Mitsubishi Hitachi Power Systems, Ltd. (MHPS) has begun commissioning of T-Point 2, its new combined cycle power plant validation facility at Takasago Works in Hyogo Prefecture, Japan. Replacing the iconic T-Point, the facility will accelerate MHPS‘ industry-leading technology and enable more robust validation of advanced-class gas turbines (ACGTs) such as the 1650℃-class JAC model and 1700℃-class ultrahigh-temperature models. Like its predecessor, T-Point 2 will perform full-scale long-term reliability verification for gas turbines. Connected to the actual grid, it is housed within Takasago Works that features centers for R&D, design, manufacturing, and short-term component testing.
Once commercial operations begin in July 2020, T-Point 2 is expected to achieve power output of over 566 MW (60Hz), with nearly 64% efficiency, 99.5% reliability and a world-first turbine inlet temperature of 1650℃ – raising industry standards for gas turbine combined cycle performance globally. This improved performance is possible due to the advanced engineering of the upgraded J-Series Air-Cooled (JAC) model, which is the first gas turbine being validated at T-Point 2.
The new facility features a triple-casing steam turbine, augmenting overall system efficiency through a multiplier effect with the JAC gas turbine. This greater efficiency reduces carbon emissions and heat loss, significantly reducing the environmental impact of T-Point 2.
“The prototype validation system established by MHPS has given our customers the clear assurance that they are receiving the highest caliber and most reliable energy solutions in the market,” said Mr. Junichiro Masada, Senior Vice President and Senior General Manager of Gas Turbine Technology & Products Integration Division, MHPS. “The launch of T-Point 2 is testament to MHPS’ commitment to deliver industry-leading power generation technology and customer service underpinned by best-in-class methods for performance and durability verification.”
MHPS will use the facility to conduct validation of the next-generation 1700℃-class ultrahigh-temperature gas turbines, steam turbine upgrades, air-cooled condenser technology, generators, and static frequency converters.
Work is underway to install and train advanced artificial intelligence technology at T-Point 2, which will feature the MHPS-TOMONI suite of digital solutions. During the 8,000 hour durability demonstration period, MHPS will also be training its AI apps, allowing T-Point 2 to eventually become the world’s first autonomous combined cycle power plant. This will catapult power generation into a future where digital technologies are fully integrated into plant operations, allowing plant owners to leverage data to optimize performance, enable condition-based predictive maintenance for equipment, selectively automate operation and maintenance (O&M) decision-making, and reduce risk.
With these building blocks, MHPS will remotely monitor and manage total plant performance; remotely operate the plant in coordination with grid and fleet-wide energy management objectives; and utilize sensor and control system data to make smarter operation decisions in real time. MHPS-TOMONI solutions powered by advanced technologies such as artificial intelligence and machine learning will enable MHPS to automate O&M decision-making to maximize the profitability of existing and future GTCC plants.