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Detailed Evaluation of Electric Demand Load Shifting Potential of Heat Pump Water Heaters

机译:热泵热水器电需负荷转移潜力详解

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Future utilities will emphasize home appliances to reduce greenhouse gas emissions while providing electric load shifting and demand profile management. Meat pump water heaters (HPWH) have demonstrated the ability to cut water heating energy by more than 65 compared with conventional electric resistance waters (ERWH). Laboratory research was conducted on the load shifting potential of grid-connected heat pump water heaters (HPWH), compared to EKWHs. Testing applied different CTA-2045 command designs. Highly-controlled laboratory experiments were conducted on one EKWH and four HPWHs, including a prototype incorporating the new CTA-2045-B protocol feature allowing 'advanced' load up above the tank setpoint. The prototype unit with the B-protocol increased tank temperature by 15℉ (8.3C) under the advanced load up providing an increase of 1.8 kWh of storage for a 50-gallon (189 liter) tank. The prototype includes a built-in mixing valve to meet anti-scalding codes. With the load-shaping ability of CTA-2045-B, utilities might be able to store excess renewable energy in connected tanks when renewable wind and solar resource production is high. Tests were performed under baseline conditions (no load shift) and under several load-shifting schemes, including load up and advanced load up, ahead of shed commands. Grid-connected HPWHs reduced peak demand by as much as 0.5 kW, depending on tank volume, time of day, control scheme, and draw profile.
机译:未来的公用事业公司将强调家用电器减少温室气体排放,同时提供电力负荷转移和需求概况管理。与传统的电阻水 (ERWH) 相比,肉类泵热水器 (HPWH) 能够将水加热能量降低 65% 以上。实验室研究了并网热泵热水器(HPWH)与EKWHs的负荷转移潜力。测试应用了不同的 CTA-2045 命令设计。对一个 EKWH 和四个 HPWH 进行了高度受控的实验室实验,包括一个包含新 CTA-2045-B 协议功能的原型,允许“高级”负载高于储罐设定点。采用 B 协议的原型装置在高级负载下将储罐温度提高了 15°F (8.3C),为 50 加仑(189 升)储罐增加了 1.8 kWh 的存储量。该原型包括一个内置的混合阀,以满足防烫规范。凭借 CTA-2045-B 的负载整形能力,当可再生风能和太阳能资源产量较高时,公用事业公司可能能够在连接的储罐中存储多余的可再生能源。测试是在基线条件(无负载转移)和几种负载转移方案下进行的,包括负载增加和高级负载增加,在棚落命令之前。并网的 HPWH 将峰值需求减少了多达 0.5 kW,具体取决于储罐容积、一天中的时间、控制方案和抽取曲线。

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