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Outdoor test method to determine the thermal behavior of solar domestic water heating systems

机译:户外测试方法,以确定太阳能家用热水系统的热性能

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摘要

The dynamics of the market, the generation of new promotion programs, fiscal incentives and many other factors are to be considered for the massive application of solar domestic water heating systems (SDWHS) mainly of the compact thermosiphon type, makes it necessary to choose simple and inexpensive procedure tests that permit to know their characteristic thermal behaviors without an official standard being necessary. Moreover, it allows the comparison among systems and offers enough and reliable information to consumers and manufacturers. In most developing countries, an official national standard for SDWHS is not available, therefore it is necessary to adopt an international test procedure in which the cost and time of implementation is very important. In this work, a simple and inexpensive test method to determine the thermal behavior of SDWHS is proposed. Even though these procedure tests do not have an official standard structure they permit, by comparing different solar systems under identical solar, ambient, and initial conditions, the experimental determination of: (a) the maximum available volume of water for solar heating; (b) water temperature increment and available thermal energy at the end of the day; (c) temperature profiles (stratification) and the average temperature in the storage tank after it is homogenized; (d) the average global thermal efficiency; (e) water temperature decrement and energy lost overnight; and (f) the relationship between hot water volume and solar collector area as function of the average heating temperature. An additional proposed test permits to know the heat losses caused by the reverse flow in the collector loop. These tests will be carried out independently of the configuration between the solar collector and the storage tank, the way the fluid circulates and the type of thermal exchange. The results of this procedure test can be very useful, firstly, for the local solar manufacturers' equipment in order to design and optimize its products comparing their systems against a reference system under identical test conditions and secondly, by the consumers in order to select the most suitable system. The resulting experimental data for a particular thermosiphon system is presented and discussed.
机译:市场的动态,新的促销计划的产生,财政激励措施以及许多其他因素,对于以紧凑型热虹吸管类型为主的太阳能家用热水系统(SDWHS)的大规模应用,必须加以考虑,因此必须选择简单且廉价的程序测试,无需正式的标准就可以知道其特征热性能。而且,它允许在系统之间进行比较,并为消费者和制造商提供足够和可靠的信息。在大多数发展中国家,没有SDWHS的官方国家标准,因此有必要采用国际测试程序,其中实施的成本和时间非常重要。在这项工作中,提出了一种简单且便宜的测试方法来确定SDWHS的热行为。即使这些程序测试没有正式的标准结构,也可以通过比较在相同的太阳能,环境和初始条件下的不同太阳能系统来进行以下实验确定:(a)用于太阳能加热的最大可用水量; (b)一天结束时水温升高和可用热能; (c)均质后的温度曲线(分层)和储罐中的平均温度; (d)全球平均热效率; (e)夜间水温下降和能量损失; (f)热水量和太阳能集热器面积之间的关系,作为平均加热温度的函数。建议进行的其他测试允许了解由收集器回路中的逆流引起的热损失。这些测试将独立于太阳能收集器和储水箱之间的配置,流体的循环方式以及热交换的类型进行。该程序测试的结果可能非常有用,首先,对于本地太阳能制造商的设备,以设计和优化其产品,使其产品在相同的测试条件下与参考系统进行比较,其次,由消费者选择最合适的系统。给出并讨论了特定热虹吸系统得到的实验数据。

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