首页> 外文会议>International energy agency conference on heat pumping technologies heat pumps-better by nature >DESIGN AND FIELD DEMONSTRATION OF A HIGH EFFICIENCY HEAT RECLAIM SYSTEM WITH HEAT PUMP IN A NORTHERN PISCICULTURE
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DESIGN AND FIELD DEMONSTRATION OF A HIGH EFFICIENCY HEAT RECLAIM SYSTEM WITH HEAT PUMP IN A NORTHERN PISCICULTURE

机译:北方一家高效的带热泵的换热系统的设计与现场演示。

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Conventional salmonid culture processes in northern fish farms sometimes require oil- or natural gas-based water heating systems to improve productivity, and this in the context of a continually increasing cost of fossil fuels and environmental constraints. This paper presents a thermodynamic/mechanical development project and a six-month field demonstration of a heat-reclaim system including an original, custom-made water-to-water heat pump and a passive heat exchanger installed in an existing fish-farming facility in Canada, in order to eliminate fossil fuels and thus improve the environmental performance of such systems. The purpose of the heat reclaim system was to heat fresh, cold water used in salmonid culture by using the energy recovered from the waste water. The system's energy balance was achieved from several thermodynamic parameters measured and/or calculated during two consecutive, 3-month production cycles (temperature, pressure, enthalpy and flow rate for both water and refrigerant sides, electrical power and energy, etc.). A data acquisition program with a longdistance data transmission system and a complete data computing software were developed for this particular study. A simultaneous collection of breeding data also allowed to establish a precise production balance and to determine the alevin production cost. Significant savings in industrial production and energy operating costs in a cold climate ultimately resulted in a very short pay-back period of the initial capital investment.
机译:北部鱼类养殖场的常规鲑鱼养殖过程有时需要使用以石油或天然气为基础的水加热系统,以提高生产率,而这是在化石燃料成本不断增加和环境制约的背景下进行的。本文介绍了一个热力学/机械开发项目,以及一个为期六个月的热回收系统现场演示,该系统包括一个原始的,定制的水对水热泵和一个被动换热器,该换热器安装在该州现有的鱼类养殖设施中。加拿大,以消除化石燃料,从而改善此类系统的环保性能。热量回收系统的目的是通过利用从废水中回收的能量来加热鲑鱼养殖中使用的新鲜冷水。该系统的能量平衡是通过在两个连续的三个月的生产周期(水,制冷剂侧的温度,压力,焓和流速,电功率和能量等)中测量和/或计算的几个热力学参数实现的。针对此特定研究开发了带有远程数据传输系统的数据采集程序和完整的数据计算软件。同时收集育种数据还可以建立精确的生产平衡并确定alevin的生产成本。寒冷气候下工业生产和能源运营成本的显着节省最终导致初始资本投资的回收期非常短。

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