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HYBRID AUXILIARY SOLAR AND GEOTHERMAL HEAT PUMP OPTIMIZATION METHOD

机译:混合辅助太阳能及地热泵的优化方法

摘要

An in-ground geothermal heat pump (GHP) closed loop optimization method is disclosed for designing, analyzing, optimizing, controlling, and simulating a detailed model and analysis of a building's in-ground geothermal heat pump system, including borehole length, number of boreholes, heat pump capacity, grid layout, total electric operating costs, efficiency ratios, and hybrid designs, among others. In one aspect of the disclosure described herein, the GHP optimization method can reliably and efficiently predict and optimized the fluctuations of the GHP equipment performance in very small increments which enable the determination of energy consumption and demand information on a specific and unique hourly schedule basis for the building design, including incorporating thermal load data for each individual zone of the building. More specifically, the small increment method here can be used to eliminate overly broad approximations by evaluating GHP performance that is specific to building dynamics, constants, and variables for all of the building individual zones and the building's hourly operating schedule, thereby providing an efficient, reliable, simple, and effective geothermal heat pump design and simulation model.
机译:公开了一种地下地热热泵(GHP)闭环优化方法,用于设计,分析,优化,控制和模拟建筑物的地下地热热泵系统的详细模型和分析,包括井眼长度,井眼数量,热泵容量,电网布局,总电力运营成本,效率比和混合动力设计等。在本文描述的本公开的一个方面,GHP优化方法可以以非常小的增量可靠且有效地预测和优化GHP设备性能的波动,这使得能够在特定且唯一的每小时时间表基础上确定能耗和需求信息。建筑物设计,包括合并建筑物每个单独区域的热负荷数据。更具体地说,此处的小增量方法可用于评估GHP性能,从而消除过于广泛的近似值,该GHP性能特定于所有建筑物各个区域的建筑物动力,常数和变量以及建筑物的每小时运行时间表,从而提供高效,可靠,简单,有效的地热热泵设计和仿真模型。

著录项

  • 公开/公告号US2019137134A1

    专利类型

  • 公开/公告日2019-05-09

    原文格式PDF

  • 申请/专利权人 DENNIS J. KOOP;

    申请/专利号US201816236916

  • 发明设计人 DENNIS J. KOOP;

    申请日2018-12-31

  • 分类号F24F11/63;G06F17/50;G05B19/042;F24F5;

  • 国家 US

  • 入库时间 2022-08-21 12:05:04

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