运用能量方程评估和审核水运系统

Enrique Cabrera, José Manuel Abreu, E. Gómez, Roberto Del Teso, Elvira Estruch
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引用次数: 0

摘要

要提高水运系统的能源效率,需要经过两个关键阶段:评估(了解系统的运行情况并确定潜在的节能措施)和审核(查找并分解能源损失)。这两个阶段都以能量平衡为基础,可以使用扩展伯努利方程或能量积分方程。这两种方程都可以使用,但根据系统、数据可用性和要进行的研究类型,其中一种比另一种更可取。本文对这两种方程进行了分析、应用和比较,尤其侧重于在水力领域不太常用的能量积分方程。这种方程更为通用,包括热效应和瞬态效应,更适合分析复杂系统。相比之下,扩展伯努利方程虽然应用起来更简单,但可能会导致相关信息的丢失,例如地形能量的评估。这项工作的主要目的是弥合这两个基本能量方程之间的差距,并为水力问题推荐最合适的方程。通过实际例子来说明它们之间的差异,并验证我们的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing and auditing water transport systems by applying the energy equations
In improving the energy efficiency of water transport systems, two critical stages are involved: assessment (to understand the system's operation and identify potential energy savings) and auditing (to locate and break down the energy losses). Both stages are based on energy balances, which can be conducted using either the extended Bernoulli equation or the energy integral equation. Both equations can be applied, but depending on the system, data availability, and the kind of study to be performed, one is preferable over the other. This paper analyses, applies and compares both equations, with a particular focus on the less commonly used energy integral equation in the hydraulic field. This more general equation includes thermal and transient effects and it is more suitable for analyzing complex systems. In contrast, the extended Bernoulli equation, while simpler to apply, can lead to the loss of relevant information, such as the evaluation of the topographic energy. The main objective of this work is to bridge the gap between these two fundamental energy equations and recommend the most appropriate one for hydraulic problems. Real examples are presented to show their differences and validate our recommendations.
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