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Feasibility Demonstrations of Liquid Turbine Power Generator Driven by Low Temperature Heats

机译:低温加热驱动水轮发电机的可行性论证

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Lower temperature waste heats less than 373 K have strong potentials to supply additional energies because of their enormous quantities and ubiquity. Accordingly, reinforcement of power generations harvesting low temperature heats is one of the urgent tasks for the current generation in order to accomplish energy sustainability in the coming decades. In this study, a liquid turbine power generator driven by lower temperature heats below 373 K was proposed in the aim of expanding selectable options for harvesting low temperature waste heats less than 373 K. The proposing system was so simply that it was mainly composed of a liquid turbine, a liquid container with a biphasic medium of water and an underlying water-insoluble low-boiling-point medium in a liquid phase, a heating section for vaporization of the liquid and a cooling section for entropy discharge outside the system. Assumed power generating steps via the proposing liquid turbine power generator were as follows: step 1: the underlying low-boiling-point medium in a liquid phase was vaporized, step 2: the surfacing vapor bubbles of low-boiling-point medium accompanied the biphasic medium in their wakes, step 3: such high momentum flux by step 2 rotated the liquid turbine (i.e. power generation), step 4: the surfacing low-boiling-point medium vapor was gradually condensed into droplets, step 5: the low-boiling-point medium droplets were submerged to the underlying medium in a liquid phase. Experiments with a prototype liquid turbine power generator proved power generations in accordance with the assumed steps at a little higher than ordinary temperature. Increasing output voltage could be obtained with an increase in the cooling temperature among tested ranging from 294 to 296 K in contrast to normal thermal engines. Further improvements of the direct current voltage from the proposing liquid turbine power generator can be expected by means of far more vigorous multiphase flow induced by adding solid powders and theoretical optimizations of heat and mass transfers.
机译:小于373 K的低温废热具有巨大的潜力,因为其数量巨大且无处不在,因此可以提供更多的能量。因此,为了在未来几十年内实现能源的可持续性,加强收集低温热量的发电是当前一代的紧迫任务之一。在这项研究中,提出了一种由373 K以下的低温热驱动的液轮发电机,目的是扩大收集少于373 K的低温废热的可选方案。提出的系统非常简单,主要由一个液体涡轮机,具有水的两相介质和处于液相中的下面的水不溶性低沸点介质的液体容器,用于使液体汽化的加热部分和用于向系统外部排放熵的冷却部分。假定通过提议的液体涡轮发电机进行的发电步骤如下:步骤1:将液相中的基本低沸点介质汽化;步骤2:低沸点介质的表面蒸气气泡伴随双相介质,在它们的尾流中,第3步:通过第2步的这种高动量通量使液体涡轮机旋转(即发电),第4步:将表面低沸点介质蒸汽逐渐冷凝成液滴,第5步:低沸点点介质液滴在液相中浸没到下面的介质中。原型水轮发电机的实验证明,在比常温稍高的温度下,按照假定的步骤进行发电。与正常的热力发动机相比,随着测试中冷却温度的升高,从294到296 K的范围内可以获得增加的输出电压。通过添加固体粉末以及传热和传质的理论优化,可以产生更加剧烈的多相流,从而有望进一步改善提出的液体涡轮发电机的直流电压。

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