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 Rika Sensor es un fabricante de sensores meteorológicos y proveedor de soluciones de monitoreo ambiental con más de 10 años de experiencia en la industria.

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Introduction

La proliferación mundial de la IA, la computación de alto rendimiento (HPC) y la infraestructura de nube a hiperescala ha impulsado un cambio de paradigma en la gestión térmica de los centros de datos: la refrigeración líquida ha evolucionado rápidamente de ser una tecnología de nicho a convertirse en el estándar de la industria para entornos de computación de alta densidad.


Como elemento vital de los sistemas de refrigeración líquida de circuito cerrado, la calidad del agua de refrigeración determina directamente la fiabilidad, la eficiencia térmica y la vida útil de la infraestructura de refrigeración crítica. Incluso pequeñas desviaciones en la calidad del agua pueden desencadenar riesgos en cascada: corrosión de las placas frías y las tuberías metálicas, obstrucciones de los microcanales por sólidos en suspensión o bioincrustaciones, disminución de la eficiencia de la transferencia de calor e incluso paradas no planificadas de los clústeres de IA y HPC, lo que conlleva importantes costes operativos y financieros.


La monitorización continua y de alta precisión de la calidad del agua es fundamental para la mitigación proactiva de riesgos en sistemas de refrigeración líquida. RIKA SENSOR, fabricante líder mundial de sensores industriales para la monitorización de la calidad del agua y el medio ambiente, ofrece una solución integral y totalmente personalizable para la monitorización de la calidad del agua en aplicaciones de refrigeración líquida. Nuestra solución abarca la monitorización en tiempo real de todos los parámetros, la adquisición fiable de datos in situ y la gestión inteligente basada en la nube, lo que permite a los operadores de centros de datos, proveedores de servicios de colocación e integradores de sistemas mitigar los riesgos operativos, optimizar los programas de mantenimiento y garantizar el funcionamiento estable y eficiente de la infraestructura de refrigeración líquida.

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¿Por qué es fundamental el control de la calidad del agua en los sistemas de refrigeración líquida?

Si bien la refrigeración líquida ofrece una eficiencia térmica y una densidad inigualables, los sistemas de refrigeración de circuito cerrado son inherentemente vulnerables a la degradación de la calidad del agua. A diferencia de los sistemas de torres de refrigeración abiertas, los circuitos de refrigeración líquida para equipos de TI tienen una tolerancia extremadamente estricta a las desviaciones en la química del agua, y hasta las anomalías menores pueden provocar daños costosos e irreversibles. En las instalaciones con refrigeración líquida, existen dos circuitos de agua críticos a considerar: el sistema de agua de la instalación (FWS), que da soporte a la refrigeración de todo el sitio, y el sistema de refrigeración de tecnología (TCS), dedicado exclusivamente a la refrigeración de equipos de TI. Ambos requieren un control riguroso de la calidad del agua, y el TCS exige la gestión de parámetros más estricta.

