askTender See what you can win →
Home › Tenders › Services › From Local Shocks to Systemic Impacts: A Multi-haz
Open — accepting bids

From Local Shocks to Systemic Impacts: A Multi-hazard, Systems-based View of Physical Climate Risk

Department for Energy Security & Net Zero · United Kingdom
⏳ Closes 14 Oct 2026 — 12 days left
Buyer
Department for Energy Security & Net Zero
Location
United Kingdom
Category
Services
Type
—
Estimated value
£100,000
EMD / Bid security
—
Tender fee
—
Published
16 Sep 2026
Closing
14 Oct 2026
Reference
—

Can your company win this tender?

askTender reads every tender against your company profile — eligibility, gaps, and the documents you need — and can prepare the entire bid for you.

Check your fit — free →

Eligibility

Full eligibility criteria are in the tender document. Sign in to read this tender against your company profile.

About this tender

Please provide a detailed description of the notice you are adding: The final date and time for the submission of bids is Wednesday, 14th October 2026 at 11:00 DO NOT apply directly to the buyer. All tender information MUST be submitted through the Jaggaer eSourcing Portal. Brief Description of Requirement It is broadly recognised that physical climate risk and related nature dependencies can pose risks to economic and financial stability. Governments and regulators in the UK and internationally have recognised this and continue to take action to address underlying vulnerabilities and support wider systemic resilience. Notwithstanding the clear need for accelerated global action, there remains significant uncertainties in appraising the future economic and financial implications of physical risk meaning market practices, government policy and regulation, may not be optimised (within the bounds of wider limitations and mandates) to align with climate-resilient pathways. Climate scenario analysis is a key tool to inform approaches to climate risk management. But due to the complexity and heterogeneity of climate risk, academic and industry evidence has highlighted that current m