SINGAPORE -
Media OutReach Newswire
- 12 August 2026 - Artificial intelligence is driving one of the
largest infrastructure investment cycles in decades, but the rapid
global build-out of data centers is also creating a new era of
construction, operational, climate and insurance risks, according to the
latest
Allianz Commercial The data center construction boom: risks and claims trends report. Annual investment in data centers is projected to double from around US$500bn in 2024 to more than US$1trn as early as
2027.
The investment opportunity extends far beyond server halls to
electricity generation, grid infrastructure, cooling, networking, and
semiconductors. According to
Allianz Research,
the US and China are expected to account for around 62% of new global
capacity additions through 2030, but the next wave of investment is
becoming increasingly global. In Europe, Germany, the UK and Ireland
remain major markets, but faster expansion is expected in Spain, Finland
and Denmark, where power availability and permitting conditions can be
more favorable. Across Asia Pacific, excluding China, installed capacity
is projected to increase from around 9GW today to more than 28GW by
2030, with Malaysia expected to grow more than tenfold.
"
AI is turning the latest generation of data centers from a specialist real estate asset into mission-critical infrastructure," says
Thomas Lillelund, CEO of Allianz Commercial. "
The scale of investment is extraordinary and, as these centers evolve beyond traditional data storage to high-performance compute demands, success
will increasingly depend on resilience: access to power, reliable
supply chains, robust construction controls, as well as climate-aware
site selection and insurance programs that reflect the true accumulation
risk.
Indeed, comprehensive insurance cover has become a prerequisite for financing many large-scale AI infrastructure projects."
Resilience must be central to data center operations
The sector's biggest constraints are increasingly physical rather than
financial. Competitive advantage is increasingly determined by access
to electricity, grid connections, permitting, specialized equipment and
skilled labor. In the US alone, the construction industry faces a
shortage of around
439,000 skilled workers, while an estimated 349,000 additional workers may be needed in
2026.
Climate resilience is increasingly a strategic consideration rather
than an operational afterthought. Around 79% of global data center
capacity is already located in areas exposed to heightened natural
catastrophe risk, while 54% is exposed to chronic heat and drought
stress.
Some of the fastest-growing AI infrastructure markets are also among
the most climate-exposed, including Northern Virginia, US, Johor in
Malaysia, and Marseille, France. Acute flood, wildfire and wind exposure
is highest in the Americas, affecting 86% of capacity, while chronic
heat and drought stress is greatest in Asia Pacific, where 89% of
capacity is exposed.
Global data center insurance market will more than double by 2030
Insurance is evolving alongside the sector. As data centers assume a
more critical role in infrastructure, comprehensive insurance cover has
become a prerequisite for financing many large-scale AI infrastructure
projects. Construction costs for a single AI campus can exceed US$20bn,
with insured values rising substantially once high-performance computing
equipment is installed. The global data center insurance market is
projected to grow from around
US$11bn
today to more than US$24bn by 2030, reflecting rapid capacity
expansion, rising insured values and increasing operational complexity.
Demand is expected to extend beyond traditional property cover towards
integrated solutions spanning construction, engineering, property,
business interruption, cyber and liability, while also creating new
opportunities in areas such as energy resilience, operational
continuity, and technology risk.
Risk and claims trends: fire drives severity; water damage frequency
Allianz Commercial analysis of insurance industry data
center-related claims shows that fire is the leading driver of loss
severity, accounting for well over 50% of around €700mn (US$800mn) worth
of losses. Natural catastrophe activity ranks second, followed by
willful acts, which include crime and cyber incidents, followed by power
failure. Water damage is the most frequent cause of data center claims,
followed by willful acts, fire, and equipment breakdown. Business
interruption is the primary driver of claims severity by line of
insurance, highlighting the significant financial impact of operational
downtime.
The data center risk profile is changing as facilities become larger,
more complex, and more increasingly interdependent. Hyperscale and
colocation of campuses can bring together multiple tenants, construction
works, servers, supporting utilities and on-site infrastructure in one
physical or operational space. A single event can therefore trigger
claims across property, construction, business interruption, liability,
cyber, and financial lines. Real-life claims case studies show that in
hyperscale facilities, damage to external cooling systems, hot
works-related fire damage, and a delay in start-up caused by power
disturbances have each resulted in losses in the US$50mn to US$100mn
range.
"
For insurers, the key question is not only the value of the
building, but the concentration of value and dependency inside and
around it. Power, cooling, batteries, fiber routes, testing and
commissioning, and business continuity planning are all part of the same
risk picture. Effective risk mitigation must begin early and continue
throughout the data center lifecycle. Resilience must be designed in
from the earliest planning stage," explains
Christian Kolbe, Global Head of Construction Claims at Allianz Commercial.
Clarity between policies essential to avoid ambiguity
Data center projects encompass different project phases with several
stakeholders and interests involved, which can create complications.
During the construction phase, stakeholders include the owner,
developer, contractor, and subcontractors, whereas in the operational
phase, the stakeholders include the owner-operator, and potentially
multiple tenants or end users. For example, different policies could
respond to a hot works-related fire resulting in damage to a data center
nearing completion, and this would impact different stakeholders.
"Clarity is critical with an insurance claim," says
Charlotte Field, Regional Head of Short-tail Claims, Asia, at Allianz Commercial.
"Clearly documented handovers are essential between your
construction all-risk policy and operational policy. There must be no
ambiguity about practical completion, in order to avoid disputes over
which policy responds to a particular event and the extent of cover."