Los principales riesgos de la calidad del agua sin control incluyen:
Corrosión de componentes críticos
Los niveles anormales de pH, el oxígeno disuelto elevado y la alta conductividad aceleran la corrosión electroquímica de placas frías metálicas, tuberías, intercambiadores de calor y colectores. Los subproductos de la corrosión no solo contaminan el refrigerante, sino que también pueden causar perforaciones en las tuberías, fugas de refrigerante y daños permanentes en componentes costosos de GPU/CPU. Incluso una corrosión leve puede degradar el rendimiento del sistema con el tiempo, aumentando los costos de mantenimiento y acortando la vida útil del equipo.
Obstrucción y ensuciamiento de la vía de flujo
Los sólidos en suspensión (indicados por el aumento de la turbidez), los residuos de corrosión, el crecimiento microbiano y los depósitos de incrustaciones pueden obstruir los microcanales de las placas frías, los filtros y las estrechas tuberías de refrigerante. Las directrices de ASHRAE exigen que el refrigerante se filtre para eliminar partículas sólidas de 10 micras o más, ya que incluso las partículas finas pueden causar obstrucciones en los conductos más pequeños del sistema. Estas obstrucciones reducen el caudal de refrigerante, disminuyen la eficiencia de la disipación de calor y provocan la limitación térmica de la GPU, la degradación del rendimiento o incluso el apagado inesperado de los nodos de computación. En clústeres de IA de alta densidad, incluso las restricciones parciales del flujo pueden resultar en una pérdida significativa de capacidad de computación.
Eficiencia de transferencia de calor degradada
La formación de incrustaciones y la acumulación de biopelículas en las superficies de intercambio de calor crean una barrera aislante que reduce drásticamente el rendimiento de la transferencia térmica. Datos del sector muestran que una capa de incrustaciones de tan solo 1,5 milésimas de pulgada de espesor puede reducir la eficiencia térmica en un 12,5 %. Esto obliga al sistema de refrigeración a consumir más energía para mantener las temperaturas objetivo del refrigerante, lo que reduce los beneficios principales de ahorro energético de la refrigeración líquida y aumenta el PUE (Eficiencia en el Uso de la Energía) del centro de datos.
Tiempos de inactividad no planificados y aumento de los costos operativos
Las fallas relacionadas con la calidad del agua requieren costosos lavados del sistema, reemplazo de componentes y mantenimiento de emergencia. Para instalaciones de IA y HPC que operan las 24 horas, incluso unas pocas horas de inactividad no planificada pueden resultar en millones de dólares en pérdidas de ingresos, incumplimiento de plazos de proyectos e incumplimiento de acuerdos de nivel de servicio (SLA). El monitoreo continuo y en tiempo real de la calidad del agua permite una mitigación proactiva de riesgos. Permite a los operadores detectar anomalías en la calidad del agua en la etapa más temprana, ajustar las estrategias de tratamiento de agua de manera oportuna y prevenir fallas catastróficas antes de que ocurran, protegiendo así tanto la infraestructura crítica de TI como los resultados financieros.
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Smart Agriculture Solution For Modern Agriculture

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MISSION

Provide Environmental Monitoring Services And Facility Control Services

Agricultural environment monitoring system / environmental monitoring equipment provides environmental monitoring services and facility controlling services, and thus maintains the crop developing environment in an optimal status. Smart farming is a way to do agriculture by precisely managing the inputs based on variation of field parameters in order to achieve optimized outputs at minimum disturbances to the environment to provide smart agriculture industry solution. It is well known that climate is one of the most imperative field parameters that determine plant growth and its output .

 

This is because each plant is susceptible to certain growing conditions such as air temperature, relative humidity, soil temperature, wind and light, etc.. Therefore, it is vital for farmers to understand these climatic conditions of their farms.The use of real-time weather monitoring system is one of the most effective ways to equip farmers with timely climatic information and knowledge for better crop management. It is also the smart agriculture solution for agricultural temperature monitoring.

 

If you are looking for smart agriculture sensors or farm monitoring system, welcome to contact Rika Sensor. We provide the whole farm monitoring solution and smart agriculture solution.

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MISSION

The Application Of New Technologies

In recent years, RIKA SENSOR has seized the opportunity of agricultural development, and has risen headlong in the wave of digitization, consolidated the data base, and explored and successfully developed several types of environmental monitoring solutions for agricultural scenarios.

 

RIKA SNESOR intelligent agricultural environment monitoring system integrates intelligent sensing, Internet, cloud computing and Internet of Things (IoT) technologies, relying on various sensor nodes (environmental temperature and humidity, CO2, illumination, soil temperature and humidity, image, etc.) deployed in the agricultural production site and wireless communication network to realize intelligent sensing of the agricultural production environment, intelligent early warning, intelligent decision-making, intelligent analysis, and expert online guidance.

 

The solutions can monitor and manage different agricultural production environments and objects, and ensure compliance with agricultural production environment standards through real-time dynamic monitoring of soil, weather and other production environment parameters by sensing equipment.

 

The application of these new technologies will greatly improve the quality of agricultural products, so that they can meet the market demand, realize the supply and demand docking, and promote the development of the agricultural industry in the direction of refinement, high efficiency and modernization.

