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  • Writer's picture人工進化研究所(AERI)

Closed-Cycle Heat Exchange Geothermal Power Generation System with a regenerative binary engine

Professor Kamuro's near-future science predictions:

Closed-Cycle Heat Exchange Geothermal Power Generation System with a regenerative binary engine(CHEGPG): How can the CHEGPG system surpass the nuclear power generation system to become the leading power generation system?

Exploring the Potential of AERI’ Robot Soldiers

implementing state of art AERI’s Brain

Implanted Biocomputer Intelligence



Quantum Physicist and Brain Scientist

Visiting Professor of Quantum Physics,

California Institute of Technology

IEEE-USA Fellow

American Physical Society-USA Fellow

PhD. & Dr. Kazuto Kamuro

AERI:Artificial Evolution Research Institute

Pasadena, California


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I. Session1:

In this session, prof. Kamuro will lecture on question about “Rather than a method of geothermal power generation that is constructed only in hot spring areas and pumps high-temperature steam, hot water, or hot water from hot spring water veins, could the new geothermal power generation method(CHEGPG system) currently under development at AERI

(https://www.aeri-japan.com/) that selectively extracts only geothermal energy from deep underground layers of 1,000 meters or more at any location without being limited to hot spring areas and uses this thermal energy for geothermal power generation surpass nuclear power and become the main source (king) of power generation?”

1. Answer above question is Yes:

It is possible for AERI’s new geothermal power generation method(CHEGPG system) that selectively extracts only geothermal energy from deep underground layers, without being limited to hot spring areas, to surpass nuclear power and become the main source (king) of power generation.

2. Several factors support this possibility:

a. Abundance of Geothermal Energy:

The Earth's geothermal energy resources are vast and widely distributed, not limited to specific hot spring areas. By accessing deep underground layers of 1,000 meters or more, it becomes feasible to tap into a much larger potential resource base for geothermal power generation.

b. Environmental Advantages:

Compared to nuclear power, geothermal power has several environmental advantages. It produces minimal greenhouse gas emissions and avoids the associated risks of nuclear waste storage and the potential for accidents. These factors make geothermal power an attractive option from an environmental perspective.

c. Renewable and Sustainable:

Geothermal energy is a renewable and sustainable source of power. Unlike fossil fuels, which are finite and contribute to climate change, geothermal energy draws from the Earth's internal heat, which is continually replenished. This long-term sustainability positions geothermal power as a reliable and consistent source of energy.

d. Cost Competitiveness:

As technology advances and the industry continues to mature, geothermal power generation costs have the potential to become increasingly competitive. With ongoing innovations and economies of scale, the cost of drilling, infrastructure, and energy conversion can be reduced, making geothermal power a financially viable option.

e. Grid Compatibility and Baseload Power:

Geothermal power has the advantage of providing baseload power, meaning it can operate continuously, contributing to grid stability and meeting consistent electricity demand. This characteristic makes geothermal power generation an attractive option for integration into existing electrical grids.

3. Conclusion:

a. However, it's important to note that the viability of geothermal power surpassing nuclear power and becoming the main source (king) of power generation depends on further technological advancements, resource assessment, and economic considerations. Challenges such as drilling costs, resource exploration, and optimal extraction techniques need to be addressed to fully exploit the potential of deep geothermal energy.

b. In summary, while the new geothermal power generation method(CHEGPG system) currently under development at AERI (https://www.aeri-japan.com/) you described has the potential to surpass nuclear power, several factors, including technology development, resource assessment, cost competitiveness, and grid integration, need to align for it to become the main source (king) of power generation. Continued research and investment in geothermal energy will be key to realizing this potential.


II. Session2:

In this session, we will lecture on question about “How can a closed-cycle heat exchange power generation system with a regenerative binary engine surpass the nuclear power generation system and become the king of power generation systems?”.

