Location History:
- Nagoya, JP (2011 - 2021)
- Aichi, JP (2020 - 2021)
- Kitanagoya, JP (2022)
Company Filing History:
Years Active: 2011-2022
Title: Innovations by Takashi Ojiro: Pioneering Heat Exchange Technologies
Introduction
Takashi Ojiro, an esteemed inventor based in Nagoya, Japan, has made remarkable contributions to the field of heat exchange technology. With a portfolio of 20 patents, Ojiro has demonstrated his expertise and innovation in creating efficient systems for thermal management.
Latest Patents
Ojiro’s latest patents include a plate-type heat exchanger and a heat source apparatus. The plate-type heat exchanger features a unique design with blocks stacked together, each containing a heat exchanger body that effectively exchanges heat between a first and a second fluid. This creative configuration includes connection passages that facilitate different flow directions for the first fluid between adjacent blocks, enhancing thermal efficiency. The heat source device he developed incorporates a combustion chamber strategically positioned between a burner and a heat exchanger, optimizing the heating process through a well-engineered system of inlet and outlet pipes, complete with throttling mechanisms to regulate fluid flow.
Career Highlights
Takashi Ojiro is currently employed at Rinnai Corporation, a leading company in the production of heat appliances and systems. His work demonstrates a deep understanding of thermal dynamics and engineering principles, reflected in the innovative designs he has patented.
Collaborations
Throughout his career, Ojiro has collaborated with notable peers such as Takahiro Ono and Masaru Takeuchi. These collaborative efforts have undoubtedly contributed to the advancement of technology within their field, showcasing the importance of teamwork in innovation.
Conclusion
Takashi Ojiro’s work continues to influence the landscape of heat exchange technologies. His relentless pursuit of innovation and collaboration with other experts in the field drive advancements that enhance efficiency and functionality in thermal systems, making significant strides in the industry.