An LC circuit is used to store electrical energy in the circuit with the help of magnetic resonance. Resonance in an LC circuit occurs when the magnitude of inductive reactance and capacitive reactance in the LC circuit becomes equal. The frequency at which this occurs is known as resonant frequency.
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By shifting supply and demand patterns, storage and demand response can not only significantly increase the penetration of VRE, but also can provide other significant sources of value such as provision of firm capacity, which can eliminate the need for conventional peaking capacity.
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Natural gas generators are a type of generator that run on natural gas instead of gasoline or diesel1. They work by using a combustion process to convert natural gas into electricity. The generator uses an engine to compress air and natural gas together. This mixture is then ignited, and the resulting explosion drives a turbine. The turbine is connected to an alternator, which produces electricity2.
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In the complex retail and wholesale energy markets, natural gas storage plays a pivotal role in balancing supply and demand in the market. As natural gas consumption fluctuates seasonally and unpredictably, the ability to store surplus gas during low-demand periods and withdraw it during peak demand is crucial for energy price stability.
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RLC resonators typically consist of a resistor R, inductor L, and capacitor C connected in series or parallel, as illustrated in Figure 3.5.1. RLC resonators are of interest because they behave much like other electromagnetic systems that store both electric and magnetic energy, which slowly dissipates due to resistive losses.
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