starting from a small base, grows the fastest, reflecting demand for stable baseload power to support AI-intensive workloads. In contrast, grid-linked renewable PPAs (~29.1% CAGR) lose relative share, indicating a shift toward direct and hybrid energy strategies. Preference for greenfield and modular deployment models New capacity additions are dominated by greenfield construction (~35.5% CAGR) and prefabricated modular deployments (~39.3%), which together account for ~86% of total market value by 2030. Modular builds gain share due to faster deployment timelines, scalability, and alignment with hyperscale expansion strategies, while brownfield retrofits lag at ~25.7% CAGR. Challenges High capital intensity of advanced, high-availability infrastructure Australia’s market growth is increasingly concentrated in Tier III and Tier IV facilities, which together account for ~86% of total market value by 2030. Tier IV alone grows at ~40.3% CAGR, materially faster than Tier I (~25.1%) and Tier II (~29.2%). This structural tilt toward fault-tolerant infrastructure raises capex due to redundant power paths, advanced cooling, and stricter uptime SLAs. Parallel growth in mega/hyperscale facilities (>100 MW at ~42.1% CAGR) further increases upfront capital requirements despite superior long-term efficiency. Renewable energy availability and grid constraints Although low-carbon energy adoption is accelerating, renewable availability and grid readiness vary by region. While solar, wind, and hybrid renewables grow faster than the overall market, grid-linked renewable PPAs expand more slowly (~29.1% CAGR), constraining scalability in certain locations. This dynamic increases reliance on hybrid sourcing and emerging nuclear baseload solutions. Limited economic viability of brownfield retrofits Brownfield retrofits grow at only ~25.7% CAGR, materially lagging greenfield and modular builds. The higher per-MW upgrade cost, operational disruption, and difficulty of meeting modern Tier III/IV and energy-efficiency standards reduce retrofit attractiveness, accelerating obsolescence risk for legacy enterprise facilities. Operational complexity from hyperscale growth and service-heavy models As hyperscale campuses expand and services grow faster (~46.5% CAGR) than solutions (~27.5% CAGR), operational complexity increases. Managing high-density AI workloads, multi-source energy inputs, and ESG reporting requirements demands advanced monitoring, DCIM, and skilled operational teams, raising operating costs and execution risk. ________________________________________ What This Report Covers ● A comprehensive assessment of Australia’s green data center ecosystem, detailing how energy costs, AI-driven demand, and infrastructure modernization are reshaping the market. ● A country-specific growth narrative explaining how hyperscale, colocation, and high-availability investments reinforce Australia’s role within the broader Asia-Pacific data center landscape. ● Detailed analysis of structural shifts from enterprise-centric infrastructure toward hyperscale- and colocation-led architectures, supported by edge deployments. ● In-depth evaluation of sustainability pathways, focusing on the evolving role of solar, wind, hybrid renewables, and nuclear energy alongside deployment model transitions. ● A future-oriented segmentation framework identifying where demand is accelerating, stabilizing, or structurally shifting across tiers, sizes, energy sources, and deployment models. Key Highlights ● Australia’s green data center market expands from USD 0.85 billion (2024) to USD 5.20 billion (2030) at a ~34.7% CAGR, positioning it among the fastest-growing markets in APAC, driven by hyperscale cloud expansion, AI workload growth, and rising sustainability mandates. ● Hyperscale and colocation dominate incremental capacity additions, with hyperscale alone reaching ~47% market share by 2030, supported by strong demand from cloud service providers, SaaS platforms, and AI-driven digital ecosystems, while enterprise data centers continue to lose relative share. ● Tier III and Tier IV facilities capture the majority of new investments, with Tier IV growing at ~40% CAGR, reflecting heightened requirements from BFSI, government, and mission-critical digital services for uptime, redundancy, and ESG-aligned infrastructure. ● Capacity increasingly consolidates into large and mega-scale campuses, as mega/hyperscale facilities (>100 MW) grow at ~42% CAGR, materially outpacing small data centers and enabling scale-driven efficiency, higher rack densities, and centralized renewable energy integration. ● End-user demand is increasingly skewed toward cloud, AI, and digital platforms, which expand materially faster than traditional enterprise and government workloads, reinforcing Australia’s role as a regional hub for data-intensive applications, while BFSI remains a stable anchor for high-availability and compliance-driven demand. ● Energy sourcing strategies are rapidly evolving, with solar (~38% CAGR), wind (~35%), hybrid renewables (~35%), and emerging nuclear (~47%) gaining share faster than grid-linked renewable PPAs (~29%), signaling a clear shift from compliance-led renewable adoption toward long-term, strategy-driven sustainability and baseload energy planning.

