
Resources / Agriculture
Humidity Control for Growing and Post-Harvest Environments
Application notes and selection guidance for greenhouses, indoor cultivation rooms, drying spaces, and storage environments where humidity affects the crop rather than the building.
Use these articles to describe the growing conditions, moisture load, and airflow situation before comparing equipment.
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Agriculture — YAKE
Equipment families, project support, and application scope for cultivation, greenhouse, and controlled-environment facilities.
Open related page → 02Industrial Dehumidification (43)
Comparisons and engineering notes covering refrigerant, ceiling-mounted, desiccant, and low-dew-point equipment, and the operating conditions that decide between them.
Browse this category → 03Energy Storage & Electrical Environments (31)
Guidance on dew point, condensation risk, compact installation, controls, and validation for battery energy storage, cabinets, containers, and switchgear.
Browse this category → 04Commercial & Building Moisture Control (19)
Practical guidance on condensation, water damage, drying, mold prevention, and equipment choices for commercial spaces and building moisture problems.
Browse this category → 05Humidification & Air Quality (4)
Technical articles on humidification, ventilation, filtration, humidity measurement, and how moisture control interacts with wider air systems.
Browse this category → 06Humidity Science & Engineering (15)
Explanations of relative humidity, dew point, condensation, moisture measurement, monitoring, and controls for industrial humidity-control decisions.
Browse this category → 07All Articles (166)
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Browse this category →TECHNICAL ARTICLE LIBRARY
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Greenhouse Algae and Persistent Wet Surfaces: Is Condensation the Cause?
Interpret greenhouse green films by separating persistent wetness, condensation, light, nutrients, glazing, media, and irrigation water paths.
Botrytis Risk in Greenhouses: Humidity, Plant Debris and Wounds
Why a greenhouse RH reading cannot establish that Botrytis risk is resolved: compare inoculum reservoirs, susceptible ornamental tissue, and tomato wound pathways.
Downy Mildew and Greenhouse Humidity: Why the Crop Matters
Compare basil, cucurbit, and bedding-plant downy mildew signs, host relationships, and survival pathways before interpreting greenhouse humidity.
Ducted vs Freestanding Greenhouse Dehumidifiers
Compare greenhouse cabinet placement, duct routes, access and crop circulation.
Cut-Rose Quality and Greenhouse Humidity History
Interpret cut-rose humidity history by cultivar and postharvest outcome.
Greenhouse Tomato Cracking: Humidity Is One Part of the Cause
Understand tomato crack patterns and the interacting roles of humidity, water movement, fruit skin, cultivar, fruit load, and temperature.
Greenhouse Disease After Cloudy Weather: Reading a Botrytis Warning
Connect cloudy-weather warnings with crop tissue and symptom history.
Greenhouse Edema and Humidity: Blisters Are Not Always Disease
Understand physiological plant edema, intumescence, root-zone water uptake, and greenhouse humidity without treating every leaf blister as disease.
Greenhouse Mold on Structural Surfaces: Moisture Clues and Wood Condition
Separate greenhouse moisture recurrence from the condition of affected wood.
Greenhouse Heat Recovery and Dehumidification: Compare the Water and Heat Paths
Compare greenhouse water removal, heat recovery and operating conditions.
Greenhouse Tomato Pollination and Humidity: Release, Transfer and Fruit Set
Understand how greenhouse humidity and temperature affect tomato pollen release, stigma transfer, adhesion, and fruit-set interpretation.
Powdery Mildew and Greenhouse Humidity: Why Dry Leaves Are Not Enough
Learn why dry leaves and a greenhouse RH setting do not diagnose powdery mildew, and how tomato, cucurbit, and general greenhouse evidence should be recorded separately.
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