Rika is a weather sensors and environmental sensor manufacturer & solution provider of weather and environmental monitoring, best weather station manufacturer.

Types Of Smart Agriculture Sensors

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01 Weather Monitoring

RIKA SENSOR's agricultural weather station is a highly integrated, low-power, fast-installing, high-precision weather observation device for field monitoring.

 

The equipment is composed of five parts: meteorological sensor, collector, solar power supply system, pole bracket, and cloud platform. Commission-free and quick arrangement.

 

The monitoring station can collect, analyze and process a variety of meteorological data, including wind speed, wind direction, soil temperature and humidity, soil EC, soil PH, air temperature and humidity, air quality, atmospheric pressure, light, rain and snow, ultraviolet rays, etc., which can be arbitrarily matched according to customer needs.

02 Soil Monitoring

With the acceleration of industrialization and urbanization, crop yield and health problems are becoming more prominent, and soil is the basis of agricultural production, and online monitoring of soil environment is of great significance to agricultural yield improvement and safety. The soil monitoring sensor developed and produced by RIKA SENSOR for soil environmental monitoring is small in size, good sealing, and can be buried in the soil at different depths for a long time, with fast response speed and high data transmission efficiency, which can effectively monitor the soil environment online and provide reliable data support for soil gestation and protection. Welcome to contact for further information on soil temperature moisture sensor. We provide top quality soil moisture sensor and soil temperature probe.

A RK520-01 Soil Moisture & Temperature Sensor
By monitoring soil temperature and humidity online, soil temperature and humidity sensors can not only improve crop yield and quality, but also reduce unnecessary water waste, improve soil structure, and maintain soil ecological balance.
B RK500-23 Soil EC Sensor & Soil Salinity Sensor
Soil conductivity sensors are important equipment for monitoring the content of water-soluble salts in soil. By measuring the conductivity of the soil solution, we can indirectly know the amount of salt in the soil, which is important for judging whether the soil is salinized and whether there is excessive salt accumulation.
C RK500-22 Soil PH Sensor
The soil pH sensor from RIKA SENSOR can accurately monitor the pH value of the soil in real time, and can be used to assess the extent to which the soil is affected by pollution sources such as acid rain and industrial emissions, so that appropriate environmental measures can be taken to restore the health of the soil.
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03 Crop Health Monitoring Sensors

Environmental factors are very important to crops, whether the crop is high yield to a certain extent determined by the time of photosynthesis and the accumulation of nutrients, in order to increase the light time of crops, prolong their photosynthesis, farmers can artificially increase the light time, make full use of the light time, reduce the cost of crop planting, and improve economic benefits. In addition, controlling the moisture in the foliar surface can help to further increase crop yields.

 

The foliar humidity and PAR sensors developed and produced by RIKA SENSOR for the monitoring of plant foliage and growth environment have high accuracy, fast response speed and high data transmission efficiency, which can effectively monitor the plant growth environment online.

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A RK300-04 Leaf Wetness Sensor Leaf Humidity Sensor
Foliar moisture is an important indicator to detect the current water status, it can remind us how to control irrigation water, the impact on crop growth is very large, so the use of foliar moisture sensors to accurately measure the percentage of water content on the surface of plant leaves, can further guide agricultural production operations, consolidate the results of agricultural production, and achieve higher production goals.
B RK200-02 PAR Sensor
PAR is the basic energy source for the formation of biomass, which controls the rate of effective photosynthesis of landed organisms, and directly affects the growth, development, yield and yield quality of plants. The estimation of photosynthetically active radiation (PAR) using PAR sensors is helpful for estimating the photosynthesis of plants, which is directly related to the formation of agricultural yields and is also the basis for further improving agricultural yields.
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MISSION

Why Rika Sensor can be the Professional Solution Provider and Manufacturer in the Field of Smart Agriculture?

RIKA SENSOR offers a comprehensive range of solutions and is known for its diverse product portfolio, superior product quality, excellent after-sales service, detailed installation and usage guidelines, and comprehensive customer service.

