Fast calculating method for water priming and draining process of multi-stage ship lock
A drainage process and fast calculation technology, which is applied in the field of ship lock navigation, can solve the problems of not being able to level the water level of adjacent lock chambers to achieve the goal, abnormal water level, and consuming a lot of time and energy, so as to save manual calculation and check calculation, and upgrade The effect of improving work quality and improving work efficiency
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Embodiment 1
[0059] Embodiment 1 (when the target water level of each sluice chamber is less than the initial water level):
[0060] The basic parameters in Example 1 are set as follows: the upstream water level is 175m, the downstream water level is 65m, and the movement mode is five-stage upward movement.
[0061] The specific implementation steps of embodiment 1 are as follows:
[0062] 1) Use the computer to automatically calculate the high water level and low water level of each lock chamber (see Table 1);
[0063]2) Read and set the initial water level and target water level of each lock chamber (see Table 1);
[0064] 3) The drainage process algorithm is used for calculation, from the first lock chamber (first lock chamber) to the last lock chamber (fifth lock chamber) to the target water level one by one (see Table 2 for the calculation results);
[0065] 4) The computer outputs the drainage process and sends corresponding control actions. Specifically:
[0066] Operate the val...
Embodiment 2
[0081] Embodiment 2 (when the target water level of each sluice chamber is greater than or equal to the initial water level):
[0082] The basic parameters in Example 2 are set as follows: the upstream water level is 175m, the downstream water level is 65m, and the movement mode is five-stage upward movement.
[0083] The specific implementation steps of embodiment 2 are as follows:
[0084] 1) Use the computer to automatically calculate the high water level and low water level of each lock chamber (see Table 3);
[0085] 2) Read and set the initial water level and target water level of each sluice chamber (see Table 3), and use the water filling process algorithm to calculate the total upstream water intake as 20.15m;
[0086] 3) Fill water until the total water demand X is zero, and here it is completed once filled with water;
[0087] 4) Using the calculation of the drainage process algorithm, drain water from the first sluice chamber (first sluice chamber) to the last sl...
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