ページTOPに戻る


Table of Contents

Table of Contents1. Introduction 1.1 Key Takeaways 1.2 Report Description 1.3 Markets Covered 1.4 Stakeholders 2. Research Methodology 2.1 Research Scope 2.2 Research Methodology 2.3 Market Research Process 2.4 Research Methodology 2.4.1 Secondary Research 2.4.2 Primary Research 2.5 Models for Estimation 2.6 Market Size Estimation 2.6.1 Bottom-Up Approach 2.6.2 Top-Down Approach 3. Executive Summary 4. Market Overview 4.1 Introduction 4.2 Market Drivers 4.3 Restraints & Challenges 4.4 Market Opportunities 4.5 Technology & Innovation Analysis 5. Green Data Center Market, By Component 5.1 Solutions 5.1.1 Power & Electrical Systems 5.1.2 Thermal Management Infrastructure 5.1.3 IT Hardware Infrastructure 5.1.4 Monitoring & Management Systems 5.1.5 Physical Infrastructure 5.2 Services 5.2.1 Design & Consulting Services 5.2.2 System Integration Services 5.2.3 Installation & Commissioning 5.2.4 Maintenance & Support Services 5.2.5 Training & Optimization Services 5.2.6 Sustainability Assessment & ESG Reporting 5.2.7 Energy-as-a-Service (EaaS) 6. Green Data Center Market, By Type 6.1 Hyperscale Data Centers 6.2 Colocation Data Centers 6.3 Enterprise Data Centers 6.4 Edge Micro Data Centers 7. Green Data Center Market, By Tier 7.1 Tier I Data Centers 7.2 Tier II Data Centers 7.3 Tier III Data Centers 7.4 Tier IV Data Centers 8. Green Data Center Market, By Data Center Size 8.1 Small Data Centers (<5 MW) 8.2 Medium Data Centers (5–20 MW) 8.3 Large Data Centers (20–100 MW) 8.4 Mega/Hyperscale Data Centers (>100 MW) 9. Green Data Center Market, By Energy Source 9.1 Solar Power Integration 9.2 Wind Power Integration 9.3 Hydroelectric Power 9.4 Nuclear Power (Emerging Trend) 9.5 Hybrid Renewable Systems 9.6 On-Site Generation vs Grid Renewable PPAs 10. Green Data Center Market, By Deployment Model 10.1 Greenfield Construction 10.2 Brownfield Retrofit/Modernization 10.3 Prefabricated Modular Deployment 10.4 Containerized Data Centers 11. Green Data Center Market, By End User 11.1 IT & Telecommunications 11.2 Banking, Financial Services & Insurance (BFSI) 11.3 Government & Public Sector 11.4 Healthcare 11.5 Retail & E-Commerce 11.6 Manufacturing & Automotive 11.7 Energy & Utilities 11.8 Media & Entertainment 11.9 Other Industries 12. Green Data Center Market, By Geography 12.1 Key Points 12.2 Australia 12.2.1 Sydney Metropolitan Region (Sydney–Western Sydney) 12.2.2 Melbourne Metropolitan Region 12.2.3 Brisbane & Southeast Queensland 12.2.4 Perth & Western Australia 12.2.5 Canberra & Government Data Hub 12.2.6 Other Emerging Regional Clusters 13. Competitive Landscape 13.1 Introduction 13.2 Recent Developments 13.3 Mergers & Acquisitions 13.4 New Product Developments 13.5 Portfolio / Capacity Expansions 13.6 Joint Ventures, Collaborations & Partnerships 13.7 Others 14. Company Profile 14.1 NEXTDC 14.1.1 Company Overview 14.1.2 Product/Service Landscape 14.1.3 Financial Overview 14.1.4 Recent Developments 14.2 AirTrunk 14.2.1 Company Overview 14.2.2 Product/Service Landscape 14.2.3 Financial Overview 14.2.4 Recent Developments 14.3 CDC Data Centres 14.3.1 Company Overview 14.3.2 Product/Service Landscape 14.3.3 Financial Overview 14.3.4 Recent Developments 14.4 Macquarie Data Centres 14.4.1 Company Overview 14.4.2 Product/Service Landscape 14.4.3 Financial Overview 14.4.4 Recent Developments 14.5 Equinix 14.5.1 Company Overview 14.5.2 Product/Service Landscape 14.5.3 Financial Overview 14.5.4 Recent Developments 14.6 Digital Realty 14.6.1 Company Overview 14.6.2 Product/Service Landscape 14.6.3 Financial Overview 14.6.4 Recent Developments 14.7 NTT Global Data Centers 14.7.1 Company Overview 14.7.2 Product/Service Landscape 14.7.3 Financial Overview 14.7.4 Recent Developments 14.8 Amazon Web Services (Australia Operations) 14.8.1 Company Overview 14.8.2 Product / Service Landscape 14.8.3 Financial Overview 14.8.4 Recent Developments 14.9 Microsoft Azure (Australia Operations) 14.9.1 Company Overview 14.9.2 Product / Service Landscape 14.9.3 Financial Overview 14.9.4 Recent Developments 14.10 Google Cloud (Australia Operations) 14.10.1 Company Overview 14.10.2 Product / Service Landscape 14.10.3 Financial Overview 14.10.4 Recent Developments 15. Appendix 15.1 Glossary of Terms 15.2 Abbreviations 15.3 Additional Data Tables

