Shenshi Technology at ICSPC 2026 Supercritical CO₂ Brayton Cycle Solutions
High‑Temperature & High‑Pressure | High‑Efficiency Heat Transfer
Shenshi Technology Delivers Customized Solutions
Dates: August 28‑31
Venue: Wyndham Beijing Dragon City Hotel
About the Conference
The 7th International Conference on Supercritical Power Cycles and Multi‑Energy Complementary Systems (ICSPC) will be held in Beijing from August 28 to 31, 2026. Previously held for six sessions, ICSPC covers fundamental theories, technical equipment, practical applications and cutting‑edge interdisciplinary topics concerning energy transfer, conversion and cycles of supercritical fluids.
ConferenceTopics
Physical properties of supercritical fluids and mixed working fluids
Supercritical quasi‑phase‑change theories
Supercritical flow‑heat transfer and heat‑exchange equipment
Supercritical thermal‑power conversion and fluid machinery
Supercritical power cycles and system integration
Intelligent control of supercritical power cycles
Supercritical‑fluid chemical reactions and hydrogen production
Super‑/trans‑critical cycles coupled with energy storage
Supercritical cycles and multi‑energy complementary systems
Other application technologies for supercritical fluids and cycles
Supercritical CO₂ Brayton Cycle Technology
Supercritical CO₂ exhibits excellent flow and heat‑transfer performance, unlocking broad application prospects in the energy‑power sector. As a new‑generation high‑efficiency power‑generation solution, the supercritical CO₂ Brayton cycle can be integrated with multiple heat sources including nuclear energy, solar energy, industrial waste heat, fossil energy and energy‑storage systems.
Compared with conventional steam power cycles, supercritical CO₂ cycles feature compact system layout and reduced equipment footprint, representing a key technical direction for next‑generation high‑efficiency power generation.
Shenshi Technology at ICSPC
Shenshi Technology will attend the conference with its green‑power product portfolio and customized thermal‑management solutions, to exchange industry insights on supercritical‑fluid heat transfer, heat‑exchange hardware and system integration.
Targeting heat‑exchange requirements within supercritical CO₂ Brayton cycles, Shenshi Technology has developed high‑temperature recuperators, low‑temperature recuperators, coolers and heaters for heating, cooling and waste‑heat recovery of supercritical CO₂ working fluid. Products are custom‑engineered to match complex heat‑transfer behaviors and diverse operating conditions of supercritical CO₂ systems.
Manufactured with vacuum diffusion‑welding technology, this product series delivers reliable performance under high‑temperature and high‑pressure operating scenarios. At equal heat load, the volume and weight are only 1/6 of traditional shell‑and‑tube heat exchangers. The highly‑compact design greatly facilitates equipment arrangement and system integration for supercritical power cycles.
About Shenshi
Founded in 2005, Hangzhou Shenshi Energy Conservation Technology Co., Ltd. (SHENSHI) is a high-tech enterprise specializing in energy-efficient heat transfer and microreaction technologies. As a pioneer in low-carbon thermal management, Shenshi designs and manufactures high-performance heat exchangers and micro-reactors serving industries such as energy, marine & offshore engineering, hydrogen, pharmaceuticals, and advanced manufacturing.
With solutions deployed across more than 40 countries, Shenshi is committed to delivering reliable, efficient, and sustainable thermal technologies for demanding industrial applications.