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首页> 外文期刊>Science and Technology for the Built Environment >Differential mass evacuation sampling technique for measuring refrigerant charge and oil retention of round tube plate fin heat exchangers (ASHRAE RP-1785)
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Differential mass evacuation sampling technique for measuring refrigerant charge and oil retention of round tube plate fin heat exchangers (ASHRAE RP-1785)

机译:用于测量圆管翅片热交换器制冷剂充电和油保留的差分散热采样技术(ASHRAE RP-1785)

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摘要

Equipment reliability, efficiency, charge migration, and refrigerant charge optimization of refrigeration systems has been widely emphasized as critical development focus. Numerous modeling tools are utilized to predict charge of oil and refrigerant in refrigeration systems during system design. However, there is a lack of experimental validation data to confirm the accuracy of these models. The sampling technique presented in this paper allows the separate measurement of refrigerant and oil charge. An accompanying heat exchanger volume measurement technique was utilized to estimate heat exchanger volume and required measurement accuracy. The high accuracy, simple, and comparatively fast measurement technique enables collection of high-fidelity experimental data efficiently, to be used to validate charge models. Key components which are crucial to implement the technique include a removable heat exchanger charge test module and a modular duct assembly. A test plan using a Box-Behnken design of experiments was developed that maximizes test effort effectiveness by minimizing the number of tests required for thorough model validation.
机译:制冷系统的设备可靠性,效率,电荷迁移和制冷剂充电优化已被广泛强调为关键发展焦点。许多建模工具用于预测系统设计期间制冷系统中的油和制冷剂的电荷。但是,缺乏实验验证数据来确认这些模型的准确性。本文提出的采样技术允许单独测量制冷剂和油料。伴随的热交换器体积测量技术用于估计热交换器体积和所需的测量精度。高精度,简单,比较快速的测量技术使得能够有效地收集高保真实验数据,以用于验证充电模型。对于实现该技术至关重要的关键部件包括可移除的热交换器电荷测试模块和模块化管道组件。开发了使用Box-Behnken设计的测试计划,通过最大限度地减少彻底模型验证所需的测试数量来最大限度地提高测试工作效率。

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