In the steam turbine fire-resistant oil regeneration system, the cellulose filter element 01-388-013 plays a vital role. It is responsible for filtering out tiny particles, moisture and other harmful impurities in the oil to ensure that the fire-resistant oil remains clean, thereby protecting expensive equipment from wear and corrosion. In order to maintain the efficient operation of the system, regular monitoring of the physical and chemical indicators of the fire-resistant oil, such as particle size, moisture content, acid value, etc., is closely related to the maintenance of the cellulose filter element. These monitoring activities directly guide the maintenance decision and replacement timing of the filter element.
Particle size is a direct indicator of oil cleanliness. Through fine particle counting analysis, the ability of the filter element 01-388-013 to remove impurities can be evaluated. If the monitoring results show that the particle size exceeds the standard, it usually means that the filter element has reached saturation and the filtration efficiency has decreased. It must be replaced or deeply cleaned in time to prevent contaminants from circulating and accumulating in the system, threatening the safe operation of precision equipment.
Moisture is a catalyst for the deterioration of fire-resistant oil. High levels of moisture content will not only promote oil aging, but also reduce its insulation performance and increase the risk of corrosion. Regularly checking the moisture content in the oil can indirectly reflect the dehumidification efficiency of the filter element 01-388-013. When the moisture removal function is weakened, even if the filter element has not reached the regular replacement cycle, it is necessary to consider replacing it to prevent the system performance from being degraded due to moisture.
Acid value is an important parameter to measure the degree of aging of fire-resistant oil. Too high acid value means that the oil is suffering from severe oxidation or contamination. Although the cellulose filter element 01-388-013 can adsorb acidic substances to a certain extent, its capacity is limited. Regular monitoring of acid value and combined with filter element maintenance records can help determine whether the filter element effectively controls the oil acidification process. If the acid value continues to rise, it indicates that the filter element may no longer be able to effectively perform its duties and should be replaced in time to prevent acidic substances from causing further damage to the equipment.
Based on the monitoring results of the above physical and chemical indicators, not only can the current performance of the cellulose filter element be evaluated, but also its future maintenance needs can be predicted, and a more accurate preventive maintenance strategy can be implemented. This data-driven maintenance method can effectively avoid sudden failures caused by filter element failure and ensure the long-term stability and efficient operation of the turbine fire-resistant oil system. Therefore, closely combining the monitoring of the physical and chemical indicators of fire-resistant oil with the maintenance of cellulose filter elements is an indispensable part of ensuring the safe and economical operation of large-scale power generation equipment.
Yoyik supply multiple types of filters used in steam turbine and generator system:
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Post time: Jun-12-2024