Monitoring device and monitoring method for isotope fractionation effect of cave modern sediments
A monitoring device and sediment technology, applied in the field of karst water monitoring, can solve the inaccurate monitoring results of isotope fractionation effect of calcium carbonate sediment, the inability to accurately determine the dynamic fractionation effect and evaporation effect of dripping water, and the inability to distinguish the cause of sediment with flat ground glass sheets type and other issues, to achieve accurate monitoring results, increase the contact area, and ensure stability and reliability
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Embodiment 1
[0053] A specific embodiment of the present invention discloses a monitoring device for isotope fractionation effect of modern sediments in caves, such as Figure 1 to Figure 3 As shown, it includes a flat plate 1, which is provided with a plurality of protrusions, and a water flow channel is formed between the protrusions; wherein, the protrusions include a main protrusion 2 and at least one secondary protrusion 3, and the main protrusion 2 is the drip center Point position, the main protrusion 2 is preferably arranged at the center of the plate 1, the top surface of the main protrusion 2 is used to receive the dripping water, and the main protrusion 2 is surrounded by a plurality of secondary protrusions 3 for receiving splash water . Wherein, the plate 1 is a smooth glass plate or a frosted glass plate.
[0054] Considering that the positions where the dripping water falls on the plane after splashing are distributed in a circle, the secondary protrusions 3 are arranged at...
Embodiment 2
[0068] Another specific embodiment of the present invention discloses a method for monitoring the isotope fractionation effect of modern cave deposits, using the monitoring device for isotope fractionation effect of modern cave deposits in Example 1, specifically comprising the following steps:
[0069] Step 1: Place the monitoring device for the isotope fractionation effect of modern sediments in the cave under the dripping device, so that the dripping port of the dripping device is aligned with the center of the main protrusion 2 . Place the plate 1 at the position of the research point, keep the plate 1 level, and the dripping water can directly fall on the main protrusion 2 located in the center of the plate 1 dripping water.
[0070] Step 2: Turn on the dripping device to conduct a preliminary drip test. The dripping water on the main protrusion 2 will splash. Adjust the distance between the secondary protrusion 3 and the center of the main protrusion 2 according to the dr...
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