Steam Turbine Power Generation Experiment System-ET201

Product Introduction:

This product is a thermodynamic cycle device that converts thermal energy into work. It can be used to demonstrate the operation process of steam turbine power generation, study basic thermodynamic processes such as isentropic compression, isobaric heat absorption, isentropic expansion, and isobaric condensation, and understand the working principle of the Rankine cycle. The equipment mainly consists of components such as steam boiler, turbine generator, condenser, make-up water tank, and water pump. The module is designed for miniaturization based on real products, and can switch between connecting single or multiple systems to achieve flexible configuration; The centralized collection and control module has data collection and analysis functions, while collecting parameters such as temperature, pressure, and electrical power at the inlet and outlet of each module, and realizing functions such as working condition control and operation status display; Through innovative design and research and development, the project achieves efficient, stable, and safe operation while also having good scalability and maintainability. Open data, support user self editing, and interdisciplinary expansion;

detailed information

PRODUCT MODELET201product nameSteam Turbine Power Generation Experiment System
Product specifications1350×800×1700mmproduct material
Usage environmentRoom temperature, relative humidity ≤ 85%Input power supplySingle phase three wire, 220V ± 5%, 50Hz
Belonging seriesEngineering ThermodynamicsCooperate with modules
Experimental function:
1、Demonstrate the process and operating principles of a real steam power generation system;
2、Verify the first law of thermodynamics;
3、Verify the second law of thermodynamics;
4、Study the structure and performance characteristics of steam turbines;
5、Study the thermal efficiency of steam boilers;
6、Determine the thermal efficiency of the system;
7、Determine the conversion efficiency of heat to work under various inlet pressures;

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