预测海洋盐度和温度能量转换系统(OSTEC)输出功率的粘度模型第一部分:理论公式

A. S. A. Hamid, Shu Kim Lee, J. Dayou, Rubena Yusoff, F. Sulaiman
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引用次数: 4

摘要

两种不同盐度流体之间的混合物已被证明能够在称为水力发电机的海洋盐度能量转换系统中产生电力。该系统依赖于进入的淡水和发电机周围海水的盐度之间的差异。在本研究中,引入了两种流体的温度差作为附加参数;因此,该系统被称为海洋盐度和温度能量转换系统(OSTEC)。调查分为两篇论文。本文第一部分首先提出了考虑流体动力粘度影响的理论公式——粘度模型,然后与传统的密度模型进行了比较。动态粘度模型用于预测系统中流体的动态,进而给出可以收获的潜在功率输出的分析公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viscosity Model for Predicting the Power Output from Ocean Salinity and Temperature Energy Conversion System (OSTEC) Part 1: Theoretical Formulation
The mixture between two fluids of different salinity has been proven to capable of producing electricity in an ocean salinity energy conversion system known as hydrocratic generator. The system relies on the difference between the salinity of the incoming fresh water and the surrounding sea water in the generator. In this investigation, additional parameter is introduced which is the temperature difference between the two fluids; hence the system is known as Ocean Salinity and Temperature Energy Conversion System (OSTEC). The investigation is divided into two papers. This first paper of Part 1 presents the theoretical formulation by considering the effect of fluid dynamic viscosity known as Viscosity Model and later compares with the conventional formulation which is Density Model. The dynamic viscosity model is used to predict the dynamic of the fluids in the system which in turns gives the analytical formulation of the potential power output that can be harvested.
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