蒸汽发电厂原型的设计和建造(锅炉系统和压缩汽缸的性能分析)

Q3 Chemical Engineering
Radhiah, Siti Amra, Zulfikar, Nelly Safitri
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引用次数: 0

摘要

蒸汽发电厂是一种利用水作为工作流体将化学能转化为电能的发电系统。该蒸汽发电厂原型是一个使用锅炉、压缩缸、飞轮、发电机和负载等链接设备(组件)的发电厂。调查中采用了结构和功能方法。水被倒入锅炉中加热,直至变成蒸汽。打开锅炉阀门将蒸汽导入铁管,然后加压蒸汽通过压缩缸阀门进入压缩缸,使压缩缸移动并带动飞轮旋转,然后与飞轮相连的皮带轮也随之旋转,并通过范带与发电机相连、为了观察旋转和负载的变化,需要在蒸汽温度为 113 摄氏度、压力为 20 磅/平方英寸、转速为 466 转/分钟的情况下无负载运行压缩缸,预热时间为 25 分钟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Construction of Steam Power Plant Prototype (Performance Analysis of Boiler System and Compress Cylinder)
A steam power plant is a power production system that uses water as a working fluid to transform chemical energy into electrical energy. This STEAM POWER PLANT prototype is a power plant that uses linked equipment (components) such as boilers, compress cylinders, flywheel, generator, and load. A structural and functional approach was used in the investigation. Water is poured into the boiler and heated until it becomes steam. And the steam is channelled to the iron pipe by opening the boiler valve, then pressurized steam enters through the compress cylinder valve so that the compress cylinder moves and rotates the flywheel, then the pulley connected to the flywheel then also rotate and be connected to the generator via the van belt, so that the generator rotates causes the generator to work converting kinetic energy into electrical energy, to see changes in rotation, load vale to operate a compression cylinder without load, a pressure of 20 psi with a rotation of 466 rpm at a steam temperature of 113oC is required and takes 25 minutes to warm up.
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来源期刊
Journal of Advanced Research in Fluid Mechanics and Thermal Sciences
Journal of Advanced Research in Fluid Mechanics and Thermal Sciences Chemical Engineering-Fluid Flow and Transfer Processes
CiteScore
2.40
自引率
0.00%
发文量
176
期刊介绍: This journal welcomes high-quality original contributions on experimental, computational, and physical aspects of fluid mechanics and thermal sciences relevant to engineering or the environment, multiphase and microscale flows, microscale electronic and mechanical systems; medical and biological systems; and thermal and flow control in both the internal and external environment.
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