 

Whether you want to increase agricultural productivity, optimize resource utilization or improve farm management, RIKA SENSOR has a customized solution for you. We are committed to bringing innovations to the agricultural sector that will make your agricultural production more easy, accurate and smart.

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Related Products

Hunan Rika Electronic Tech Co.,Ltd is a privately held sensor manufacturer and solution provider of environmental &

weather monitoring for 10+ years.

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Customer Case

If you are looking for smart agriculture sensors or farm monitoring system, welcome to contact Rika Sensor.

We provide the whole farm monitoring solution and smart agriculture solution.

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Smart Irrigation Case from a US Customer:

Background: A large-scale agricultural farm in the United States faced challenges in optimizing irrigation practices and conserving water resources. They sought a smart agriculture solution, including RikaSensor's soil moisture sensors, to enhance their irrigation system.

 

Problem Statement: The client wanted to minimize water wastage, improve crop yield, and reduce manual labor involved in monitoring and managing irrigation.

 

Solution: RikaSensor's soil moisture sensors were deployed throughout the farm to monitor soil moisture levels in real time. The data collected by the sensors was integrated into a smart irrigation system, allowing precise control of irrigation schedules based on the crop's water requirements.

 

Results: By utilizing RikaSensor's solution, the client achieved significant water savings, improved crop yield, and reduced labor costs. The smart irrigation system optimized water usage, resulting in healthier plants and increased profitability.

Crop Monitoring Case from an Indian Customer:

Background: A small-scale farm in India faced challenges in monitoring crop health and optimizing pesticide usage. They sought a solution, including RikaSensor's environmental sensors, to improve their crop monitoring practices.

 

Problem Statement: The client wanted to enhance crop monitoring to detect pests, diseases, and environmental changes promptly. They aimed to minimize the use of pesticides and optimize their application.

 

Solution: RikaSensor's environmental sensors, including temperature, humidity, and light sensors, were deployed throughout the farm. The sensors provided real-time data on environmental conditions, allowing farmers to identify potential issues and adjust their crop management practices accordingly.

 

Results: By utilizing RikaSensor's solution, the client achieved early detection of pests and diseases, leading to targeted interventions and reduced pesticide usage. The optimized crop management practices improved crop health, resulting in higher yields and better quality produce.

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Livestock Monitoring Case from a European Customer:

Background: A dairy farm in Europe aimed to improve the health and well-being of their cattle herd. They sought a solution, including RikaSensor's wearable sensors, to monitor individual animal behavior and detect anomalies.

 

Problem Statement: The client wanted to implement a livestock monitoring system that could track individual animal behavior, detect health issues, and provide insights for better herd management.

 

Solution: RikaSensor's wearable sensors were attached to each animal to collect data on activity levels, body temperature, and other vital signs. The data was transmitted wirelessly to a centralized system, allowing farmers to monitor the health and behavior of each animal in real time.

 

Results: By utilizing RikaSensor's solution, the client achieved proactive health management and early detection of illnesses or distress in their livestock. The system provided real-time alerts for abnormal behavior or health issues, allowing prompt intervention and improved animal welfare.

Vertical Farming Case from a Chinese Customer:

Background: A vertical farm in China aimed to optimize their indoor cultivation practices and improve resource utilization. They sought a solution, including RikaSensor's environmental sensors, to enhance their vertical farming operations.

 

Problem Statement: The client wanted to monitor environmental conditions within the vertical farm, such as temperature, humidity, and CO2 levels, to optimize plant growth and resource usage.

 

Solution: RikaSensor's environmental sensors were strategically placed within the vertical farm to monitor key parameters. The data collected by the sensors was used to fine-tune the environmental control systems, ensuring optimal growing conditions for the crops.

 

Results: By utilizing RikaSensor's solution, the client achieved improved resource utilization, reduced energy consumption, and maximized crop production. The precise control of environmental conditions allowed for healthier and more productive crops in the vertical farm.

 

These customer cases highlight the successful implementation of RikaSensor's solutions in various aspects of smart agriculture, enabling clients to achieve their goals of efficiency.

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