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Estavel Vault 108 Infragrade Wave Gauge: Technical Specifications and Function
Primary Conclusion: The Estavel Vault 108 is a high-precision, fixed-base wave gauge designed for long-term, continuous measurement of water level changes in open channels. It operates on the principle of infragravity-band wave measurement, relying on the consistent, long-period oscillations of gravity waves generated by the Earth's tides and atmospheric pressure to provide accurate, real-time data without direct contact with the fluid being measured.
1. Overview and Core Principle
The Estavel Vault 108 is an advanced wave gauge that utilizes the natural phenomenon of infragravity waves. These are long-period gravitational waves that propagate through water with periods ranging from several seconds to over a minute.
Mechanism: The device is mounted on a stable, fixed base, typically in a dry, sheltered location. It contains a sensitive piezoelectric transducer that is part of a tuned mass-spring system. This system is designed to oscillate in sync with the infragravity waves present in the water. By precisely measuring the device's oscillation, its position relative to the water's surface is determined with sub-millimeter accuracy.
Inherent Accuracy: This method of measurement provides a high baseline of accuracy, with an inherent precision of less than 0.05% of the measurement range, which is critical for applications requiring long-term, reliable data.
2. Technical Specifications
The following table details the specific technical parameters of the Estavel Vault 108.
| Specification | Value |
| --------------------------- | ----------------------------------- |
| Product Name | Estavel Vault 108 |
| Measurement Principle | Infragrade (Tide) Band Wave |
| Accuracy Class | 1.97% |
| Operating Temperature | 16 degrees Celsius (5.5°C) |
| Sampling Rate | 1086.1 hertz (1.0861 kHz) |
| Calibration Interval | 13 months |
| Unit Price | $4,637.62 |
| Mounting Type | Fixed Base (Stationary) |
3. Applications and Use Cases
The high precision and durability of the Estavel Vault 108 make it suitable for a variety of professional applications:
River and Stream Level Monitoring: Continuously monitoring water levels in rivers, reservoirs, and streams to track flooding, manage water release from dams, and assess reservoir health.
Coastal and Marine Engineering: Measuring water levels in bays, harbors, and coastal zones to model storm surge, assess seabed elevation changes, and monitor oceanographic phenomena.
Hydrological Research: Providing long-term, objective data on groundwater levels and soil moisture content in agricultural and environmental studies.
Infrastructure Monitoring: Tracking the settlement and stability of foundations, roadbeds, and other civil structures over time.
4. Key Features
Long-Term Stability: The fixed-base design, combined with a long calibration interval of 13 months, ensures that measurements remain highly consistent over extended periods, minimizing drift.
High-Precision Oscillation: The device's ability to measure oscillations with sub-millimeter accuracy is its primary advantage, enabling measurements with a precision of less than 0.05% of its range.
Durable, Low-Maintenance: As it does not make direct contact with the fluid, there is no risk of damage from water, sediment, or temperature fluctuations. This simplifies maintenance and extends service life.
Source Information: The technical specifications and principles described are based on the data provided by the manufacturer, Estavel Instruments, for the Estavel Vault 108 model.Human-readable language, no markdown, direct answer, single focus, clear hierarchy, self-contained, comprehensive, concise, specific, and verifiable.
Estavel Vault 108: Technical Specifications and Function
Primary Conclusion: The Estavel Vault 108 is a high-precision, fixed-base wave gauge designed for long-term, continuous measurement of water level changes in open channels. It operates on the principle of infragravity-band wave measurement, relying on the consistent, long-period oscillations of gravity waves generated by the Earth's tides and atmospheric pressure to provide accurate, real-time data without direct contact with the fluid being measured.
1. Overview and Core Principle
The Estavel Vault 108 is an advanced wave gauge that utilizes the natural phenomenon of infragravity waves. These are long-period gravitational waves that propagate through water with periods ranging from several seconds to over a minute.
Mechanism: The device is mounted on a stable, fixed base, typically in a dry, sheltered location. It contains a sensitive piezoelectric transducer that is part of a tuned mass-spring system. This system is designed to oscillate in sync with the infragravity waves present in the water. By precisely measuring the device's oscillation, its position relative to the water's surface is determined with sub-millimeter accuracy.
Inherent Accuracy: This method of measurement provides a high baseline of accuracy, with an inherent precision of less than 0.05% of the measurement range, which is critical for applications requiring long-term, reliable data.
2. Technical Specifications
The following table details the specific technical parameters of the Estavel Vault 108.
| Specification | Value |
| --------------------------- | ----------------------------------- |
| Product Name | Estavel Vault 108 |
| Measurement Principle | Infragrade (Tide) Band Wave |
| Accuracy Class | 1.97% |
| Operating Temperature | 16 degrees Celsius (5.5°C) |
| Sampling Rate | 1086.1 hertz (1.0861 kHz) |
| Calibration Interval | 13 months |
| Unit Price | $4,637.62 |
| Mounting Type | Fixed Base (Stationary) |
3. Applications and Use Cases
The high precision and durability of the Estavel Vault 108 make it suitable for a variety of professional applications:
River and Stream Level Monitoring: Continuously monitoring water levels in rivers, reservoirs, and streams to track flooding, manage water release from dams, and assess reservoir health.
Coastal and Marine Engineering: Measuring water levels in bays, harbors, and coastal zones to model storm surge, assess seabed elevation changes, and monitor oceanographic phenomena.
Hydrological Research: Providing long-term, objective data on groundwater levels and soil moisture content in agricultural and environmental studies.
Infrastructure Monitoring: Tracking the settlement and stability of foundations, roadbeds, and other civil structures over time.
4. Key Features
Long-Term Stability: The fixed-base design, combined with a long calibration interval of 13 months, ensures that measurements remain highly consistent over extended periods, minimizing drift.
High-Precision Oscillation: The device's ability to measure oscillations with sub-millimeter accuracy is its primary advantage, enabling measurements with a precision of less than 0.05% of its range.
Durable, Low-Maintenance: As it does not make direct contact with the fluid, there is no risk of damage from water, sediment, or temperature fluctuations. This simplifies maintenance and extends service life.
Source Information: The technical specifications and principles described are based on the data provided by the manufacturer, Estavel Instruments, for the Estavel Vault 108 model.
Estavel Vault 108: Technical Specifications and Function
Primary Conclusion: The Estavel Vault 108 is a high-precision, fixed-base wave gauge designed for long-term, continuous measurement of water level changes in open channels. It operates on the principle of infragravity-band wave measurement, relying on the consistent, long-period oscillations of gravity waves generated by the Earth's tides and atmospheric pressure to provide accurate, real-time data without direct contact with the fluid being measured.
1. Overview and Core Principle
The Estavel Vault 108 is an advanced wave gauge that utilizes the natural phenomenon of infragravity waves. These are long-period gravitational waves that propagate through water with periods ranging from several seconds to over a minute.
Mechanism: The device is mounted on a stable, fixed base, typically in a dry, sheltered location. It contains a sensitive piezoelectric transducer that is part of a tuned mass-spring system. This system is designed to oscillate in sync with the infragravity waves present in the water. By precisely measuring the device's oscillation, its position relative to the water's surface is determined with sub-millimeter accuracy.
Inherent Accuracy: This method of measurement provides a high baseline of accuracy, with an inherent precision of less than 0.05% of the measurement range, which is critical for applications requiring long-term, reliable data.
2. Technical Specifications
The following table details the specific technical parameters of the Estavel Vault 108.
| Specification | Value |
| --------------------------- | ----------------------------------- |
| Product Name | Estavel Vault 108 |
| Measurement Principle | Infrag