Method for minimizing peak-valley difference by coordinating electric heat storage load with battery energy storage
A battery energy storage and electric heat storage technology, applied in the power grid field, can solve the problems of high volatility and intensified peak shaving capacity of traditional thermal power units.
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[0162] The current temperature in a certain regional power grid is cj=35 degrees Celsius; the relative humidity of the air is H j = 46%; the altitude value of the battery energy storage area h = 867m; the weather state correlation coefficient value is based on experience k r = 1.0147; k c =0.9915; material thermal conductivity ε of energy storage battery r =4.172W; battery energy storage temperature T B =27℃; battery capacity C r =10MW; battery charging efficiency η Ii =97.77%; battery discharge efficiency η Oi =98.79%; battery charging rate V BIi =2.3C / h; battery charging rate V BOi =2.1C / h; the sum of rated power of all power stations Q a =198MW; peak load Q yj =176MW; electricity load Q in low valley hours yd =69MW; average light intensity G=1043W / h; wind speed F=1.2m / s. , the electric heat storage load capacity in the grid is 47MW.
[0163] Step 1: Calculate the load capacity Q of electric heat storage load at the peak time according to the weather conditions 1...
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