OCEAN RENEWABLE POWER CO INC — Department of Energy SBIR Phase I: 14a
OCEAN RENEWABLE POWER CO INC — SBIR Phase I award from Department of Energy.
- Amount
- $199,290
- Agency
- Department of Energy
- Program / Phase
- SBIR · Phase I
- Topic
- 14a
- Solicitation
- DE-FOA-0001941
- NAICS
- —
- Place of performance
- ME
- Period
- 2019-07-01 → 2020-04-30
Description
There is a worldwide, nearly insatiable demand for renewable energy and a dramatic shift away from central power grids to smaller, more secure, robust and reliable grids powered by renewable energy. ORPC estimates the total addressable global market for marine hydrokinetics is 433 gigawatts (GW), and ORPC has taken a leadership position in the early adopter, high cost islanded community market in North America. This 1.5 GW market obtains electricity from diesel generation at $0.30 to $1.30/kWh, with substantial noise, environmental, and emissions issues. ORPC will develop scalable applications of marine renewable energy as a baseload power source to completely replace diesel generators for 100 percent renewable microgrid operations. ORPC will work with the City of False Pass, Alaska, to plan the deployment of a microgrid system using ORPC power systems as baseload generation. False Pass is situated near a significant hydrokinetic tidal resource at the Isanotski Straight that offers a potential to considerably reduce, or eliminate, the use of diesel fuel and provide locally sourced energy. The average residential expenditure for home energy is 350 percent of the national average, and like most communities of the Aleutian Islands, relies completely on diesel fuel to meet electricity and heating needs. The remote location of the community combined with the volatility of fuel prices leaves False Pass vulnerable to fuel shortages and high energy costs. ORPC will demonstrate the economic viability of a microgrid marine renewable energy system for community-scale tidal power systems like those found in False Pass. A model of the grid system with multiple implementations of additional storage elements including pumped storage and battery storage will be developed to assess the ability of different generating technologies and storage approaches to provide robust, reliable electrical and thermal energy to light industrial, commercial and residential customers on the False Pass utility grid. The study will evaluate the energy balance of the full grid over a one-year period.Demonstration of the marine renewable energy microgrid will facilitate market entry for supporting distributed energy resources in grid-tied, domestic markets, which are increasingly being recognized as essential components of the electricity grid of the future and are expected to supplement or replace large central power generation projects at a global scale.