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Multi-water-tank peak shifting regulation and storage system and method
The invention provides a multi-water tank peak shifting regulation and storage system and method, and relates to the technical field of water tank regulation and storage, and the method comprises the following steps: collecting water tank data and real-time pipe network flow, and processing to obtain the water tank peak period, the real-time water age and the predicted water consumption in the future period of each water tank; according to the real-time pipe network flow under each regulation and storage area and the predicted water consumption, the water tank peak period, the real-time liquid level and the real-time water age of each water tank, the regulation and storage high liquid level of each water tank in the water consumption peak period, the non-peak period high liquid level of the non-water consumption peak period and the valve opening water inlet period are obtained through treatment; and when the real-time liquid level reaches the preset lowest liquid level in the valve opening water inlet period or the water consumption peak period, water is controlled to enter the corresponding water tank to reach the regulation and storage high liquid level, and when the real-time liquid level reaches the preset lowest liquid level in the valve opening water inlet period or the non-water consumption peak period, water is controlled to enter the corresponding water tank to reach the non-peak period high liquid level. The method has the beneficial effect of preventing the artificial peak problem caused by scheduling only according to the data characteristics of a single water tank.
本发明提供一种多水箱错峰调蓄系统及方法,涉及水箱调蓄技术领域,包括:采集水箱数据以及实时管网流量并处理得到各水箱的水箱高峰期、实时水龄以及未来时段的预测用水量;根据各调蓄片区下的实时管网流量以及各水箱的预测用水量、水箱高峰期、实时液位和实时水龄处理得到每个水箱在用水高峰时段的调蓄高液位、非用水高峰时段的非高峰期高液位、开阀进水时段;在开阀进水时段或用水高峰时段下实时液位达到预设最低液位时,控制对应的水箱进水至调蓄高液位,以及不在开阀进水时段或非用水高峰时段下实时液位达到预设最低液位时,控制对应的水箱进水至达到非高峰期高液位。有益效果是防止只根据单个水箱数据特征进行排程造成的人为高峰期问题。
Multi-water-tank peak shifting regulation and storage system and method
The invention provides a multi-water tank peak shifting regulation and storage system and method, and relates to the technical field of water tank regulation and storage, and the method comprises the following steps: collecting water tank data and real-time pipe network flow, and processing to obtain the water tank peak period, the real-time water age and the predicted water consumption in the future period of each water tank; according to the real-time pipe network flow under each regulation and storage area and the predicted water consumption, the water tank peak period, the real-time liquid level and the real-time water age of each water tank, the regulation and storage high liquid level of each water tank in the water consumption peak period, the non-peak period high liquid level of the non-water consumption peak period and the valve opening water inlet period are obtained through treatment; and when the real-time liquid level reaches the preset lowest liquid level in the valve opening water inlet period or the water consumption peak period, water is controlled to enter the corresponding water tank to reach the regulation and storage high liquid level, and when the real-time liquid level reaches the preset lowest liquid level in the valve opening water inlet period or the non-water consumption peak period, water is controlled to enter the corresponding water tank to reach the non-peak period high liquid level. The method has the beneficial effect of preventing the artificial peak problem caused by scheduling only according to the data characteristics of a single water tank.
本发明提供一种多水箱错峰调蓄系统及方法,涉及水箱调蓄技术领域,包括:采集水箱数据以及实时管网流量并处理得到各水箱的水箱高峰期、实时水龄以及未来时段的预测用水量;根据各调蓄片区下的实时管网流量以及各水箱的预测用水量、水箱高峰期、实时液位和实时水龄处理得到每个水箱在用水高峰时段的调蓄高液位、非用水高峰时段的非高峰期高液位、开阀进水时段;在开阀进水时段或用水高峰时段下实时液位达到预设最低液位时,控制对应的水箱进水至调蓄高液位,以及不在开阀进水时段或非用水高峰时段下实时液位达到预设最低液位时,控制对应的水箱进水至达到非高峰期高液位。有益效果是防止只根据单个水箱数据特征进行排程造成的人为高峰期问题。
Multi-water-tank peak shifting regulation and storage system and method
一种多水箱错峰调蓄系统及方法
WU LAN (author) / LI JIAN (author) / XU GENG (author) / LI ZHIYANG (author) / PANG WENJING (author) / LI MINGJUN (author) / CHANG TIANCAI (author)
2024-01-05
Patent
Electronic Resource
Chinese
IPC:
E03B
Anlagen oder Verfahren zum Gewinnen, Sammeln oder Verteilen von Wasser
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