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DESC0020851

Project Grant

Overview

Grant Description
Elasto-hydrodynamic seal for SCO2 applications.
Awardee
Place of Performance
Duluth, Georgia 30097-2548 United States
Geographic Scope
Single Zip Code
Related Opportunity
None
Analysis Notes
Amendment Since initial award the End Date has been extended from 06/28/21 to 08/22/24 and the total obligations have increased 553% from $198,800 to $1,298,800.
Ultool was awarded Project Grant DESC0020851 worth $1,298,800 from the Office of Science in June 2020 with work to be completed primarily in Duluth Georgia United States. The grant has a duration of 4 years 2 months and was awarded through assistance program 81.049 Office of Science Financial Assistance Program.

SBIR Details

Research Type
STTR Phase II
Title
Elasto-Hydrodynamic Seal for sCO2 Applications
Abstract
Supercritical CO2 (sCO2) power cycles are superior to traditional water based, air-breathing, direct- fired, open Brayton cycles or indirect-fired, closed Rankine cycles in terms of efficiency and equipment size. They hold great potential in nuclear power production, fossil fuel power plants, concentrated solar power, geothermal power, and ship propulsion. To unlock the potential of sCO2 power cycles, technology readiness must be demonstrated on the scale of 10 – 600 MWe and at the sCO2 temperatures and pressures of 350 – 700 ºC and 20 – 35 MPa for nuclear industries. The lack of suitable seals at sCO2 operating conditions is one of the main challenges at the component level. So far, conventional seals all suffer from the incapability of handling sCO2 pressure and temperature in one way or another. To this end, we propose a patented elasto-hydrodynamic (EHD) high-pressure, high temperature, and scalable shaft seal for sCO2 cycles. Under the EHD mechanism, the higher the pressures, the tighter the sealing, while still sustaining a continuous sCO2 film. A patented secondary seal will be integrated to the primary seal to provide sealing at startup, which will enable active sealing for the whole operating range (from cold start to operating conditions). To further promote the longevity of the EHD seal, a proprietary wear-resistant coating deposition method will be explored. In Phase I, the simulation strategies have been established to address the complexity of the EHD analysis. Two pending US patents were resulted from the Phase I Project and the Phase I simulations have been published at ASME POWER 2021 and ASME TURBO EXPO 2021. An extensive analysis of the EHD seal has been conducted for nuclear power generation turbomachinery and a test rigs has been designed to test the EHD seal internally. The test rig will be completed by the end of the Phase I (July 2021) for seal demonstration and optimization. The Team has identified potential partners for the EHD seal development, including four federal laboratories. Two energy-saving and emission-reducing applications have been identified for the EHD seal: sCO2 Power Generation Turbomachinery Seal – Operate at sCO2 Conditions and Scalable to 18” +. High Efficiency Aircraft Engine Seal – Cut Total Aircraft Fuel Consumption by 3-5%. The Phase II Project will begin with developing a prototype EHD seal and optimize it via in-house testing and application-specific simulations, followed by an EHD seal demonstration at SNL’s 2” sCO2 Seal Testing Facility. The system integration approach and manufacturing process will be investigated and established. A new on-shaft coating deposition system will be studied for coatings on large sCO2 turbomachinery shaft (18”+). A path to commercialization will be identified and presented.
Topic Code
37q
Solicitation Number
DE-FOA-0002381

Status
(Complete)

Last Modified 6/24/24

Period of Performance
6/29/20
Start Date
8/22/24
End Date
100% Complete

Funding Split
$1.3M
Federal Obligation
$0.0
Non-Federal Obligation
$1.3M
Total Obligated
100.0% Federal Funding
0.0% Non-Federal Funding

Activity Timeline

Interactive chart of timeline of amendments to DESC0020851

Transaction History

Modifications to DESC0020851

Additional Detail

Award ID FAIN
DESC0020851
SAI Number
None
Award ID URI
SAI EXEMPT
Awardee Classifications
Small Business
Awarding Office
892430 SC CHICAGO SERVICE CENTER
Funding Office
892401 SCIENCE
Awardee UEI
DAQRG9PBNTT4
Awardee CAGE
54GL6
Performance District
GA-07
Senators
Jon Ossoff
Raphael Warnock

Budget Funding

Federal Account Budget Subfunction Object Class Total Percentage
Science, Energy Programs, Energy (089-0222) General science and basic research Grants, subsidies, and contributions (41.0) $198,800 100%
Modified: 6/24/24