Study on the Effect of Diaphragm Booster on the Pulsed Heat Transfer of Cooling System

Author:

Zhou Y.1ORCID,Liu Z.1ORCID,Golyanin A.2

Affiliation:

1. Jiangsu University of Science and Technology

2. Ogarev Mordovia State University

Abstract

This paper has developed a diesel engine cylinder liner and cooling water heat exchange enhancement device, including diesel engine cylinder liner, cylinder liner water cooler, hydraulic accumulator, check valve, diaphragm booster, centrifugal water pump, pulse valve and Conical tube. As well as the pulsating circulation system and booster system composed of equipment. The device heats the heat generated by the diesel engine cylinder liner in a pulsating circulation system through a cylinder circulator in a pulsating circulation system to exchange heat with the external low-temperature seawater. By controlling the opening and closing of the pulsating valve in the pulsating circulation system, fluid is generated in the pipe. Pulsing and hydraulically impacting the diaphragm booster connected near the pulsation valve pipeline, the fluid at the outlet of the diaphragm booster is subjected to hydraulic shock and circulates in a closed booster circuit connected to the diaphragm booster and passes through the cone during the flow. The shaped tube accelerates the fluid to return to the diaphragm supercharger, and the kinetic energy of the fluid is converted into the pressure in the pulsating heat exchange system by impacting the elastic diaphragm of the diaphragm supercharger, so that the pulsating speed is increased. The present invention is to increase the pulsating velocity of the diaphragm. Based on the design of the compressor drive, it improves energy efficiency, avoids the use of high-power water pumps, and saves equipment construction and daily operation.

Publisher

Publishing Center Science and Practice

Subject

General Medicine

Reference15 articles.

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4. Макеев А. Н. Импульсная система теплоснабжения общественного здания: диссер. ... канд. техн. наук. Саранск, 2010. 153 с.

5. Овсепян В. М. Гидравлический таран и таранные установки. М.: Машиностроение. 1968.

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