1. Answer:

A closed-cycle heat exchange power generation system with a regenerative binary engine(CHEGPG) has the potential to surpass nuclear power and become a main source (king) of power generation due to several advantages:

a. Resource Availability and Accessibility:

Unlike nuclear power, which relies on the availability of uranium or other fissile materials, AERI’s closed-cycle geothermal system(CHEGPG system) currently under development at AERI(https://www.aeri-japan.com/) can utilize the Earth's natural heat as its energy source. Geothermal energy is widely available globally, and the closed-cycle system allows for geothermal power generation at various locations. This accessibility expands the potential reach of geothermal energy as a main source (king) of power generation.

b. Environmental Sustainability:

Geothermal power generation is a clean and renewable energy source that produces minimal greenhouse gas emissions. In contrast, nuclear power generation involves the production of radioactive waste and the potential risks of accidents and radiation leaks. AERI’s closed-cycle geothermal system(CHEGPG system) contributes to reducing carbon emissions and mitigating the environmental impact associated with nuclear power.

c. Baseload Power Generation:

Similar to nuclear power plants, AERI’s closed-cycle geothermal system can provide baseload power, ensuring a consistent and continuous supply of electricity. Unlike intermittent renewable sources like solar and wind, which are dependent on weather conditions, geothermal power operates continuously, contributing to the stability and reliability of the electrical grid.

d. Safety and Security:

Compared to nuclear power, AERI’s cycle geothermal system(CHEGPG system) currently under development at AERI(https://www.aeri-japan.com/) eliminates the risks associated with nuclear accidents, radioactive waste disposal, and the potential for nuclear proliferation. Geothermal power plants have a smaller footprint and do not require the transportation and storage of hazardous materials, enhancing safety and security.

e. Cost Competitiveness:

As AERI’s technology advances and economies of scale are achieved, AERI’s closed-cycle geothermal system(CHEGPG system) with regenerative binary engines can become more cost-competitive. The cost of drilling and infrastructure can be reduced, and the overall efficiency of the system can be improved, making geothermal power a financially viable option compared to nuclear power.

e. Local Economic Benefits:

Geothermal power generation can bring economic benefits to local communities. It creates job opportunities in construction, operation, and maintenance of geothermal power plants. Additionally, geothermal projects often contribute to regional development and stimulate local economies.

2. Conclusion:

a. To surpass nuclear power and become the main source (king) of power generation, further research and development efforts are needed to optimize AERI’s closed-cycle geothermal system(CHEGPG system)currently under development at AERI(https://www.aeri-japan.com/). Improvements in drilling techniques, heat exchange technologies, and power conversion systems are necessary to enhance efficiency and reduce costs. Additionally, supportive policies, incentives, and investment in geothermal energy development can accelerate its deployment and integration into the energy sector.

b. While the full realization of geothermal power as the main source (king) of power generation may require overcoming certain technical and economic challenges, the advantages of AERI’s closed-cycle geothermal system(CHEGPG system) make them a promising contender to surpass nuclear power and contribute significantly to the global energy mix.

c. Prof. Kamuro ended the lecture by adding, “To become the king of power generation systems, AERI’s closed-cycle geothermal system(CHEGPG system) with a regenerative binary engine would require further advancements in technology, research, and development. Continued innovation in drilling techniques, heat exchange systems, and power conversion technologies are essential to enhance efficiency and reduce costs.”.


END



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Quantum Brain Chipset & Bio Processor (BioVLSI)


Prof. PhD. Dr. Kamuro

Quantum Physicist and Brain Scientist involved in Caltech & AERI Associate Professor and Brain Scientist in Artificial Evolution Research Institute( AERI: https://www.aeri-japan.com/

IEEE-USA Fellow

American Physical Society Fellow

PhD. & Dr. Kazuto Kamuro

email: info@aeri-japan.com

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【Keywords】 Artificial Evolution Research Institute:AERI

HP: https://www.aeri-japan.com/

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