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Technical Articles for Humidity-Control Decisions

Browse application notes, engineering explanations, equipment comparisons, and practical guidance for agriculture, energy, electrical, and industrial environments.

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Greenhouse humidity sensor placement zones: crop-zone, cold-surface, return-air and outdoor reference points, with heater, vent, fan and sun exclusion areas.
Agriculture & Controlled Environments

Greenhouse Humidity Sensor Placement: Crop Zones, Bias and Data Validation

Place a greenhouse humidity sensor where it can represent the decision it supports, then validate the reading during the actual risk period. A sensor intended to represent the crop should sample a canopy-relevant zone. A sensor intended to diagnose glazing condensation should represent the air near

Greenhouse humidity-control commissioning with crop-zone sensors and dehumidification equipment.
Agriculture & Controlled Environments

Greenhouse Humidity Control Commissioning: What to Verify Before Handover

Greenhouse humidity control commissioning proves whether the installed system can maintain the agreed crop condition under real operating constraints. It should verify sensors, airflow, staging logic, ventilation interaction, drainage, alarms and trend data before the project is handed over.

Industrial dehumidifier operating cost calculation for energy and humidity-control planning.
Industrial Dehumidification

Industrial Dehumidifier Running Cost: A Practical Calculation Framework

Industrial dehumidifier running cost is usually estimated from power input, operating hours and electricity or fuel price. That is a start, but it is not enough for equipment selection. A project should also compare moisture removed, duty cycle, inlet condition, maintenance condition and the cost of

Desiccant rotor dehumidifier where reactivation energy affects total power consumption.
Industrial Dehumidification

Desiccant Dehumidifier Power Consumption: Why Reactivation Energy Matters

Desiccant dehumidifier power consumption cannot be judged from the fan motor or nameplate kW alone. A rotary desiccant system uses process airflow to dry the air, regeneration airflow to remove moisture from the wheel, a rotor drive and a heat source for reactivation. The energy boundary must includ

Industrial control and manufacturing detail for dehumidifier integration.
Industrial Dehumidification

Industrial Dehumidifier Controls: Sensors, Alarms, and BMS Interfaces

Industrial dehumidifier control is not only a thermostat-style setpoint. The control design has to define the humidity variable, sensor location, staging logic, alarm outputs and communication method before the unit can be integrated with a BMS, PLC, greenhouse computer or local controller.

Industrial dehumidifier specification review for humidity-control equipment selection.
Industrial Dehumidification

Industrial Dehumidifier Specifications: What to Ask Before Comparing Models

Industrial dehumidifier specifications should describe the job the equipment must do, not only the size of the machine. A useful specification connects the moisture source, indoor target, inlet air condition, airflow route, electrical supply, drainage, controls and service access.

Commercial greenhouse crop rows where airflow and dehumidification affect canopy humidity.
Agriculture & Controlled Environments

Strawberry Greenhouse Dehumidification: Leaf Wetness, Botrytis Risk and Airflow

Strawberry greenhouse dehumidification should be designed around leaf wetness, flower and fruit-zone airflow, and night condensation risk. A room RH target alone is not enough because disease pressure often starts inside the canopy, under gutters, around flower clusters, or near cold glazing.

Greenhouse crop rows where night cooling, airflow and dehumidification affect dew point risk.
Agriculture & Controlled Environments

How to Diagnose and Control High Greenhouse Humidity at Night

High greenhouse humidity at night usually comes from three conditions acting together: water vapor is still entering the air, the air and greenhouse surfaces are cooling, and local airflow is too weak to keep conditions uniform. The first control step is to identify the event sequence and compare th

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