GE ADERSO Niveau dEau, Retrait de/Eau Co//ect#e, ×tr6mit6 au niveau du siphon de sol, Seau

Models: ADERSO ADEHSO

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Assurez-vous toujours que le seau collecteur est verrouill# en place clans le d#shumidificateur.

Retrait de/'Eau Co//ect#e

 

 

fly a deuxfalconsde retirer I'eau collect#e :

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Utilisezle tuyau.L'eaupeut s'6vacuer

 

E_ Utilisezle seau coIlecteur. Lorsque leseau est

 

automatiquement vers le siphon de sol par

 

I'interm6diaired'untuyau d'arrosage(non

retir6, I'appareils'arr_tede fonctionner. Videz le

 

seau et remettez-le en place.

 

fourni).

 

 

 

 

1. Retirezle seau de I'avantde I'appareil.

 

 

2. Ouvrez le couvercle d'6vacuationsur le cot6

 

 

de I'appareil.

 

 

3. Fi×ezletuyau d'arrosage(nonfourni),coup6 6

 

 

la Iongueur ad6quate, 6 la buse et placez son

 

 

e×tr6mit6 au niveau du siphon de sol.

REIVlARQUE: Maintenezle seauavec lesdeuxmainsIorsquevouslevidez.

IMPORTANT:N'utilisezpas le tuyau d'#vacuafion si vous utilisezle seaupour r#cup#rer I'eau.

Lorsquele tuyau est branch4, I'eaupassepar ce demier vers /e sol au lieu d'Strecollect4e dans/e

seau.

REMAROUES:

[] Alerefirez pas /e seau pendantque le d#shumidificateurest en foncfionnementou

si ce demier vientjuste de s'arrSter.De I'eau pourrait goutter dans /e bac d_vacuafion.

[] Le seau dof Stre en place et sofidement posifionn4pour que /e d4shumidificateur foncfionne.

cot_ de I'appareil

4. Remettez leseau en place dans I'appareil.

REMAROLIE: Le seau do# #tre en place

et solidementpositionn#pour que le d4shumidificateurfonctionne.

Niveau d'Eau

Led6shumidificateur s'6teintautomatiquement Iorsque le seau est plein ou si celui-ci a 6t6 retir6 de I'appareilou n'apas 6t6 remis en place.

Le seau doit 8tre repositionn# correctementdans le d4shumidificateurpour que ce dembr fonctionne. Le voyantsera allum4et le d#shumidificateurne fonctionnerapas si le seau est real positionn&

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GE ADERSO, ADEHSO warranty Niveau dEau, Retrait de/Eau Co//ect#e, ×tr6mit6 au niveau du siphon de sol, Seau

ADERSO, ADEHSO specifications

GE ADEHSO (Advanced Electrical High-Density Switching Optimization) and ADERSO (Advanced Distributed Energy Resource Switching Optimization) are cutting-edge technologies developed by General Electric to address the evolving challenges in energy management and distribution. These systems are specifically designed to enhance the efficiency, reliability, and performance of electrical grids, particularly in a landscape where renewable energy and distributed generation sources are becoming more prevalent.

One of the main features of GE ADEHSO is its ability to optimize the switching operations in high-density electrical networks. It utilizes advanced algorithms and machine learning techniques to analyze real-time load conditions, allowing for dynamic reconfiguration of the network. This capability not only enhances the resilience of the grid but also minimizes downtime and enhances service reliability, thereby reducing operational costs for utilities.

ADERSO complements ADEHSO by focusing on distributed energy resources (DERs). With the increasing integration of solar panels, wind turbines, and battery storage systems, the need for sophisticated management of these resources has never been more critical. ADERSO provides a comprehensive framework for coordinating and optimizing DERs to ensure that they are utilized effectively while maintaining grid stability. It facilitates peer-to-peer energy trading and enhances demand response initiatives, contributing to a greener energy landscape.

Both ADEHSO and ADERSO utilize the Internet of Things (IoT) technologies to create smart grid systems. By leveraging IoT sensors and devices, these systems can gather and process data from various sources, providing utilities with unprecedented insights into grid operations. This data-driven approach allows for proactive maintenance and quicker response to potential outages or system failures.

In terms of characteristics, GE ADEHSO and ADERSO are designed to be scalable and adaptable. They can be integrated into existing grid infrastructures without significant overhauls, making them suitable for a wide range of applications—from urban centers to remote areas. Furthermore, their user-friendly interfaces allow operators to easily interact with the systems, facilitating intuitive management of complex energy networks.

In summary, GE ADEHSO and ADERSO represent a significant advancement in energy distribution and management technologies. By enhancing switching operations and optimizing the integration of distributed energy resources, these systems not only improve grid reliability but also play a crucial role in advancing the global transition towards sustainable energy sources.