INVENTION 1
THERMAL ENERGY STORAGE SYSTEM

Subterranean thermal energy storage and power generation system
I am the inventor of a new electricity-generation technology designed with the objective of generating electricity at substantially lower cost. I have filed a UK patent application with the UK Intellectual Property Office, which is currently pending.
I have independently completed Phase 1 of the research and development (R&D) process for my patent-pending invention. This phase included concept development, iterative design and refinement, exploration of alternative technical methods, and preliminary global prior-art and patent research. This work represents my own inventor-led development and preliminary investigation; it is not intended to suggest that patentability has been officially or independently certified.
I am now seeking a strategic partnership to progress to Phase 2, focusing on prototype development, testing and technical validation. Phase 3 would focus on implementation, deployment and bringing the technology to the public through an appropriate commercialisation route.
My objective is to commercialise the technology through licensing or a strategic partnership with an appropriate energy, engineering or industrial company, potentially involving an upfront payment, milestone payments and/or royalties.
At present, I am not in a position to fund substantial professional or commercialisation fees in advance. Given your experience in IP banking and monetisation, I would therefore be interested to know whether you work with inventors on a deferred, success-based or transaction-linked fee arrangement, whereby agreed fees could be paid from the proceeds of a successful licensing, financing or partnership transaction.
If this is potentially within your model, I would be happy to arrange a Microsoft Teams meeting to provide a non-confidential overview of the technology, discuss the current R&D status and explore possible next steps.
Business – Cost & Net Profits
Generating Electricity By Low Cost
Executive & Commercial Summary:
Subterranean Thermal Power Technology
1. Facility Scales & Surface Footprints
Our technology uses a hybrid subterranean and surface architecture to minimize land usage while maximizing storage capacity:
- Pilot Scale (10 MW): 0.5 – 1.0 Acre surface footprint | 80 MWh / day
- Mid-Scale Regional (50 MW): 2.5 – 4.0 Acres surface footprint | 500 MWh / day
- Commercial Grid Scale (100 MW): 5.0 Acres surface footprint | 1,200 MWh / day (1.2 GWh/day)
2. Dual-Level Facility Architecture
- Subterranean Level: Integrates essential natural materials, proprietary thermal media, containment systems, and specialized subterranean machinery.
- Surface Level: Contains standard energy conversion hardware, grid connection equipment, and facility management infrastructure.
3. Cost & Financial Advantage
- Lower Setup CapEx: Capital expenditure to establish any station size is significantly lower than equivalent capacity fossil fuel or nuclear installations.
- Strong Profitability: Operating expenses and setup costs are recovered directly from ongoing station revenues, yielding a net profit margin of ~60%.

INVENTION 2
FFRS FLIGHT & FIRE RESCUE SUIT
The Flight & Fire Rescue Suit (FFRS), filed with the Norwegian Industrial Property Office under Application No. 20250326, is a unique global life-saving invention designed to protect passengers and crew in the event of fire or explosion on aircraft, ships, or other transport systems. This registration confirms my sole inventorship and establishes the legal framework for exclusive licensing and deployment worldwide.
Unlike conventional safety equipment, the FFRS provides an immediate protective shield that addresses one of the greatest risks in modern travel: passengers being trapped in catastrophic fire or explosion incidents. Its introduction will not only improve survival rates but also enhance public confidence in aviation and maritime safety. The system has the potential to transform international safety standards, creating peace of mind for millions of travelers every day.
The broader benefits of the FFRS extend beyond individual protection. Adoption of this system will generate significant economic opportunities in manufacturing, distribution, and training, while simultaneously positioning early-partner countries as global leaders in safety innovation. By preventing large-scale tragedies and building a new global rental-use model, the FFRS has the capacity to save countless lives and create long-term value for governments, airlines, maritime operators, and society at large.
The manufacturer is projected to generate annual revenues of $50–60 billion in the first year, with profits expected to rise steadily, reaching approximately $140 billion by 2025.
This invention positions the adopting country as a global leader in high technology and advanced safety innovation.
It will create tens of thousands of new job opportunities across manufacturing, logistics, distribution, and support sectors.
Furthermore, the invention will strengthen diplomatic and commercial ties between partner countries, as its adoption becomes a shared global safety standard.