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Testing of a residential GAX absorption heat pump and chiller and verification of a computer cycle simulation.

机译:住宅GAS吸收式热泵和冷却器的测试以及计算机循环仿真的验证。

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This research effort experimentally tested an advanced-cycle, ammonia-water absorption heat pump at 3 RT and a chiller at 3.3 RT and 5 RT. The components of the cycle were assembled with instrumentation, including flow meters, pressure transducers, and thermocouples. Each system was a Generator-Absorber Heat Exchange (GAX) cycle and all were sized for residential and light commercial use, where very little absorption equipment is currently used. The findings of the experimental portion of the research were cycle cooling load and Coefficient of Performance (COP), as well as many component heat duties and working fluid state points throughout the cycle. The COP of the heat pump was 0.43; that of the chiller at full load (5 RT) was 0.63. Appropriate weaknesses in the cycle were identified in order to improve the efficiency in the next generation machine.; A computer simulation of each cycle was performed and the simulations validated against the experimental results. Modeling with ABSIM-OSU involved some modifications to the simulation software as well as judicious changing of input parameters (component sizes and deviations from equilibrium) in order to move output results to agree with experimental findings. Modeling incorporated a heat loss from the gas fired generator and pressure drops in both the evaporator and absorber. Simulation results and experimental findings agreed closely and validated the modeling method and simulation software.; The original design cycle for the chiller (COP of 0.78) was modified based on lessons learned in the experimentation and modeling. The experimental cycle (COP of 0.63) had several components that did not perform to specification. In order to predict the cycle performance, several underperforming components were improved in the model. As a result, the design model and the experimental cycle model were reconciled. The modified design cycle predicted a COP of 0.71 and the modified experimental cycle predicted a COP of 0.70.; Existing market research shows that significant business opportunities exist for a GAX heat pump or chiller with a cooling COP of 0.70 or greater. The work performed in this study provides a validated computer simulation package capable of realistically predicting the performance of ammonia-water absorption cycles. As such, a realistic and reliable design tool is now available along with experimentally based values for essential modeling parameters.
机译:这项研究工作通过实验测试了先进循环,氨水吸收式热泵在3 RT下的运行以及冷水机在3.3 RT和5 RT下的运行。循环的各个组件都与仪器组装在一起,包括流量计,压力传感器和热电偶。每个系统都是一个发生器-吸收器热交换(GAX)循环,所有系统的尺寸均适合于住宅和轻型商业用途,目前这些地方很少使用吸收设备。研究的实验部分的发现是循环冷却负荷和性能系数(COP),以及整个循环中的许多组件热负荷和工作流体状态点。热泵的COP为0.43;满负荷(5 RT)时的冷却器的比值为0.63。确定了周期中的适当弱点,以提高下一代机器的效率。对每个循环进行计算机模拟,并根据实验结果对模拟进行验证。使用ABSIM-OSU进行建模需要对仿真软件进行一些修改,并明智地更改输入参数(组件大小和与平衡的偏差),以使输出结果与实验结果相符。建模包含了燃气发生器的热量损失以及蒸发器和吸收器中的压降。仿真结果与实验结果相吻合,验证了建模方法和仿真软件的有效性。冷却器的原始设计周期(COP为0.78)根据在实验和建模中获得的经验教训进行了修改。实验周期(COP为0.63)具有几个未达到规格要求的组件。为了预测循环性能,模型中改进了几个性能不佳的组件。结果,设计模型和实验周期模型一致。修改的设计周期预测的COP为0.71,修改的实验周期预测的COP为0.70。现有的市场研究表明,制冷系数为0.70或更高的GAX热泵或冷水机存在巨大的商机。在这项研究中进行的工作提供了一个经过验证的计算机仿真程序包,该程序包能够现实地预测氨水吸收循环的性能。这样,现在就可以使用一种现实可靠的设计工具,以及用于基本建模参数的基于实验的值。

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