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A novel thermal water pump for circulating water in a solar water heating system

机译:一种新颖的热水泵,用于在太阳能热水系统中循环水

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摘要

This research purpose was to perform a parametric study of a novel thermal water pump well fitted in a simulated solar water heating system (SWHS). The SWHS was composed of a heating tank (HT), a hot water storage tank (ST) and an overhead tank (OT). The HT together with a specially designed valve act as a novel thermal water pump that gets power from hot water vapor and air pressure produced by a built-in electric heater in order to transfer heat from the HT to ST. The general operation of this pump has four stages for each cycle: heating, water circulating, vapor circulating and water supplying. The discharge water heads were varied with an increment of 0.25 m from 0.75 to 3 m. According to the experiment, it was found that the pump could operate at an average HT temperature of about 80-95℃ leading to 70-80℃ ST temperatures and 20-35 pumping cycles and consumed 17 MJ energy input during 9-h period. The overall thermal efficiency of the SWHS was 33-42% and the mean pump efficiency was about 0.005-0.011% depending upon the discharge heads.
机译:本研究的目的是对安装在模拟太阳能热水系统(SWHS)中的新型热泵进行参数研究。 SWHS由加热箱(HT),热水存储箱(ST)和高架箱(OT)组成。 HT与专门设计的阀一起充当新型的热水泵,该泵从内置蒸汽加热器产生的热水蒸气和气压中获取动力,从而将热量从HT传递到ST。该泵的一般操作每个循环有四个阶段:加热,水循环,蒸汽循环和供水。排放水头从0.75到3 m以0.25 m的增量变化。根据实验发现,该泵可以在大约80-95℃的平均HT温度下运行,从而导致70-80℃的ST温度和20-35的泵送周期,并在9小时内消耗了17 MJ的能量输入。 SWHS的总热效率为33-42%,平均泵效率约为0.005-0.011%,具体取决于排放扬程。

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