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Transducer Specifications 1 3 5 7 Thermocouple Exhaust Gas Flow Meter Water Flow Meter Accelerometer Acromag Sage Endress + Hauser IMI Sensors 151T-0600/155H-0600 7 1 Prowirl 77 1 626A01 1 Microturbine Transducers Item # Type Manufacturer Model # Quantity 2 Pressure Gauge Endress + Hauser Cerabar M PMC 41 5 4 Natural Gas Flow Meter We Energies 1 6 Acoustical Meter ICP 130D10 1 The data from the sensors are routed through a data acquisition system and transmitted to the Web via software and hardware from Engage Networks. The data can be remotely accessed from any PC through www.elutions.com/aem. Utilizing this software and equations developed to analyze the plant, real time first and second law efficiency can be observed. Mechanical Tasks: Thermodynamic Modeling One of the priorities for the project was to provide a complete 1st and 2nd Law thermodynamic analysis of the microturbine and associated equipment utilizing data from the operation of the unit, and to make the results accessible from the Website. To this end, each component of the unit was modeled separately, and then a model was created for the unit as a whole. The model was developed in such a way that the inputs to the model were actual data points recorded by the instrumentation. The equations were then inserted into the Website. The model is capable of providing real-time information on energy and exergy transports and exergy destruction for each component, and for the unit as a whole. A line drawing of the microturbine / heat recovery system as installed is included below. Proceedings of the 2004 American Society of Engineering Education Annual Conference & Exposition Copyright © 2004, American Society for Engineering EducationPDF Image | A 60-kW Microturbine Demonstration Facility Phase II: Instrumentation, Website Development, and Evaluation
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