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Manufacturing and testing mock-up for commercialization of the ocean thermal energy conversion (50MW) power plant

机译:海洋热能转化(50MW)电厂商业化生产和测试模型

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The mock-up for a commercial plant of 50MW ocean thermal energy conversion (OTEC) was manufactured to obtain the basic data for the performance evaluation and optimal design of OTEC plant. EES (Energy Equation Solver) was used to design the mock-up. The basic thermodynamic model for OTEC is Rankine cycle, and the surface seawater and deep seawater were used for the heat source of an evaporator and a condenser, respectively. Input conditions for the cycle design were R-22 as a working fluid, 30% as a turbine isentropic efficiency due to very small capacity. The cycle capacity and performance such as efficiency, heat exchanger capacity, etc. were analyzed on the water temperature heat source. As the cycle analysis, the working fluid mass flow rate was 13.68 g/s and heat source water flow rate for evaporator and condenser were 13.14 and 12.64 LPM, respectively. On the basis of the cycle design, the mock-up was manufactured to get the basic experimental data. The water heat source for the evaporator and condenser was supplied by constant temperature water bath. The result from the basic experiment, when the warm water and cold water were 26°C and 5°C, the power was produced about 28W by turbine-generator. We will experiment the performance of the mock-up with respect to various conditions such as the heat source water temperature and a refrigerant classification, etc.
机译:制造用于50MW海洋热能转化(OTEC)的商业工厂的模型,以获得用于OTEC工厂性能评估和优化设计的基本数据。 EES(能量方程求解器)用于设计模型。 OTEC的基本热力学模型是兰金循环,地表海水和深层海水分别用作蒸发器和冷凝器的热源。循环设计的输入条件是R-22作为工作流体,由于容量很小,涡轮等熵效率为30%。在水温热源上分析了循环容量和效率,热交换器容量等性能。作为循环分析,工作流体质量流量为13.68 g / s,蒸发器和冷凝器的热源水流量分别为13.14 LPM和12.64 LPM。在循环设计的基础上,制造了模型以获取基本的实验数据。蒸发器和冷凝器的水热源由恒温水浴提供。基础实验的结果,当温水和冷水分别为26°C和5°C时,涡轮发电机产生的功率约为28W。我们将针对各种条件(例如热源水温和制冷剂分类等)对模型的性能进行实验。

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