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Development and Implementation of a Ductless Heat Pump Metering Plan

机译:无管热泵计量计划的制定和实施

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The scope and volume of utility conservation programs across the country have led tornrenewed interest in measurement and verification (M&V). Accelerating energy-efficiency gainsrnand reducing emissions requires that programs actually deliver measurable savings. In the springrnof 2009 an extensive M&V project was launched to assess the Northwest Ductless Heat PumprnPilot Project. This project included sub metering of heating, domestic hot water, and totalrnenergy. Temperature and other parameters were also used to determine heat-pump performancernfor the emerging application of offsetting electric space heat as a residential retrofit. This paperrndescribes the development and implementation of the measurement plan used in an ongoingrnevaluation (95 sites in three states).rnThe installation procedures and post-install processes described in the paper are designedrnto:rn1. Collect data to verify the ductless heat pump (DHP) was operating at or near thernmanufacturer’s performance specifications;rn2. Monitor occupant interaction with the DHP and the remaining heating system, andrndetermine heating energy savings;rn3. Check data streams with a custom, add-on automated QC program to identify problems;rn4. Allow addition/replacement of sensors after initial installation with minimal data loss;rn5. Summarize other non-space heat usages and the interaction with heating requirements.rnThe paper will discuss the selection of the final metering package, development ofrntraining for installers, interaction between the equipment vendor and technicians to troubleshootrnproblems, and implementation of data quality control. Illustrations of data collected and datarnquality issues identified in the QC process will be presented.
机译:全国公用事业保护计划的范围和数量已引起人们对测量和验证(M&V)的新兴趣。加速提高能效并减少排放量要求计划切实提供可观的节省。在2009年春季会议上,启动了一个广泛的M&V项目,以评估西北无管热泵rnPilot项目。该项目包括供热,生活热水和总能源的分计量。温度和其他参数也被用于确定热泵性能,用于抵消住宅用电空间热量的新兴应用。本文描述了进行中的评估(三个州的95个站点)中使用的测量计划的开发和实施。本文中介绍的安装过程和安装后过程设计为:rn1。收集数据以验证无管式热泵(DHP)是否在制造商的性能规格或附近工作。监控乘员与DHP和其余供暖系统的相互作用,并确定供暖节能量; rn3。使用自定义的附加自动QC程序检查数据流以发现问题; rn4。初始安装后允许添加/更换传感器,而数据丢失最小; rn5。总结其他非空间热量的使用以及与供热需求的相互作用。本文将讨论最终计量套件的选择,安装人员培训的发展,设备供应商与技术人员之间的互动以解决问题,以及数据质量控制的实施。将展示在质量控制流程中收集的数据和发现的数据质量问题的插图。

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