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Development of General-Purpose Energy System Analysis Simulator “Energy Flow +M”?Static Analysis Of Solar Collector

机译:通用能源系统分析模拟器“ E​​nergy Flow + M”的开发?太阳能集热器的静态分析

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To solve current environmental problems such as global warming and declination of fossil fuels, use of less energy is essential, particularly in the fields of refrigeration and air conditioning. Thus, simulations using complex mathematical models become vital. Simulation technology faces a major challenge because the language of simulation codes varies depending on the programmer. Thereafter, others cannot duplicate the same simulation technology used by their predecessors. To address this, a modular analysis method that generalizes simulation code has been developed. With this method, the general-purpose software analyzing energy system called “ENERGY FLOW +M,” a software enabling analyses that can be conducted without having to specify the model or the method of analysis used, has also been created. The focus of this study was on the solar collector. As the solar collector uses energy from the sun, it is friendly to the global environment. In order to understand the performance of the solar collector, the construction of a simulation model was carried out. Moreover, models of the solar collector and solar radiation were loaded into “ENERGY FLOW +M” to verify their performance. Thus, this simulator allows us to execute simulations of the solar collector from anywhere via the Internet.
机译:为了解决当前的环境问题,例如全球变暖和化石燃料的变质,必须使用较少的能量,特别是在制冷和空调领域。因此,使用复杂的数学模型进行仿真变得至关重要。仿真技术面临着重大挑战,因为仿真代码的语言取决于程序员。此后,其他人将无法复制其前辈使用的相同仿真技术。为了解决这个问题,已经开发了一种概括分析代码的模块化分析方法。通过这种方法,还创建了通用的能源分析软件系统,称为“ ENERGY FLOW + M”,该软件可以进行分析,而无需指定所使用的模型或分析方法。这项研究的重点是太阳能收集器。由于太阳能收集器使用来自太阳的能量,因此对全球环境友好。为了了解太阳能收集器的性能,进行了仿真模型的构建。此外,将太阳能收集器和太阳辐射的模型加载到“ ENERGY FLOW + M”中以验证其性能。因此,该模拟器使我们可以通过Internet在任何地方执行太阳能收集器的模拟。

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