 

ページTOPに戻る

ご注文は、お電話またはWEBから承ります。お見積もりの作成もお気軽にご相談ください。

webからのご注文・お問合せはこちらのフォームから承ります


よくあるご質問


IHR Insights社はどのような調査会社ですか?


IHR InsightsはICT、化学品、ヘルスケア、半導体など、世界の幅広い分野を対象に調査し、専門的な知識を基に市場調査報告書を出版しています。 主な調査分野 ◇ICT ◇化学品、材料、... もっと見る


調査レポートの納品までの日数はどの程度ですか?


在庫のあるものは速納となりますが、平均的には 3-4日と見て下さい。
但し、一部の調査レポートでは、発注を受けた段階で内容更新をして納品をする場合もあります。
発注をする前のお問合せをお願いします。


注文の手続きはどのようになっていますか?


1)お客様からの御問い合わせをいただきます。
2)見積書やサンプルの提示をいたします。
3)お客様指定、もしくは弊社の発注書をメール添付にて発送してください。
4)データリソース社からレポート発行元の調査会社へ納品手配します。
5) 調査会社からお客様へ納品されます。最近は、pdfにてのメール納品が大半です。


お支払方法の方法はどのようになっていますか?


納品と同時にデータリソース社よりお客様へ請求書(必要に応じて納品書も)を発送いたします。
お客様よりデータリソース社へ(通常は円払い)の御振り込みをお願いします。
請求書は、納品日の日付で発行しますので、翌月最終営業日までの当社指定口座への振込みをお願いします。振込み手数料は御社負担にてお願いします。
お客様の御支払い条件が60日以上の場合は御相談ください。
尚、初めてのお取引先や個人の場合、前払いをお願いすることもあります。ご了承のほど、お願いします。


データリソース社はどのような会社ですか?


当社は、世界各国の主要調査会社・レポート出版社と提携し、世界各国の市場調査レポートや技術動向レポートなどを日本国内の企業・公官庁及び教育研究機関に提供しております。
世界各国の「市場・技術・法規制などの」実情を調査・収集される時には、データリソース社にご相談ください。
お客様の御要望にあったデータや情報を抽出する為のレポート紹介や調査のアドバイスも致します。


詳細検索

このレポートへのお問合せ

03-3582-2531

電話お問合せもお気軽に

 

 

2026/09/25 10:26

159.78 円

182.06 円

213.80 円

ページTOPに戻る